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含氟亚锡牙膏对生物膜组成、基因表达及生物力学性能的影响

Effect of a Stannous Fluoride Dentifrice on Biofilm Composition, Gene Expression and Biomechanical Properties.

作者信息

Gumber Hardeep Kaur, Louyakis Artemis S, Sarma Tulika, Fabijanic Kristina Ivana, Paul Reeba, Mellenbruch Kristen, Kilpatrick-Liverman Latonya

机构信息

Colgate-Palmolive Technology Center, Piscataway, NJ 08854, USA.

Hill's Pet Nutrition, Inc., Topeka, KS 66603, USA.

出版信息

Microorganisms. 2022 Aug 23;10(9):1691. doi: 10.3390/microorganisms10091691.

Abstract

An in situ study was conducted to examine the mode of action of a 0.454% stannous fluoride (SnF)-containing dentifrice in controlling the composition and properties of oral biofilm. Thirteen generally healthy individuals participated in the study. Each participant wore an intra-oral appliance over a 48-h period to measure differences in the resulting biofilm's architecture, mechanical properties, and bacterial composition after using two different toothpaste products. In addition, metatranscriptomics analysis of supragingival plaque was conducted to identify the gene pathways influenced. The thickness and volume of the microcolonies formed when brushing with the SnF dentifrice were dramatically reduced compared to the control 0.76% sodium monofluorophosphate (MFP)-containing toothpaste. Similarly, the biophysical and nanomechanical properties measured by atomic force microscopy (AFM) demonstrated a significant reduction in biofilm adhesive properties. Metatranscriptomic analysis identified pathways associated with biofilm formation, cell adhesion, quorum sensing, and N-glycosylation that are significantly downregulated with SnF. This study provides a clinically relevant snapshot of how the use of a stabilized, SnF toothpaste formulation can change the spatial organization, nanomechanical, and gene expression properties of bacterial communities.

摘要

进行了一项原位研究,以检验含0.454%氟化亚锡(SnF)的牙膏在控制口腔生物膜组成和特性方面的作用模式。13名一般健康的个体参与了该研究。每位参与者在48小时内佩戴口腔内装置,以测量使用两种不同牙膏产品后形成的生物膜在结构、机械性能和细菌组成方面的差异。此外,还对龈上菌斑进行了宏转录组学分析,以确定受影响的基因途径。与对照含0.76%单氟磷酸钠(MFP)的牙膏相比,使用含SnF牙膏刷牙时形成的微菌落的厚度和体积显著减小。同样,通过原子力显微镜(AFM)测量的生物物理和纳米力学性能表明生物膜的粘附性能显著降低。宏转录组学分析确定了与生物膜形成、细胞粘附、群体感应和N-糖基化相关的途径,这些途径在使用SnF后显著下调。这项研究提供了一个临床相关的快照,展示了使用稳定的含SnF牙膏配方如何改变细菌群落的空间组织、纳米力学和基因表达特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/00bd/9506307/e555d3c57d6c/microorganisms-10-01691-g001.jpg

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