Novel pit and fissure sealant with nano-CaF2 and antibacterial monomer: Fluoride recharge, microleakage, sealing ability and cytotoxicity

Conventional resin-based sealants release minimal fluoride ions (F) and lack antibacterial activity. The objectives of this study were to: (1) develop a novel bioactive sealant containing calcium fluoride nanoparticles (nCaF2) and antibacterial dimethylaminohexadecyl methacrylate (DMAHDM), and (2) i...

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Veröffentlicht in:Dental Materials Journal 2024/05/25, Vol.43(3), pp.346-358
Hauptverfasser: FEI, Xiuzhi, LI, Yuncong, ZHANG, Qian, TIAN, Chunli, LI, Yue, DONG, Qiannan, WEIR, Michael D., HOMAYOUNFAR, Negar, OATES, Thomas W., IMAZATO, Satoshi, DAI, Quan, XU, Hockin H.K., RUAN, Jianping
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Sprache:eng
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Zusammenfassung:Conventional resin-based sealants release minimal fluoride ions (F) and lack antibacterial activity. The objectives of this study were to: (1) develop a novel bioactive sealant containing calcium fluoride nanoparticles (nCaF2) and antibacterial dimethylaminohexadecyl methacrylate (DMAHDM), and (2) investigate mechanical performance, F recharge and re-release, microleakage, sealing ability and cytotoxicity. Helioseal F served as commercial control. The initial F release from sealant containing 20% nCaF2 was 25-fold that of Helioseal F. After ion exhaustion and recharge, the F re-release from bioactive sealant did not decrease with increasing number of recharge and re-release cycles. Elastic modulus of new bioactive sealant was 44% higher than Helioseal F. The new sealant had excellent sealing, minimal microleakage, and good cytocompatibility. Hence, the nanostructured sealant had substantial and sustained F release and antibacterial activity, good sealing ability and biocompatibility. The novel bioactive nCaF2 sealant is promising to provide long-term F ions for caries prevention.
ISSN:0287-4547
1881-1361
DOI:10.4012/dmj.2023-166