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domingo, 23 de agosto de 2026

Topical Fluoride in Pediatric Dentistry: Indications, Age, and Frequency

Topical Fluoride

Topical fluoride in pediatric dentistry is a key component of evidence-based caries prevention. Its clinical use should be guided by age, dentition, caries risk, previous caries experience, and total fluoride exposure rather than by age alone.

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Among professionally applied agents, 5% sodium fluoride (NaF) varnish, containing 2.26% fluoride, has the strongest practical role in young children because it provides concentrated fluoride with a relatively small amount of material and limited systemic exposure.

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Current recommendations support its use beginning when teeth erupt, with treatment intervals adjusted according to individual caries risk.

How Does Topical Fluoride Prevent Dental Caries?
Fluoride acts primarily through topical mechanisms. It promotes remineralization, reduces enamel dissolution during acid challenges, and enhances the resistance of dental hard tissues to demineralization.
Repeated exposure is clinically important because fluoride is continuously cleared from the oral environment. Consequently, professional fluoride application should be considered part of a broader preventive strategy that also includes fluoridated toothpaste, dietary counseling, oral hygiene, caries-risk assessment, and appropriate sealant use.

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Indications for Topical Fluoride
Professional topical fluoride is particularly indicated for children with an elevated risk of dental caries, including those with:

▪️ Previous or active caries experience
▪️ Frequent exposure to fermentable carbohydrates
▪️ Poor plaque control
▪️ Enamel developmental defects or hypomineralization
▪️ Orthodontic appliances
▪️ Reduced salivary flow or other conditions increasing caries susceptibility
▪️ Limited exposure to fluoride from toothpaste or community water
▪️ Socioeconomic or access-related factors associated with increased caries risk
However, fluoride varnish can also be used preventively in children without established caries, particularly during early childhood. The USPSTF recommends application to primary teeth beginning at tooth eruption in children younger than 5 years.

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Which Fluoride Agent Should Be Used?
For children younger than 6 years, the ADA clinical practice guideline recommends 2.26% fluoride varnish as the principal professionally applied topical fluoride agent. In children aged 6 years and older, additional professionally applied options, including 1.23% acidulated phosphate fluoride (APF) gel, may be considered according to clinical circumstances.

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Recommended Professional Fluoride by Age
Age Preferred Professional Agent Typical Clinical Consideration
Infants and children <6 years 2.26% fluoride varnish Preferred professional topical fluoride; particularly useful after tooth eruption
Children 6–18 years 2.26% fluoride varnish or 1.23% APF gel Selection should consider caries risk, cooperation, dentition, and clinical circumstances
High-risk children Professional fluoride at shorter intervals Frequency should be individualized according to caries risk and disease activity
The ADA guideline specifically recommends 2.26% fluoride varnish every 3–6 months for patients at elevated caries risk, with the interval determined clinically.

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At What Age Should Topical Fluoride Begin?
There is no clinical reason to wait until a child reaches a particular chronological age once teeth have erupted. Topical fluoride varnish may begin with the eruption of the primary teeth.
The USPSTF recommends fluoride varnish application to the primary teeth of infants and children beginning at primary tooth eruption. This recommendation is supported by evidence demonstrating a moderate net benefit for caries prevention in children younger than 5 years.
Therefore, the clinically relevant starting point is tooth eruption and caries risk, not simply the child's birthday.

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How Often Should Fluoride Varnish Be Applied?
The appropriate interval should be individualized.
For children at elevated caries risk, evidence-based ADA recommendations support professional topical fluoride application every 3–6 months.
A practical risk-based approach is:
Caries Risk Suggested Interval Clinical Approach
Low Usually 6 months or individualized Emphasize fluoridated toothpaste, diet, hygiene, and routine risk reassessment
Moderate Approximately every 3–6 months Consider shorter intervals when multiple risk factors are present
High Approximately every 3 months Combine professional fluoride with comprehensive caries-risk management
The 3-month interval should not be interpreted as mandatory for every high-risk child. The decision should reflect disease activity, fluoride exposure, preventive behaviors, and the child's overall risk profile. The 2026 Dental Quality Alliance specifications recognize the evidence-based range of every 3–6 months according to caries risk.

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Fluoride Varnish and Fluorosis Risk
One important advantage of fluoride varnish in young children is the small quantity of material required for treatment. This limits the amount of fluoride available for ingestion compared with some other professionally applied preparations.
Current evidence does not identify professionally applied fluoride varnish as a significant risk factor for dental fluorosis when appropriately used. Nevertheless, clinicians should consider the child's total fluoride exposure, particularly during the period of permanent tooth development.

💬 Discussion
The evidence supports a risk-based rather than age-based approach to professional topical fluoride therapy. Early application is appropriate because primary teeth become susceptible to caries immediately after eruption, while repeated applications maintain topical fluoride exposure over time.
The strongest evidence and clinical consensus favor 2.26% fluoride varnish in children younger than 6 years. In older children, varnish remains an effective option, while other professionally applied agents may be considered when clinically appropriate.
Importantly, professional fluoride should not be regarded as an isolated preventive intervention. Its effectiveness is greatest when integrated into a comprehensive caries management strategy, including daily fluoride toothpaste, control of dietary sugar exposure, plaque control, appropriate sealants, and periodic reassessment of caries risk.

✍️ Conclusion
Topical fluoride in pediatric dentistry should begin when teeth erupt and should be prescribed according to individual caries risk. For young children, 2.26% fluoride varnish is the preferred professionally applied agent, while children at elevated risk generally benefit from applications at 3–6-month intervals.
The optimal fluoride regimen is therefore determined by risk, not age alone. Regular reassessment allows clinicians to intensify or reduce the frequency of professional fluoride treatment as the child's caries risk changes.

🎯 Clinical Recommendations
▪️ Initiate professional fluoride assessment as soon as primary teeth erupt.
▪️ Use 2.26% fluoride varnish as the principal professionally applied topical fluoride in children younger than 6 years.
▪️ For children at elevated caries risk, consider professional fluoride application every 3–6 months, with shorter intervals generally appropriate when risk is high.
▪️ Reassess caries risk and total fluoride exposure at each preventive visit rather than maintaining a fixed schedule indefinitely.
▪️ Do not use professional fluoride as a substitute for daily fluoridated toothpaste and comprehensive caries-risk management.
▪️ Document the child's caries risk, fluoride exposure, agent used, and planned recall interval to support individualized preventive care.

📚 References

✔ American Academy of Pediatric Dentistry. (2023). Fluoride therapy. The Reference Manual of Pediatric Dentistry, 2023–2024. American Academy of Pediatric Dentistry.
✔ American Dental Association. (2013). Professionally-applied and prescription-strength, home-use topical fluoride agents for caries prevention: Clinical practice guideline. American Dental Association.
✔ Chou, R., Pappas, M., Dana, T., Selph, S., Hart, E., Schwarz, E., Fu, R., & others. (2021). Screening and interventions to prevent dental caries in children younger than 5 years: Updated evidence report and systematic review for the U.S. Preventive Services Task Force. JAMA, 326(21), 2179–2192. https://doi.org/10.1001/jama.2021.15658
✔ U.S. Preventive Services Task Force. (2021). Screening and interventions to prevent dental caries in children younger than 5 years: U.S. Preventive Services Task Force recommendation statement. JAMA, 326(21), 2172–2178. https://doi.org/10.1001/jama.2021.20007
✔ Weyant, R. J., Tracy, S. L., Anselmo, T., Beltrán-Aguilar, E. D., Donly, K. J., Frese, W. A., Hujoel, P. P., Iafolla, T., Kohn, W., Kumar, J., Levy, S. M., Tinanoff, N., Wright, J. T., Zero, D., Aravamudhan, K., Frantsve-Hawley, J., & Meyer, D. M. (2013). Topical fluoride for caries prevention: Executive summary of the updated clinical recommendations and supporting systematic review. Journal of the American Dental Association, 144(11), 1279–1291. https://doi.org/10.14219/jada.archive.2013.0057

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viernes, 21 de agosto de 2026

Odontogenic Abscess vs Cellulitis in Children: Key Differences

Odontogenic Infection

Odontogenic infections in children can range from a localized dental abscess to rapidly spreading facial cellulitis. Although both conditions may originate from pulpal or periapical infection, their clinical behavior and urgency differ substantially.

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Accurate distinction is essential because facial cellulitis may progress to deep-space infection, systemic involvement, or airway compromise.

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Current pediatric dentistry guidance emphasizes early source control, appropriate assessment of systemic involvement, and judicious use of systemic antibiotics rather than relying on antibiotics alone.

What Is an Odontogenic Abscess?
A dental abscess is a localized collection of purulent material resulting from bacterial infection, commonly associated with pulpal necrosis and periapical infection.

Typical findings include:
▪️ Localized gingival or vestibular swelling
▪️ Tenderness and erythema
▪️ Possible purulent drainage or sinus tract
▪️ Localized pain or discomfort
▪️ Usually no fever or systemic illness when the infection remains localized
A localized odontogenic abscess generally requires definitive dental treatment, such as pulpectomy or extraction when indicated, and sometimes incision and drainage. Antibiotics alone do not eliminate the dental source.

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What Is Odontogenic Cellulitis?
Odontogenic cellulitis is a diffuse bacterial infection of the soft tissues surrounding a dental source. Unlike a localized abscess, the infection spreads through tissue planes and may produce significant facial swelling.

Clinical features may include:
▪️ Diffuse facial swelling
▪️ Rapid progression
▪️ Fever or malaise
▪️ Diffuse erythema
▪️ Trismus
▪️ Dysphagia or difficulty swallowing
▪️ Respiratory difficulty in severe cases
▪️ Tachycardia or other signs of systemic involvement
Pediatric odontogenic facial cellulitis is uncommon but potentially serious and can require hospital-based multidisciplinary management when severe or complicated.

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Abscess vs Cellulitis: Clinical Differences
Feature Odontogenic Abscess Odontogenic Cellulitis
Distribution Localized Diffuse and spreading
Swelling Localized Diffuse facial or soft-tissue swelling
Purulence May be present Not necessarily localized or fluctuant
Systemic signs Usually absent if localized May include fever, malaise and tachycardia
Progression Generally localized Potentially rapid and progressive
Urgency Prompt dental treatment Urgent assessment; severe cases require emergency management
Diagnosis in Children
Diagnosis should combine clinical examination, dental history, and appropriate imaging.

The clinician should assess:
▪️ The suspected odontogenic source.
▪️ The location and extent of swelling.
▪️ Temperature and systemic condition.
▪️ Mouth opening and presence of trismus.
▪️ Ability to swallow normally.
▪️ Any evidence of airway compromise.
▪️ Radiographic findings when indicated.
In severe or spreading infections, additional investigations such as ultrasound, computed tomography, blood tests, or microbiological studies may be appropriate depending on the clinical setting.

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Treatment Principles

Localized Abscess
The priority is elimination of the source of infection. Depending on the tooth's restorability, stage of root development, and overall clinical situation, treatment may involve:
▪️ Pulp therapy
▪️ Extraction
▪️ Incision and drainage when indicated
Systemic antibiotics are generally not indicated for a localized infection without systemic involvement or spreading infection.

Facial Cellulitis
Management requires more urgent intervention. Source control remains fundamental, but systemic antibiotic therapy is generally indicated when there is facial cellulitis or systemic involvement.
Severe cases characterized by progressive swelling, fever, dysphagia, trismus, respiratory difficulty, or suspected deep-space involvement may require hospital referral, intravenous antibiotics, surgical management, and multidisciplinary care.

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💬 Discussion
The distinction between odontogenic abscess and cellulitis is clinically important because the presence of swelling alone does not determine the severity of infection. The pattern of swelling, rate of progression, systemic findings, and potential involvement of critical anatomical spaces should guide management.
Current evidence also supports antibiotic stewardship. A systematic review found insufficient clinical evidence to justify routine systemic antibiotics for otherwise healthy children with localized odontogenic abscesses in the primary dentition when there are no signs of local spread or systemic involvement.
Conversely, facial cellulitis represents a different clinical scenario. The combination of source control and appropriate antimicrobial therapy is central to management, particularly when systemic or progressive features are present.

✍️ Conclusion
Odontogenic abscess and facial cellulitis represent different stages or patterns of odontogenic infection. A localized abscess is primarily managed through definitive dental treatment, whereas cellulitis requires rapid assessment for spreading infection and systemic complications. Recognizing red flags such as fever, progressive facial swelling, trismus, dysphagia, and respiratory difficulty is essential for timely escalation of care.

🎯 Clinical Recommendations
▪️ Treat progressive facial swelling, dysphagia, trismus, or respiratory difficulty as clinical red flags.
▪️ Prioritize definitive source control rather than using antibiotics as the sole treatment.
▪️ Reserve systemic antibiotics for cases with facial cellulitis, spreading infection, or systemic involvement, according to current pediatric guidelines.
▪️ Consider urgent hospital referral when airway compromise, deep-space infection, significant systemic illness, or rapid progression is suspected.
▪️ Reassess the child after treatment to confirm clinical resolution and elimination of the odontogenic source.

📚 References

✔ American Academy of Pediatric Dentistry. (2026). Use of antibiotic therapy for pediatric dental patients. In The Reference Manual of Pediatric Dentistry. American Academy of Pediatric Dentistry.
✔ American Academy of Pediatric Dentistry. (2025). Management considerations for pediatric oral surgery and oral pathology. In The Reference Manual of Pediatric Dentistry. American Academy of Pediatric Dentistry.
✔ Welti, R., Teoh, L., Sloan, A. J., Long, E., Burgner, D., & Silva, M. (2025). Pediatric odontogenic facial cellulitis: A comprehensive review for multidisciplinary management. Journal of the Pediatric Infectious Diseases Society. https://doi.org/10.1093/jpids/piaf108
✔ Leroy, R., Bourgeois, J., Verleye, L., Carvalho, J. C., Eloot, A., Cauwels, R., & Declerck, D. (2021). Are systemic antibiotics indicated in children presenting with an odontogenic abscess in the primary dentition? A systematic review of the literature. Clinical Oral Investigations, 25(5), 2537–2544. https://doi.org/10.1007/s00784-021-03862-3

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Minimally Invasive Endodontic Treatments in Primary Teeth: Trends

Minimally Invasive Endodontic Treatments

The management of pulpally involved primary teeth has increasingly shifted toward conservative strategies that preserve healthy pulp tissue, minimize unnecessary tissue removal, and maintain the tooth until its normal exfoliation.

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This approach is particularly relevant in pediatric dentistry, where treatment should balance biological preservation, clinical success, tooth restorability, and patient cooperation.

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Current evidence supports vital pulp therapy (VPT) as an important component of minimally invasive treatment, particularly through indirect pulp treatment (IPT) and calcium-silicate cement pulpotomy.

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What Does Minimally Invasive Endodontics Mean in Primary Teeth?
Minimally invasive endodontics aims to remove diseased tissue while preserving as much healthy dental and pulpal tissue as possible.

In primary teeth, this concept has encouraged greater use of:
▪️ Selective caries removal
▪️ Indirect pulp treatment (IPT)
▪️ Vital pulp therapy
▪️ Pulpotomy with calcium silicate cements
▪️ More conservative approaches to pulp exposure and tissue removal
▪️ Biological materials such as mineral trioxide aggregate (MTA) and Biodentine
The objective is not simply to perform a smaller procedure, but to achieve predictable disease control while preserving the biological function of the tooth.

1. Selective Caries Removal and Indirect Pulp Treatment
For deep carious lesions in primary teeth diagnosed with a normal pulp or reversible pulpitis, selective caries removal followed by indirect pulp treatment has become an important minimally invasive strategy.
The 2024 AAPD clinical practice guideline strongly recommends selective caries removal with IPT over complete or stepwise caries removal when vital primary teeth with deep caries require vital pulp therapy.
A 2023 systematic review and meta-analysis reported approximately 97% success for IPT at 24 months, with no significant difference in success between IPT and pulpotomy in the evaluated evidence.
This approach reduces the risk of unnecessary pulp exposure while allowing the tooth to remain functional.

2. Calcium Silicate Pulpotomy
Calcium silicate cements have become one of the most important developments in minimally invasive pulp therapy.
MTA and Biodentine demonstrate high clinical and radiographic success when used for pulpotomy in appropriately selected primary teeth. The 2024 AAPD guideline strongly recommends calcium-silicate cement pulpotomy over formocresol, ferric sulfate, zinc oxide eugenol used alone, and other pulpotomy approaches.
The updated evidence therefore supports a shift toward biocompatible hydraulic calcium-silicate materials rather than traditional pulpotomy medicaments.

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3. Conservative Pulpotomy vs. Pulpectomy
Another emerging trend is the investigation of pulpotomy as a less invasive alternative to pulpectomy in carefully selected primary teeth with more advanced pulpal inflammation.
A 2026 systematic review comparing pulpotomy and pulpectomy in primary teeth with irreversible pulpitis found no statistically significant difference in clinical or radiographic success at up to 12 months. However, the certainty of evidence was very low, and the available studies were limited and heterogeneous.
Therefore, this approach should currently be regarded as an emerging evidence-based trend, rather than a universal replacement for pulpectomy.

4. Biological Materials and Tissue Preservation
The increasing use of MTA, Biodentine, and other calcium-silicate materials reflects a broader movement toward biological compatibility and tissue preservation.
These materials provide favorable sealing and biological properties and have demonstrated high success in primary-tooth pulpotomy. The evidence is particularly strong for MTA and Biodentine compared with several traditional pulpotomy medicaments.
The trend is therefore moving from simply removing inflamed tissue toward preserving viable tissue whenever the diagnosis permits.

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💬 Discussion
The evolution of minimally invasive endodontics in primary teeth reflects a change in treatment philosophy: preservation of pulp vitality should be prioritized when biologically appropriate.
Current evidence provides strong support for IPT in deep caries and for calcium-silicate pulpotomy in appropriately selected vital primary teeth. Importantly, minimally invasive treatment does not mean undertreatment. Accurate pulp diagnosis, isolation, caries management, hemorrhage control, and definitive coronal restoration remain essential for success.
The potential expansion of pulpotomy into selected cases traditionally treated with pulpectomy is particularly interesting. Nevertheless, the 2026 systematic review identified very low certainty of evidence, indicating that longer-term randomized clinical trials are needed before this approach can be routinely generalized.
Thus, the current trend is best characterized as conservative biological treatment supported by increasingly sophisticated materials and stronger evidence for tissue preservation, rather than simply reducing the number of instrumentation steps.

🎯 Clinical Recommendations
1. Establish an accurate pulpal diagnosis before selecting the treatment. Minimally invasive treatment should not compromise appropriate management of irreversible inflammation or necrosis.
2. For deep caries in a primary tooth with normal pulp or reversible pulpitis, consider selective caries removal and IPT when clinically indicated.
3. When pulpotomy is indicated in a vital primary tooth, calcium silicate cements such as MTA or Biodentine currently have stronger supporting evidence than several traditional medicaments.
4. Consider pulpotomy instead of pulpectomy in selected cases only when the clinical and radiographic findings support conservative vital pulp management; the emerging evidence for irreversible pulpitis should not yet be interpreted as universal guidance.
5. Prioritize a well-sealed definitive restoration, because the success of minimally invasive pulp therapy depends not only on the pulp procedure but also on effective coronal sealing and control of recurrent caries.

✍️ Conclusion
Minimally invasive endodontics in primary teeth is increasingly centered on biological preservation rather than routine removal of extensive amounts of pulpal tissue. Indirect pulp treatment, selective caries removal, calcium-silicate pulpotomy, and biocompatible materials represent the principal current trends.
The strongest contemporary evidence supports IPT and calcium-silicate pulpotomy for appropriately diagnosed vital primary teeth. Although pulpotomy for selected cases of irreversible pulpitis is an emerging area of interest, current evidence remains insufficient to replace pulpectomy as a general standard.

📚 References

✔ American Academy of Pediatric Dentistry. (2024). Use of vital pulp therapies in primary teeth 2024. Pediatric Dentistry, 46(1), 13–26.
✔ American Academy of Pediatric Dentistry. (2026). Pulp therapy for primary and immature permanent teeth. In The Reference Manual of Pediatric Dentistry. American Academy of Pediatric Dentistry.
✔ Coll, J. A., Dhar, V., Chen, C.-Y., et al. (2023). Primary tooth vital pulp treatment interventions: Systematic review and meta-analyses. Pediatric Dentistry, 45(6), 474–546.
✔ Bastos, M. C., Albuquerque, F. G. A., Cetira Filho, E. L., Silva, P. G. B., & Rolim, J. P. M. L. (2024). Clinical and radiographic success of pulpotomy and pulpectomy in primary and permanent teeth: A systematic review and meta-analysis. Journal of Clinical and Experimental Dentistry, 16(9), e732–e740. https://doi.org/10.4317/jced.61346
✔ Vitali, F. C., et al. (2025). Impact of pulpectomy versus extraction of primary teeth on patient-centered outcomes: A systematic review of clinical studies. Journal of Evidence-Based Dental Practice, 25(1), 102072. https://doi.org/10.1016/j.jebdp.2024.102072
✔ Effectiveness of pulpotomy compared with pulpectomy for irreversible pulpitis in primary teeth: A systematic review and meta-analysis. (2026). Journal of Dentistry, 106329. https://doi.org/10.1016/j.jdent.2026.106329

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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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