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羧甲基壳聚糖稳定的金纳米粒子/无定形磷酸钙纳米杂化物用于牙釉质白斑病变

Carboxymethyl chitosan stabilized AuNPs/ACP nanohybrids in enamel white spot lesions.

作者信息

Chen Xiaohua, Liu Hengyu, Zhang Qianqian, Chen Xuehua, Wang Lihui, Yu Yanling, Hao Yuanping

机构信息

School of Stomatology of Binzhou Medical University, Yantai, China.

Qingdao Stomatological Hospital Affiliated to Qingdao University, Qingdao, China.

出版信息

Front Bioeng Biotechnol. 2024 Jul 16;12:1421887. doi: 10.3389/fbioe.2024.1421887. eCollection 2024.

Abstract

Acidic bacterial biofilms-associated enamel white spot lesions (WSLs) are one of the hallmarks of early caries, causing demineralization and decomposition of dental hard tissues. Therefore, to effectively prevent and treat WSLs, it is important to inhibit the activity of cariogenic bacteria while promoting the remineralization of demineralized enamel. Amorphous calcium phosphate (ACP) favors hard tissue remineralization due to its biological activity and ability to release large amounts of Ca and PO . However, ACP-based biomineralization technology is not effective due to its lack of antimicrobial properties. Here, carboxymethyl chitosan (CMCS) was employed as a reducing agent and stabilizer, and dual-functional nanohybrids CMCS/AuNPs/ACP with biofilm resistance and mineralization properties were successfully synthesized. The addition of AuNPs enhances the antimicrobial activity and participates in regulating the formation of hydroxyapatite (HAp). The nanohybrids exhibited significant destructive effects against cariogenic bacteria and their biofilms and showed bactericidal activity under bacteria-induced acidic conditions. More importantly, this nanohybrids showed superior results in promoting the remineralization of demineralized enamel, compared to fluoride and CMCS/ACP . The CMCS/AuNPs/ACP nanohybrids not only reverse the cariogenic microenvironment at the microbial level, but also promote self-repairing of enamel WSLs regarding the microstructure. The present work offers a theoretical and experimental basis for using the CMCS/AuNPs/ACP nanohybrids as a potential dual-functional agent for the clinical treatment of enamel WSLs.

摘要

酸性细菌生物膜相关的牙釉质白斑病变(WSLs)是早期龋齿的标志之一,会导致牙齿硬组织的脱矿和分解。因此,为了有效预防和治疗WSLs,抑制致龋菌的活性同时促进脱矿牙釉质的再矿化很重要。无定形磷酸钙(ACP)因其生物活性和释放大量钙和磷的能力而有利于硬组织再矿化。然而,基于ACP的生物矿化技术由于缺乏抗菌性能而效果不佳。在此,羧甲基壳聚糖(CMCS)被用作还原剂和稳定剂,成功合成了具有抗生物膜和矿化特性的双功能纳米杂化物CMCS/AuNPs/ACP。AuNPs的添加增强了抗菌活性并参与调节羟基磷灰石(HAp)的形成。该纳米杂化物对致龋菌及其生物膜表现出显著的破坏作用,并在细菌诱导的酸性条件下显示出杀菌活性。更重要的是,与氟化物和CMCS/ACP相比,这种纳米杂化物在促进脱矿牙釉质的再矿化方面显示出优异的效果。CMCS/AuNPs/ACP纳米杂化物不仅在微生物水平上逆转了致龋微环境,而且在微观结构方面促进了牙釉质WSLs的自我修复。目前的工作为将CMCS/AuNPs/ACP纳米杂化物用作牙釉质WSLs临床治疗的潜在双功能剂提供了理论和实验依据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9c91/11286484/aece70c47d7d/FBIOE_fbioe-2024-1421887_wc_sch1.jpg

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