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Dental caries remains the most prevalent chronic disease worldwide, with pit and fissure surfaces accounting for approximately 80–90% of all carious lesions in permanent teeth. The anatomical complexity of pits and fissures—narrow, deep, and often impossible to clean effectively with toothbrush bristles—creates an ideal environment for biofilm accumulation and acid production. Dental sealants, first introduced in the 1960s, provide a physical barrier that occludes these vulnerable surfaces, dramatically reducing caries risk. Despite decades of robust evidence supporting their efficacy, sealant utilization remains suboptimal in many populations.

Occlusal fissures present a unique caries challenge for several reasons:
Sealants function through two primary mechanisms:
Resin-based sealants are the most widely used type and the gold standard for pit and fissure sealing. They consist of a Bis-GMA or urethane dimethacrylate resin matrix with filler particles, applied using the acid-etch technique.
Glass ionomer cement (GIC) sealants offer distinct advantages for specific clinical scenarios:
Compomers combine resin chemistry with acid-base glass ionomer reactions. They offer intermediate properties—better wear resistance than GICs but with some fluoride release capability. Clinical studies show retention rates between GIC and conventional resin sealants.
Children and adolescents are the primary target population for sealants, as newly erupted permanent molars are at highest caries risk. The ADA and AAPD recommend sealing permanent first molars (erupt at approximately 6 years) and second molars (erupt at approximately 12 years) as soon as eruption is complete and isolation is feasible. Primary molars with deep pits and fissures in high-caries-risk children may also benefit from sealing, though evidence for primary tooth sealants is less robust.
Adults with deep pit and fissure anatomy, incipient fissure caries, or elevated caries risk benefit from sealants. While historically considered a pediatric procedure, evidence supports sealing caries-susceptible fissures at any age. Adults with xerostomia (medication-induced, radiation-induced, Sjögren's syndrome) are particularly appropriate candidates.
Sealants are most cost-effective when targeted to high-caries-risk individuals. Risk factors guiding sealant placement include: visible plaque on teeth, frequent sugar consumption, low socioeconomic status, previous caries experience, presence of white spot lesions, inadequate fluoride exposure, and special healthcare needs.
Sealants should be evaluated at every recall visit for retention, marginal integrity, and the presence of caries. Partially lost sealants can be repaired by cleaning, etching the exposed enamel and existing sealant, and applying additional sealant material. Complete replacement is indicated only when loss is extensive or caries is detected beneath the sealant. Annual sealant retention checks are recommended, with repair as needed.
Dental sealants are a safe, effective, and cost-efficient caries prevention strategy with decades of high-quality evidence supporting their use. Resin-based sealants remain the gold standard for optimal conditions, while glass ionomer sealants provide a valuable alternative for moisture-compromised situations. The key to clinical success lies in proper isolation, meticulous technique, and regular maintenance. Expanding sealant utilization in both pediatric and adult populations represents one of the most impactful opportunities for caries prevention in contemporary dentistry.
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