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jueves, 20 de agosto de 2026

Atypical Swallowing: How to Correct Tongue Thrust and Use a Lingual Crib

Atypical Swallowing

Atypical swallowing, also known as tongue thrust swallowing, is characterized by an altered relationship between the tongue, teeth, lips, and surrounding musculature during deglutition.

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Instead of the tongue assuming a stable palatal position, its anterior portion may move against or between the incisors.

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This pattern may be associated with anterior open bite, increased overjet, altered incisor inclination, and instability during orthodontic treatment.
However, the relationship is not always strictly causal: an existing malocclusion may also promote an adaptive tongue posture. Current evidence therefore supports an individualized and often multidisciplinary approach rather than treating tongue thrust as an isolated habit.

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🔹 What Is Atypical Swallowing?
During a mature swallowing pattern, the tongue generally assumes a relatively elevated and posterior position, with coordinated activity of the lips, cheeks, tongue, and masticatory muscles.
In atypical swallowing, the tongue may protrude anteriorly, interpose between the incisors, or exert abnormal pressure during swallowing.

Clinically, the orthodontist may observe:
▪️ Anterior tongue thrust
▪️ Anterior open bite
▪️ Increased overjet or proclination of incisors
▪️ Lip incompetence or excessive perioral muscle activity
▪️ Altered tongue resting posture
▪️ Associated oral habits such as prolonged digit sucking
The clinical examination should also investigate potential contributing factors, including mouth breathing, nasal obstruction, enlarged adenoids or tonsils, and persistent oral habits. A 2024 systematic review and meta-analysis found an association between mouth breathing and atypical swallowing, reinforcing the importance of evaluating airway-related factors rather than focusing exclusively on the tongue.

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🔹 How Is Atypical Swallowing Corrected?
Treatment should address both the functional pattern and the occlusal consequences.

1. Identify and manage contributing factors
Persistent oral habits and airway problems should be identified before or during orthodontic treatment. If nasal obstruction or another airway-related problem is suspected, appropriate medical evaluation is indicated.

2. Orofacial myofunctional therapy
Orofacial myofunctional therapy (OMT) aims to establish more appropriate tongue posture, lip function, and neuromuscular coordination.
Evidence suggests that OMT can improve aspects of tongue strength and orofacial motor function in patients with tongue thrust. However, the strength of evidence remains limited. A 2025 scoping review found that although many studies reported positive outcomes, the available evidence was heterogeneous and insufficient to definitively confirm OMT effectiveness across orofacial myofunctional disorders.
Therefore, OMT is best considered an adjunctive functional intervention, particularly when persistent tongue dysfunction may compromise orthodontic stability.

3. Orthodontic correction
When atypical swallowing is associated with an anterior open bite, orthodontic treatment may be required to correct the resulting dentoalveolar discrepancy.
The appliance selection depends on the patient's age, dentition, skeletal pattern, severity of the open bite, oral habits, and functional findings.

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🔹 What Is a Lingual Crib Used For?
A lingual crib, also called a palatal crib or tongue crib, is an orthodontic habit-breaking appliance designed to limit anterior tongue interposition.

Its primary functions are to:
▪️ Prevent the tongue from advancing between the incisors
▪️ Reduce the mechanical influence of anterior tongue thrust
▪️ Provide a physical barrier during swallowing
▪️ Encourage a more favorable tongue posture
▪️ Assist correction of anterior open bite associated with tongue thrust or other oral habits
The appliance does not simply "push the tongue backward." Its principal effect is to prevent the tongue from occupying the anterior interdental space, allowing the dentoalveolar structures to respond to the altered functional environment.
Experimental evidence has demonstrated adaptation of tongue pressure and resting behavior during crib therapy, suggesting that the tongue can progressively adapt to the new intraoral environment.

🔹 Lingual Crib: Fixed vs. Removable
Appliance Main Advantage Clinical Consideration
Fixed lingual crib Continuous restriction of anterior tongue interposition Less dependent on patient compliance
Removable lingual crib Easier hygiene and removal Effectiveness depends strongly on patient adherence
Palatal crib with other appliances Can simultaneously address open bite or transverse problems Treatment should be individualized according to the malocclusion
Clinical studies have demonstrated improvement in anterior open bite with palatal crib therapy, predominantly through dentoalveolar changes rather than major skeletal modification.
A 2022 systematic review and meta-analysis found that fixed palatal cribs, removable palatal cribs, and bonded lingual spurs produced broadly comparable overbite changes in early anterior open-bite treatment, although the quality of evidence was low.

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🔹 When Should a Lingual Crib Be Considered?
A lingual crib may be particularly useful when there is:

▪️ Anterior open bite associated with tongue thrust
▪️ Persistent anterior tongue interposition
▪️ A need for continuous habit control
▪️ A functional component contributing to orthodontic instability
▪️ A mixed-dentition patient in whom early interception is appropriate
The appliance should not be prescribed solely because an anterior open bite is present. The clinician should establish whether tongue posture or thrusting is clinically relevant to the malocclusion.

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💬 Discussion
The management of atypical swallowing requires distinguishing between a functional disorder and its dental manifestations. A lingual crib can be highly useful for mechanically controlling anterior tongue interposition, but it should not be regarded as a complete treatment for the underlying neuromuscular pattern.
Evidence from clinical trials indicates that palatal crib therapy can produce meaningful improvement in anterior open bite, while long-term studies suggest favorable stability in selected growing patients. Nevertheless, treatment outcomes depend on the etiology, skeletal growth pattern, severity of the malocclusion, and persistence of the underlying functional factors.
Similarly, current evidence does not justify assuming that every patient with tongue thrust requires prolonged myofunctional therapy. OMT may provide functional benefits, but methodological limitations and heterogeneous treatment protocols remain important limitations in the literature.
Consequently, the most rational approach is etiologic diagnosis + orthodontic correction when indicated + functional rehabilitation when clinically necessary.

🎯 Clinical Recommendations
1. Do not diagnose atypical swallowing from an anterior open bite alone. Confirm tongue posture and swallowing behavior clinically.
2. Evaluate airway obstruction, mouth breathing, digit sucking, and other oral habits when relevant.
3. Consider a lingual crib when anterior tongue interposition is demonstrably contributing to the malocclusion.
4. Use orofacial myofunctional therapy selectively, particularly when abnormal tongue posture or muscular coordination persists.
5. During orthodontic treatment, monitor the functional pattern as well as overbite and overjet to reduce the risk of persistent dysfunction and relapse.
6. In complex cases, coordinate care between orthodontics, speech-language pathology/myofunctional therapy, and medical specialists when airway or other contributing factors are identified.

✍️ Conclusion
Atypical swallowing should be managed as a functional and orthodontic problem rather than as an isolated habit. The lingual crib is useful because it mechanically restricts anterior tongue interposition and can facilitate correction of associated anterior open bite. However, successful long-term management requires identification of contributing factors and, when indicated, functional rehabilitation.
Current evidence supports the lingual crib as a useful orthodontic adjunct, while the evidence for orofacial myofunctional therapy remains promising but insufficiently standardized. A patient-specific, multidisciplinary strategy therefore provides the most defensible clinical approach.

📚 References

✔ Gómez-González, C., González-Mosquera, A., Alkhraisat, M. H., & Anitua, E. (2024). Mouth breathing and its impact on atypical swallowing: A systematic review and meta-analysis. Dentistry Journal, 12(2), 21. https://doi.org/10.3390/dj12020021
✔ Homem, M. A., Vieira-Andrade, R. G., Falci, S. G. M., Ramos-Jorge, M. L., & Marques, L. S. (2014). Effectiveness of orofacial myofunctional therapy in orthodontic patients: A systematic review. Dental Press Journal of Orthodontics, 19(4), 94–99. https://doi.org/10.1590/2176-9451.19.4.094-099.oar
✔ Mousa, M. R., Hajeer, M. Y., & Farah, H. (2021). Evaluation of the open-bite Bionator versus the removable posterior bite plane with a tongue crib in the early treatment of skeletal anterior open bite: A randomized controlled trial. European Journal of Orthodontics, 43(4), 163–171. https://doi.org/10.1016/j.ejwf.2021.08.001
✔ Shortland, H.-A. L., Hewat, S., Vertigan, A., & Webb, G. (2021). Orofacial myofunctional therapy and myofunctional devices used in speech pathology treatment: A systematic quantitative review of the literature. American Journal of Speech-Language Pathology, 30(1), 301–317. https://doi.org/10.1044/2020_AJSLP-20-00245
✔ Stefani, C. M., de Almeida de Lima, A., Stefani, F. M., Kung, J. Y., Flores-Mir, C., & Compton, S. M. (2025). Effectiveness of orofacial myofunctional therapy in improving orofacial function and oral habits: A scoping review. Canadian Journal of Dental Hygiene, 59(1), 59–72.
✔ Taslan, S., Biren, S., & Ceylanoglu, C. (2010). Tongue pressure changes before, during and after crib appliance therapy. The Angle Orthodontist, 80(3), 533–539. https://doi.org/10.2319/070209-370.1

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martes, 18 de agosto de 2026

Dexamethasone Drug Interactions in Dental Practice: What to Avoid

Dexamethasone

Dexamethasone is a potent glucocorticoid used in dentistry and oral surgery to control postoperative inflammation, edema, pain, and trismus.

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Its use is particularly well established around surgical procedures such as impacted third-molar extraction, although the certainty of evidence varies according to dose, route, and clinical outcome.

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Despite its frequent use as a single perioperative dose, dexamethasone drug interactions should not be overlooked. The medication is metabolized by CYP3A4 and can also induce CYP3A4 in a dose- and duration-dependent manner.
Consequently, other medications may increase dexamethasone exposure, reduce its effectiveness, or themselves be affected by dexamethasone. For dental clinicians, the practical question is therefore: Which medications should be avoided or used cautiously with dexamethasone?

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Dexamethasone: What to Avoid in Dental Practice
The following groups deserve particular attention when reviewing a patient's medication history.
Medication / Class Why It Matters Dental Approach
NSAIDs and aspirin Combined corticosteroid and NSAID therapy increases gastrointestinal adverse effects. Avoid unnecessary combination, particularly in patients with gastrointestinal or bleeding risk factors.
Clarithromycin, erythromycin CYP3A4 inhibition can increase systemic dexamethasone exposure. Use caution when repeated systemic dexamethasone is combined with these antibiotics.
Azole antifungals Strong CYP3A4 inhibitors may substantially reduce corticosteroid metabolism. Avoid unnecessary concomitant systemic therapy or monitor for corticosteroid adverse effects.
Rifampin CYP3A4 induction can increase dexamethasone metabolism and decrease exposure. Consider possible reduction in corticosteroid effect, particularly with repeated dosing.
Phenytoin and carbamazepine Enzyme induction can increase corticosteroid metabolism; phenytoin concentrations may also change. Exercise caution in patients receiving chronic anticonvulsant therapy.
Warfarin Systemic corticosteroids can alter anticoagulant response. Consider closer INR monitoring when clinically significant systemic corticosteroid therapy is initiated.
Insulin and antidiabetic drugs Dexamethasone can increase blood glucose concentrations. Use additional glucose monitoring in patients with diabetes, particularly after repeated systemic doses.
The current U.S. prescribing information specifically identifies CYP3A4 inhibitors and inducers, NSAIDs, phenytoin, and several other medication classes as clinically relevant interaction categories.

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1. Dexamethasone and NSAIDs: A Combination Requiring Caution
The combination of dexamethasone and NSAIDs is particularly relevant to dental practice because both medications may be considered for postoperative pain and inflammation.
Systemic corticosteroids combined with aspirin or other NSAIDs increase the risk of gastrointestinal adverse effects. This does not make the combination an absolute contraindication, but unnecessary concurrent use should be avoided, particularly in patients with previous gastrointestinal ulceration, bleeding risk, advanced age, or concomitant anticoagulant therapy.
The clinical context is important because dexamethasone may be administered as a single perioperative dose, whereas NSAIDs may be prescribed for several postoperative days. Interaction risk should therefore be assessed according to the actual dose and duration rather than simply labeling the combination as contraindicated.

2. CYP3A4 Inhibitors: Medications That Can Increase Dexamethasone Exposure
CYP3A4 inhibitors are among the most important interactions to recognize.
Examples include:
▪️ Clarithromycin
▪️ Erythromycin
▪️ Ketoconazole
▪️ Itraconazole
▪️ Ritonavir
▪️ Cobicistat-containing medications
These agents can reduce dexamethasone metabolism and increase systemic corticosteroid exposure. The prescribing information specifically warns that strong CYP3A4 inhibitors may increase the risk of systemic corticosteroid adverse effects.
For a patient receiving a single dental dose, the clinical significance may be lower than during prolonged systemic corticosteroid treatment. Nevertheless, repeated or higher-dose therapy warrants greater caution.

3. CYP3A4 Inducers: When Dexamethasone May Become Less Effective
The opposite problem occurs with CYP3A4 inducers.
Important examples include:
▪️ Rifampin
▪️ Carbamazepine
▪️ Phenytoin
▪️ Barbiturates
These medications can accelerate dexamethasone metabolism and reduce corticosteroid exposure.
This interaction is particularly relevant when dexamethasone is prescribed repeatedly rather than as an isolated perioperative dose. Evidence indicates that the interaction potential of dexamethasone varies substantially with dose and duration of treatment.

4. Dexamethasone and Anticoagulants
Patients taking warfarin require additional consideration. Systemic corticosteroids may alter the response to oral anticoagulants, making changes in anticoagulation control possible.
The appropriate response is not to discontinue anticoagulant therapy independently. When clinically significant systemic corticosteroid treatment is required, coordination with the physician responsible for anticoagulation and appropriate INR monitoring may be necessary.
Direct oral anticoagulants such as apixaban and rivaroxaban present a more complex situation because dexamethasone may affect CYP3A4 and P-glycoprotein pathways. The magnitude and clinical relevance of this interaction depend on the dose and duration of dexamethasone and remain less clearly established than some CYP3A4 interactions.

5. Dexamethasone and Antidiabetic Medications
Dexamethasone can increase blood glucose levels, which is clinically relevant in patients with diabetes receiving insulin or oral glucose-lowering medications.
A single perioperative dose may cause only transient changes, but repeated systemic administration can produce more clinically important hyperglycemia. Patients with poorly controlled diabetes therefore require greater caution when systemic corticosteroids are considered.
The dentist should distinguish between a single low-dose exposure and a prolonged corticosteroid regimen when estimating this risk.

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Other Interactions Worth Recognizing
Several additional interactions may be relevant depending on the patient's medical history.
Phenytoin is notable because coadministration has been associated with both increases and decreases in phenytoin concentrations, potentially affecting seizure control.
Estrogen-containing medications, including oral contraceptives, may decrease hepatic metabolism of certain corticosteroids and consequently increase their effects.
Corticosteroids may also reduce immune responses to vaccines and may increase concerns surrounding live attenuated vaccines when systemic immunosuppressive doses are used. This is generally more relevant to substantial or prolonged corticosteroid exposure than to a routine single dental dose.

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Single-Dose Dexamethasone vs. Repeated Therapy
One of the most important distinctions in evaluating dexamethasone drug interactions is whether the patient receives a single perioperative dose or repeated systemic therapy.
Dexamethasone is widely investigated in oral surgery for reducing postoperative pain and edema. Systematic reviews have reported beneficial effects after third-molar surgery, although evidence certainty varies among routes, doses, and outcomes.
The pharmacokinetic interaction profile also changes with exposure. Research indicates that the CYP3A4-inducing effect of dexamethasone is dose dependent, making prolonged or higher-dose therapy more relevant for clinically significant drug interactions.
Therefore, an interaction listed in a drug reference should not automatically be interpreted as a reason to avoid a single perioperative dose.

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💬 Discussion
The practical challenge for dentists is distinguishing theoretical pharmacological interactions from clinically meaningful interactions.
Dexamethasone has a broad interaction profile because it participates in CYP3A4-mediated metabolism and can affect other metabolic pathways. However, the magnitude of an interaction depends on the corticosteroid dose, treatment duration, route of administration, concomitant medication, and patient-specific factors.
For dental practice, the highest-yield medication review should focus on NSAIDs, strong CYP3A4 inhibitors, CYP3A4 inducers, anticoagulants, antidiabetic medications, and anticonvulsants.
Importantly, the objective is not to eliminate dexamethasone from dental practice. Evidence supports its usefulness for reducing postoperative inflammatory outcomes in selected oral surgical procedures.
Instead, clinicians should prescribe it selectively and assess whether the patient's medication profile changes the risk-benefit balance.

🎯 Clinical Recommendations
1. Review the complete medication list before prescribing systemic dexamethasone.
2. Avoid unnecessary dexamethasone–NSAID combinations, particularly in patients with gastrointestinal or bleeding risk factors.
3. Check for strong CYP3A4 inhibitors and inducers when repeated or higher-dose dexamethasone is planned.
4. Use additional caution with warfarin, with INR monitoring when clinically indicated.
5. Consider glycemic monitoring in patients with diabetes receiving clinically significant systemic corticosteroid exposure.
6. Do not routinely discontinue chronic medications solely because dexamethasone is being prescribed; potentially significant interactions should be evaluated individually.
7. For complex polypharmacy or narrow-therapeutic-index medications, consult a pharmacist or the patient's physician before altering essential therapy.

✍️ Conclusion
Dexamethasone remains a valuable medication in dental and oral surgical practice, particularly for controlling postoperative inflammatory symptoms. Nevertheless, its interaction potential deserves attention when patients receive multiple medications.
The combinations that should immediately prompt consideration include NSAIDs, CYP3A4 inhibitors, CYP3A4 inducers, anticoagulants, antidiabetic medications, and anticonvulsants.
The most appropriate approach is not blanket avoidance, but medication reconciliation, assessment of dose and duration, identification of high-risk interactions, and individualized clinical judgment. This is particularly important because the interaction potential of dexamethasone can be substantially greater with repeated or higher-dose systemic exposure than with a single perioperative dose.

📚 References

✔ Kedishvili, N. Y., et al. (2023). Drug-drug interactions involving dexamethasone in clinical practice: Myth or reality? Journal of Clinical Medicine, 12(22), 7120. https://doi.org/10.3390/jcm12227120
✔ Almadhoon, H. W., et al. (2022). Efficacy of different dexamethasone routes and doses in reducing the postoperative sequelae of impacted mandibular third-molar extraction: A network meta-analysis of randomized clinical trials. The Journal of the American Dental Association, 153(12), 1154–1170.e60. https://doi.org/10.1016/j.adaj.2022.08.017
✔ O'Hare, P. E., Wilson, B. J., Loga, M. G., & Ariyawardana, A. (2019). Effect of submucosal dexamethasone injections in the prevention of postoperative pain, trismus, and oedema associated with mandibular third molar surgery: A systematic review and meta-analysis. International Journal of Oral and Maxillofacial Surgery, 48(11), 1456–1469. https://doi.org/10.1016/j.ijom.2019.04.010
✔ Singh, A., Pentapati, K. C., Kodali, M. V. R. M., Smriti, K., Patil, V., Chowdhary, G. L., & Gadicherla, S. (2023). Efficacy of preemptive dexamethasone versus methylprednisolone in the management of postoperative discomfort and pain after mandibular third molar surgery: A systematic review and meta-analysis. International Journal of Dentistry, 2023, 7412026. https://doi.org/10.1155/2023/7412026
✔ Weiss, J., et al. (2021). Dexamethasone is a dose-dependent perpetrator of drug-drug interactions: Implications for use in people living with HIV. Journal of Antimicrobial Chemotherapy, 76(11), 2879–2886. https://doi.org/10.1093/jac/dkab260
✔ U.S. National Library of Medicine. (2025). Dexamethasone tablet: Prescribing information. DailyMed.

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Internal vs External Tooth Bleaching: Which Works Best?

Internal vs External Tooth Bleaching

Tooth bleaching is a common cosmetic treatment used to improve tooth color. However, not all discoloration should be treated in the same way.

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The most important distinction is whether the discoloration is inside the tooth or mainly on its outer surface. External bleaching acts from the outside and is primarily used for vital teeth, while internal bleaching places the bleaching agent inside a previously root-treated tooth.

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Choosing the correct approach depends on the cause of discoloration, pulp status, existing restorations, and condition of the root canal treatment.

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What Is External Tooth Bleaching?
External bleaching applies a peroxide-based product to the outer surfaces of the teeth. Common active ingredients include hydrogen peroxide and carbamide peroxide.

It is mainly appropriate when:
▪️ Several teeth have become darker with age.
▪️ There are extrinsic stains from coffee, tea, tobacco, or pigmented foods.
▪️ The natural tooth color is generally darker than desired.
▪️ A patient wants to lighten multiple vital teeth.
External bleaching can improve some intrinsic discoloration, but it has limited ability to correct a deep, localized discoloration within a single tooth, particularly when that tooth has undergone root canal treatment.

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What Is Internal Tooth Bleaching?
Internal bleaching, also called intracoronal bleaching, is designed primarily for a discolored non-vital tooth that has received root canal treatment.
The bleaching material is placed inside the access cavity after the dentist confirms that the endodontic treatment is satisfactory and creates an appropriate cervical seal.
One commonly used approach is the walking bleach technique, in which the bleaching material remains inside the tooth between appointments. Other approaches combine internal and external bleaching.
Internal bleaching can be particularly useful when discoloration is associated with pulpal bleeding, necrosis, trauma, or changes related to previous endodontic treatment.

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Internal vs External Bleaching: Key Differences
Feature External Bleaching Internal Bleaching
Main target Vital teeth and generalized discoloration Usually one or more root-treated, discolored teeth
Application On the outer tooth surfaces Inside the pulp chamber/access cavity
Best suited for Generalized or surface-related discoloration Localized discoloration of a non-vital tooth
Typical agents Hydrogen peroxide or carbamide peroxide Peroxide-based intracoronal bleaching agents
Main limitation Limited effect on some deep, localized discolorations Requires careful assessment of the root canal treatment and cervical seal
Which Method Is More Effective?
There is no universal winner because the two approaches are intended for different clinical situations.
For a patient with generally darkened but vital teeth, external bleaching is usually the appropriate choice. For a single darkened root-treated tooth, internal bleaching directly addresses the discoloration from within.
Clinical studies show that internal bleaching can produce substantial color improvement in endodontically treated teeth. A systematic review and meta-analysis found significant color changes following internal bleaching, although the included studies had moderate-to-high risk of bias and long-term evidence remains limited.
More recent clinical research also indicates that different internal bleaching techniques can all be effective. A 2024 randomized clinical trial comparing walking bleach, inside/outside bleaching, and in-office bleaching found that all three approaches improved tooth color.

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Safety: What Should Patients Know?
External bleaching is generally well tolerated when appropriately performed, but temporary tooth sensitivity and gingival irritation are the most common adverse effects. Higher peroxide concentrations may increase these effects.
Internal bleaching requires additional precautions. Before treatment, the dentist should verify that the root canal filling is satisfactory and establish an adequate cervical barrier to reduce contact between bleaching agents and periodontal tissues.
Historically, concerns have focused on external cervical root resorption, particularly when aggressive techniques or heat were used. Modern protocols therefore emphasize careful case selection, adequate sealing, and avoidance of unnecessary heat.
Importantly, cervical root resorption appears to be an uncommon complication, but the possibility should still be considered when planning internal bleaching, particularly in teeth with a history of trauma.

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Can Internal and External Bleaching Be Combined?
Yes. In selected cases, inside-outside bleaching can be used when a root-treated tooth is darker than the surrounding teeth and both internal and external color improvement are desirable.
This approach may be particularly useful when internal discoloration is accompanied by a generalized difference in tooth shade. However, it requires careful patient instructions and maintenance of a safe seal around the access cavity.
The choice should therefore be based on the cause and location of the discoloration, rather than simply selecting the strongest bleaching product.

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💬 Discussion
The evidence supports both internal and external bleaching, but their clinical roles are fundamentally different. External bleaching is primarily a treatment for vital teeth and generalized discoloration, whereas internal bleaching is particularly valuable for localized discoloration in root-treated teeth.
Recent evidence also suggests that clinicians have several effective options for non-vital tooth bleaching. A 2024 randomized clinical trial found that in-office bleaching produced slightly greater color improvement at some evaluation points than walking bleach, although both techniques were effective.
Therefore, treatment selection should prioritize diagnosis, biological safety, predictability, and the patient's esthetic expectations, rather than focusing only on speed or peroxide concentration.

🎯 Clinical Recommendations
▪️ Diagnose the cause of discoloration before selecting the bleaching technique.
▪️ Use external bleaching when generalized discoloration affects vital teeth.
▪️ Consider internal bleaching when a satisfactorily root-treated tooth remains noticeably discolored.
▪️ Before internal bleaching, confirm the quality of the endodontic treatment and cervical seal.
▪️ Avoid outdated or unnecessarily aggressive techniques, particularly heat-assisted internal bleaching.
▪️ Explain that restorations such as crowns, veneers, and composite fillings do not bleach like natural tooth structure; they may need replacement or color adjustment after bleaching.
▪️ Evaluate the final shade before replacing visible restorations so their color can be matched to the newly bleached tooth.

✍️ Conclusion
Internal and external tooth bleaching are complementary treatments, not competing techniques. External bleaching is generally the better choice for vital teeth with generalized discoloration, while internal bleaching is especially useful for a darkened root-treated tooth.
The most predictable results come from correct diagnosis, appropriate case selection, conservative bleaching protocols, and careful control of the tooth's biological condition. When these principles are followed, bleaching can provide meaningful esthetic improvement while maintaining a strong focus on patient safety.

📚 References

✔ American Dental Association. (2022). Whitening. ADA Oral Health Topics. American Dental Association – Whitening
✔ Zimmerli, B., Jeger, F., & Lussi, A. (2010). Bleaching of nonvital teeth: A clinically relevant literature review. Schweizer Monatsschrift für Zahnmedizin, 120(4), 306–320.
✔ Plotino, G., Buono, L., Grande, N. M., Pameijer, C. H., & Somma, F. (2008). Nonvital tooth bleaching: A review of the literature and clinical procedures. Journal of Endodontics, 34(4), 394–407. https://doi.org/10.1016/j.joen.2007.12.020
✔ Kwon, S. R., & Wertz, P. W. (2015). Review of the mechanism of tooth whitening. Journal of Esthetic and Restorative Dentistry, 27(5), 240–257. https://doi.org/10.1111/jerd.12152
✔ Bersezio, C., Ledezma, P., Torres, V., Villagra, J., Aravena, D., Kuga, M., Martín, J., & Fernandez, E. (2025). Comparative efficacy of in-office and walking bleach techniques in whitening of non-vital teeth. Clinical Oral Investigations, 29(1), 24. https://doi.org/10.1007/s00784-024-06048-9
✔ Gaidarji, B., Perez, B. G., & Durand, L. B. (2024). Effectiveness of three bleaching techniques for endodontically treated teeth: A randomized clinical trial. Operative Dentistry. https://doi.org/10.2341/24-005-C
✔ Amato, M., Scaravilli, M. S., Farella, M., & Tagariello, T. (2006). Bleaching teeth with nonvital pulp: A review. Journal of Endodontics, 32(9), 839–843.
✔ de Oliveira, B. A., Ferri, C. P., Araujo, M. A. M., & Valera, M. C. (2021). Comparison of the bleaching efficacy of different agents used for internal bleaching: A systematic review and meta-analysis. Journal of Endodontics, 47(12), 1831–1840.

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Cold Sores vs Canker Sores: Key Differences

Cold Sores - Canker Sores

Cold sores and canker sores are common oral lesions that can cause pain, irritation, and difficulty eating or speaking. Despite their similar appearance, they are clinically distinct conditions with different etiologies, locations, transmission risks, and management strategies.

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Cold sores, also called herpes labialis, are usually caused by herpes simplex virus type 1 (HSV-1). Canker sores are generally manifestations of recurrent aphthous stomatitis (RAS) and are not caused by HSV. Accurate differentiation is therefore important for diagnosis, patient counseling, and treatment.

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Cold Sores vs Canker Sores: Key Differences
Clinical Feature Cold Sores (Herpes Labialis) Canker Sores (Recurrent Aphthous Stomatitis)
Primary Cause Usually herpes simplex virus type 1 (HSV-1) Multifactorial inflammatory condition; not caused by HSV
Contagious? Yes, particularly during active lesions No
Typical Location Vermilion border, lips, and perioral skin; intraoral lesions usually involve keratinized mucosa Primarily nonkeratinized oral mucosa, including labial and buccal mucosa, floor of the mouth, and ventral tongue
Typical Appearance Grouped vesicles that rupture and form shallow ulcers or crusted lesions Round or oval ulcer with a gray-yellow base and surrounding erythematous halo
Prodrome Burning, tingling, itching, or localized pain may precede lesion development Localized tenderness or burning may precede ulceration
Recurrence Pattern Often recurs at or near a similar site Lesions commonly recur at different sites within the oral cavity
Healing Usually resolves spontaneously; recurrent lesions generally heal without scarring Minor ulcers generally heal within approximately 7–14 days without scarring
Transmission Direct contact with infected lesions or secretions can transmit HSV Not transmissible from person to person
The clinical distinction is particularly useful because an ulcer on the inner cheek, labial mucosa, floor of the mouth, or ventral tongue is more characteristic of aphthous disease, whereas recurrent herpes labialis typically involves the lip or adjacent perioral region.
What Are Cold Sores?
Cold sores, or herpes labialis, are recurrent infections associated predominantly with HSV-1. Following primary infection, the virus establishes latency in sensory ganglia and may reactivate periodically.
Recurrences may be associated with triggers such as ultraviolet light exposure, stress, fatigue, or other physiological factors. The classic episode begins with a prodrome of tingling, burning, or discomfort, followed by grouped vesicles that rupture and develop into superficial erosions or crusted lesions.
Because HSV-1 can be transmitted through direct contact, patients with active lesions should avoid activities that expose others to infected secretions, particularly contact involving the lesion.
For recurrent herpes labialis, antiviral therapy is most effective when initiated early, ideally during the prodromal stage. Evidence from systematic reviews supports both topical and systemic nucleoside antivirals for reducing lesion duration and pain, although the clinical benefit is generally modest.

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What Are Canker Sores?
Canker sores, clinically referred to as recurrent aphthous stomatitis, are painful ulcerations that occur primarily on nonkeratinized oral mucosa. Their pathogenesis is complex and appears to involve immune-mediated mechanisms rather than a single infectious agent.
Typical lesions are well-demarcated, round or oval ulcers with a grayish or yellowish base surrounded by an erythematous halo. Minor aphthae are the most common form and generally heal spontaneously within approximately two weeks without scarring.
Potential predisposing factors include local trauma, nutritional deficiencies, stress, hormonal influences, and systemic disorders. In patients with unusually frequent, severe, persistent, or atypical ulcers, clinicians should consider underlying hematinic deficiencies, gastrointestinal disease, immune disorders, or other systemic conditions.
Management is primarily directed toward pain control, reduction of inflammation, and acceleration of healing. Topical corticosteroids remain an important evidence-supported treatment option for symptomatic RAS. Recent evidence syntheses also support several topical and physical approaches, although treatment should be individualized according to disease severity.

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How to Differentiate Them Clinically
The anatomic location and lesion evolution are often more useful than appearance alone.
A recurrent lesion beginning as grouped vesicles on or around the lip strongly favors herpes labialis. In contrast, an isolated or several discrete ulcers developing directly on nonkeratinized oral mucosa are more consistent with aphthous ulceration.
Primary HSV infection can produce a more extensive clinical presentation, including gingivitis and multiple oral lesions. Therefore, the term "cold sore" should not be used to describe every oral ulcer associated with HSV infection.

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💬 Discussion
Although cold sores and canker sores may both present as painful ulcerative lesions, their biological mechanisms are fundamentally different. HSV-related lesions represent a viral infection with potential transmission, whereas recurrent aphthous stomatitis is an inflammatory ulcerative disorder without person-to-person transmission.
The most clinically useful diagnostic clues are location, preceding vesiculation, recurrence pattern, and associated systemic findings. Misclassification can lead to inappropriate counseling—for example, treating an aphthous ulcer as a contagious infection or overlooking recurrent HSV when antiviral therapy could be beneficial.
Persistent or atypical oral ulceration warrants further evaluation. Lesions that do not resolve within the expected healing period, particularly when persistent, indurated, unusually large, recurrent in an atypical pattern, or associated with systemic manifestations, should not automatically be attributed to either condition.

✍️ Conclusion
Cold sores and canker sores are not the same condition. Cold sores are usually caused by HSV-1, are contagious, and characteristically affect the lips or perioral tissues. Canker sores represent recurrent aphthous stomatitis, are not contagious, and predominantly affect nonkeratinized oral mucosa.
For dental professionals, anatomic location, lesion morphology, and clinical evolution provide the most useful initial clues for distinguishing the two. Atypical, persistent, or unusually severe lesions require appropriate diagnostic investigation rather than empirical labeling.

🎯 Clinical Recommendations
1. Examine lesion location first: recurrent lip or perioral lesions favor herpes labialis; nonkeratinized intraoral ulcers favor RAS.
2. Ask about prodrome and morphology: tingling followed by grouped vesicles supports HSV; a primary ulcer without preceding vesicles supports aphthous disease.
3. Assess transmission risk: patients with active herpes labialis should receive appropriate infection-control and contact counseling.
4. Consider early antiviral treatment when recurrent herpes labialis is clinically diagnosed and treatment is indicated.
5. Use topical corticosteroid therapy when appropriate for symptomatic recurrent aphthous stomatitis rather than antiviral treatment.
6. Investigate atypical or persistent ulcers, especially when they exceed the expected healing period or are accompanied by systemic manifestations.

📚 References

✔ Aizari, N. A., Al-Shamiri, H. M., AlShehri, B. K., Alhomood, K. A., Alzahrani, S. A., Abuhasna, W. A., & Al-Maweri, S. A. (2026). Evidence-based recommendations for the treatment of recurrent aphthous stomatitis: Insights from an umbrella review. Journal of Dermatological Treatment, 37(1), 2622245. https://doi.org/10.1080/09546634.2026.2622245
✔ Chavan, M., Jain, H., Diwan, N., Khedkar, S., Shete, A., & Durkar, S. (2012). Recurrent aphthous stomatitis: A review. Journal of Oral Pathology & Medicine, 41(8), 577–583. https://doi.org/10.1111/j.1600-0714.2012.01134.x
✔ Chen, F., Xu, H., Liu, J., Cui, Y., Luo, X., Zhou, Y., Chen, Q., & Jiang, L. (2017). Efficacy and safety of nucleoside antiviral drugs for treatment of recurrent herpes labialis: A systematic review and meta-analysis. Journal of Oral Pathology & Medicine, 46(8), 561–568. https://doi.org/10.1111/jop.12534
✔ D'Amario, M., Foffo, G., Grilli, F., Capogreco, M., Pizzolante, T., & Rastelli, S. (2025). Treatments for recurrent aphthous stomatitis: A literature review. Dentistry Journal, 13(2), 66. https://doi.org/10.3390/dj13020066
✔ Koe, K. H., Veettil, S. K., Maharajan, M. K., Syeed, M. S., Nair, A. B., & Gopinath, D. (2023). Comparative efficacy of antiviral agents for prevention and management of herpes labialis: A systematic review and network meta-analysis. Journal of Evidence-Based Dental Practice, 23(1), 101778. https://doi.org/10.1016/j.jebdp.2022.101778

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lunes, 17 de agosto de 2026

Prevention of Molar-Incisor Hypomineralization Complications

Molar-Incisor Hypomineralization

Molar-incisor hypomineralization (MIH) is a developmental enamel defect primarily affecting permanent first molars and, frequently, incisors. Because the enamel is less well mineralized, affected teeth are more susceptible to hypersensitivity, post-eruptive breakdown (PEB), dental caries, and restorative problems.

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An important clinical distinction is that there is currently no established preventive treatment that reliably prevents MIH from developing.

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Its etiology is considered multifactorial, involving systemic, environmental, and potentially genetic factors during tooth development. Prevention therefore focuses on reducing complications after MIH is identified, particularly during and shortly after eruption.

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1. Why Early Prevention Matters
The period immediately after eruption is particularly important. Newly erupted MIH-affected molars may be sensitive, difficult to clean, and vulnerable to mechanical enamel breakdown.
Once enamel breaks down, plaque retention and caries risk can increase, while hypersensitivity may further compromise oral hygiene. Early preventive care can therefore help maintain tooth structure and reduce the need for more extensive restorative treatment.
Children with hypomineralized second primary molars (HSPM) also deserve particular attention. A 2024 systematic review and meta-analysis involving 8,944 children found a strong association between HSPM and subsequent MIH, suggesting that HSPM can serve as an important clinical risk marker for closer surveillance.

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2. Fluoride for Caries Prevention
Topical fluoride remains an important component of preventive care for children with MIH because these teeth have an increased susceptibility to caries.
Fluoride toothpaste should be used according to the child's age and caries risk, with appropriate parental supervision. Professional fluoride varnish may also be incorporated into preventive care, particularly when caries risk or sensitivity is elevated.
However, fluoride should not be presented as a treatment that reverses the developmental enamel defect. Its principal preventive value is caries control and support of enamel resistance, rather than correction of the underlying MIH.

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3. Fissure Sealants
For fully erupted permanent molars with mild MIH, resin-based fissure sealants are an important preventive intervention.
The EAPD recommends resin-based sealants as a first-line approach for preventing caries and post-eruptive breakdown in suitable fully erupted molars. The use of an adhesive before sealant placement can improve retention because hypomineralized enamel may provide less predictable bonding.
When moisture control is difficult because the molar is incompletely erupted, a glass ionomer cement (GIC) may be useful as an interim protective material.

Preventive Strategies According to Clinical Situation
Clinical Situation Preferred Preventive Approach Main Objective
Newly erupted molar without enamel breakdown Fluoride-based prevention, oral hygiene reinforcement, early monitoring Reduce caries risk and detect early breakdown
Fully erupted mild MIH molar Resin-based fissure sealant, with adhesive when appropriate Prevent caries and post-eruptive breakdown
Partially erupted molar or poor moisture control GIC as an interim protective option Protect vulnerable enamel until definitive sealing is feasible
MIH with hypersensitivity Fluoride-based preventive care and individualized desensitizing measures Improve comfort and facilitate effective oral hygiene
Post-eruptive breakdown or caries Restorative management according to severity Stop progression and preserve tooth structure
4. Preventing Hypersensitivity-Related Problems
Hypersensitivity is one of the most clinically relevant complications of MIH. It can interfere with toothbrushing, eating, and routine dental care.
Fluoride varnishes and other desensitizing or remineralizing approaches have been studied, including CPP-ACP, CPP-ACFP, arginine-containing products, and calcium-based agents.
However, the evidence remains heterogeneous. A 2024 systematic review and meta-analysis found that CPP-ACP may reduce hypersensitivity compared with fluoride varnish, but substantial heterogeneity and limitations in the available studies prevent strong conclusions regarding a superior remineralizing protocol.
Therefore, these products should be considered adjunctive options rather than universally established MIH treatments.

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5. Oral Hygiene and Dietary Prevention
Children with MIH require particularly effective plaque control because sensitive or irregular enamel surfaces may be difficult to clean.

Preventive counseling should emphasize:
▪️ Twice-daily toothbrushing with age-appropriate fluoride toothpaste.
▪️ Parental assistance when necessary.
▪️ Limiting frequent exposure to fermentable carbohydrates.
▪️ Avoiding prolonged or repeated sugary snacks and drinks.
▪️ Maintaining regular professional examinations.
▪️ Addressing sensitivity early so that toothbrushing is not compromised.
These measures are not specific treatments for the developmental defect itself. Their purpose is to reduce secondary disease around structurally vulnerable teeth.

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6. Recall and Monitoring
Early diagnosis followed by regular monitoring is central to MIH prevention.
The EAPD guidance supports closer follow-up, particularly for newly erupted affected molars. Recall intervals of approximately 3–6 months may be appropriate for children with increased risk, allowing the clinician to detect:
▪️ Early post-eruptive breakdown
▪️ New caries
▪️ Increasing hypersensitivity
▪️ Sealant loss
▪️ Difficulty maintaining oral hygiene
▪️ Changes in restorative prognosis
The recall interval should nevertheless be individualized according to MIH severity, caries risk, eruption status, oral hygiene, and cooperation.

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7. What About Silver Diamine Fluoride?
Silver diamine fluoride (SDF) is well established for arresting caries in selected pediatric situations, but it should not be presented as a proven method for preventing MIH complications in general.
The EAPD guidance noted that, at the time of its publication, there were no clinical studies documenting SDF specifically on MIH-affected teeth.
The current AAPD best-practice document includes SDF among management considerations, but its role should be interpreted within the context of caries management and individual clinical circumstances, rather than as a method of correcting the underlying hypomineralization.

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💬 Discussion
The concept of prevention in MIH requires careful terminology. MIH itself is a developmental enamel defect and cannot currently be reliably prevented once its causative developmental period has occurred. The clinically realistic objective is to prevent or minimize its consequences.
The strongest practical preventive measures are early diagnosis, fluoride-based caries prevention, appropriate fissure sealing, hypersensitivity management, effective oral hygiene, dietary counseling, and close clinical monitoring.
The evidence for many newer remineralization and desensitization products remains limited. A 2024 meta-analysis found potentially beneficial effects for some non-invasive interventions, but emphasized heterogeneity and the need for higher-quality, longer-term clinical trials.
Accordingly, prevention should be risk-based rather than product-based. The severity of enamel breakdown, sensitivity, caries risk, eruption stage, and ability to maintain isolation should determine the intervention.

🎯 Clinical Recommendations
1. Identify MIH as early as possible, particularly around the eruption of the permanent first molars.
2. Treat HSPM as a potential risk marker and consider closer surveillance for subsequent MIH.
3. Establish fluoride-based caries prevention immediately after diagnosis.
4. Consider resin-based fissure sealants for suitable fully erupted mild MIH molars; use an adhesive when appropriate to improve retention.
5. Use GIC as an interim protective option when eruption or moisture control prevents predictable resin sealing.
6. Monitor affected teeth at shorter recall intervals when clinical risk is elevated.
7. Manage hypersensitivity early to prevent compromised oral hygiene and eating function.
8. Do not describe CPP-ACP, SDF, resin infiltration, or other emerging approaches as universally proven preventive treatments; their indications and evidence levels differ.

✍️ Conclusion
Prevention of MIH complications begins with early recognition, not with attempting to reverse the developmental defect. The principal goals are to preserve enamel, prevent caries and post-eruptive breakdown, control hypersensitivity, and maintain function.
Current evidence supports a preventive strategy centered on fluoride, fissure sealants, oral hygiene, dietary control, individualized sensitivity management, and regular monitoring. However, the evidence for many adjunctive remineralization therapies remains limited, making early diagnosis and risk-based clinical decision-making the most reliable foundation for MIH care.

📚 References

American Academy of Pediatric Dentistry. (2025). Molar-incisor hypomineralization. In The Reference Manual of Pediatric Dentistry (pp. 465–472). American Academy of Pediatric Dentistry.
Lygidakis, N. A., Garot, E., Somani, C., Taylor, G. D., Rouas, P., & Wong, F. S. L. (2022). Best clinical practice guidance for clinicians dealing with children presenting with molar-incisor-hypomineralisation (MIH): An updated European Academy of Paediatric Dentistry policy document. European Archives of Paediatric Dentistry, 23(1), 3–21. https://doi.org/10.1007/s40368-021-00668-5
Cavalcante, B. G. N., Mlinkó, É., Szabó, B., Teutsch, B., Hegyi, P., Vág, J., Németh, O., Gerber, G., & Varga, G. (2024). Non-invasive strategies for remineralization and hypersensitivity management in molar-incisor hypomineralization—A systematic review and meta-analysis. Journal of Clinical Medicine, 13(23), 7154. https://doi.org/10.3390/jcm13237154
Gevert, M. V., Wambier, L. M., Ito, L. Y., de Souza, J. F., & Chibinski, A. C. R. (2024). Which are the clinical consequences of molar-incisor hypomineralization (MIH) in children and adolescents? Systematic review and meta-analysis. Clinical Oral Investigations, 28(7), 415. https://doi.org/10.1007/s00784-024-05800-5
Lygidakis, N. A., Garot, E., Somani, C., Taylor, G. D., Rouas, P., & Wong, F. S. L. (2022). Best clinical practice guidance for clinicians dealing with children presenting with molar-incisor-hypomineralisation (MIH): An updated European Academy of Paediatric Dentistry policy document. European Archives of Paediatric Dentistry, 23(1), 3–21. https://doi.org/10.1007/s40368-021-00668-5
Zhang, Y., et al. (2024). Association of molar-incisor hypomineralization with hypomineralized second primary molars: An updated systematic review with a meta-analysis and trial sequential analysis. Medical Principles and Practice. https://pubmed.ncbi.nlm.nih.gov/39186925/

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