胶体AgNP悬浮液体外抗单一培养生物膜的抗菌活性:一种治疗龋齿的新型牙齿消毒剂。

Q1 Medicine
D R Schwass, K M Lyons, R Love, G R Tompkins, C J Meledandri
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引用次数: 22

摘要

一种新型的银纳米颗粒(AgNP)制剂被开发出来,作为牙本质龋齿消毒的靶向应用。在十二烷基硫酸钠(SDS)的存在下,用硼水钠(NaBH4)对硝酸银(AgNO3)进行化学还原,形成含有单分散的6.7 ~ 9.2 nm稳定AgNPs的胶束聚集结构。通过电导率、动态光散射、扫描电镜、透射电镜和电感耦合等离子体质谱等方法对AgNPs进行了表征。AgNPs对具有代表性的革兰氏阳性和革兰氏阴性口腔细菌浮游培养物的抑菌活性,采用孔扩散试验,在胰蛋白酶豆汤培养基和单培养生物膜上进行微滴板上37°C厌氧脑心输注±蔗糖培养。用结晶紫法测定生物膜质量。比较了氟化二胺银和氯己定(阴性对照)和70%异丙醇(阳性对照)暴露培养的效果。在AgNPs存在的情况下,对戈多氏链球菌DL1、C219、G102和ATCC10558株进行三次试验;变形链球菌UA159;炎链球菌I18;粪肠球菌JH22对浮游细菌的最低抑菌浓度低至7.6µg mL-1,最低杀菌浓度低至19.2µg mL-1银浓度。检测590 nm处结晶紫光吸收的微孔板读数显示,暴露于agnp的生物膜与未使用抗菌剂的生物膜之间存在统计学差异。蔗糖的存在没有影响任何细菌的敏感性。通过阻止几种链球菌和粪肠球菌的体外生物膜形成,这种AgNP制剂显示了临床应用抑制生物膜的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Antimicrobial Activity of a Colloidal AgNP Suspension Demonstrated In Vitro against Monoculture Biofilms: Toward a Novel Tooth Disinfectant for Treating Dental Caries.

A novel silver nanoparticle (AgNP) formulation was developed as a targeted application for the disinfection of carious dentine. Silver nitrate (AgNO3) was chemically reduced using sodium borohydrate (NaBH4) in the presence of sodium dodecyl sulfate (SDS) to form micelle aggregate structures containing monodisperse 6.7- to 9.2-nm stabilized AgNPs. AgNPs were characterized by measurement of electrical conductivity and dynamic light scattering, scanning electron microscopy, transmission electron microscopy, and inductively coupled plasma mass spectrometry. Antimicrobial activity of AgNPs was tested against planktonic cultures of representative gram-positive and gram-negative oral bacteria using well diffusion assays on tryptic soy broth media and monoculture biofilms grown with brain heart infusion ± sucrose anaerobically at 37°C on microtiter plates. Biofilm mass was measured by crystal violet assay. Effects were compared to silver diamine fluoride and chlorhexidine (negative controls) and 70% isopropanol (positive control) exposed cultures. In the presence of AgNPs, triplicate testing against Streptococcus gordonii DL1, C219, G102, and ATCC10558 strains; Streptococcus mutans UA159; Streptococcus mitis I18; and Enterococcus faecalis JH22 for planktonic bacteria, the minimum inhibitory concentrations were as low as 7.6 µg mL-1 and the minimum bacteriocidal concentrations as low as 19.2 µg mL-1 silver concentration. Microplate readings detecting crystal violet light absorption at 590 nm showed statistically significant differences between AgNP-exposed biofilms and where no antimicrobial agents were used. The presence of sucrose did not influence the sensitivity of any of the bacteria. By preventing in vitro biofilm formation for several Streptococcus spp. and E. faecalis, this AgNP formulation demonstrates potential for clinical application inhibiting biofilms.

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来源期刊
Advances in Dental Research
Advances in Dental Research Medicine-Medicine (all)
CiteScore
8.20
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