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体外致龋生物膜的空间和生化特性分析

Analysis of Spatial and Biochemical Characteristics of In Vitro Cariogenic Biofilms.

作者信息

Kumaran Poojitha, Ramadoss Ramya, Sundar Sandhya, Panneer Selvam Suganya, P Bargavi, Ramani Pratibha

机构信息

Dentistry, Saveetha Dental College and Hospitals, Chennai, IND.

Oral Pathology and Oral Biology, Saveetha Dental College and Hospitals, Chennai, IND.

出版信息

Cureus. 2024 Feb 8;16(2):e53871. doi: 10.7759/cureus.53871. eCollection 2024 Feb.

Abstract

Background Dental caries is the most common bacterial disease of calcified tissues of teeth. Cariogenic biofilms formed on the tooth surface secrete organic acids and thus result in demineralization. Delving into the depth of biofilms is crucial to understand the pathogenic mechanisms and design improved therapeutic approaches. The aim of the study is to analyze the spatial and biochemical characteristics of cariogenic biofilms. Materials and methods Pulp tissue samples sourced from freshly extracted third molars were incubated with oral cariogenic bacteria namely , , , , and to form the biofilm. Spatial assessment of biofilms was done under FESEM (field emission scanning electron microscope, JSM-IT800, JEOL, Tokyo, Japan). FTIR (Fourier transform infrared spectroscopy, Alpha II, Bruker, Germany) spectra were assessed for chemical molecular interactions in 24- and 48-hour time periods.  Results Morphological assessment with FESEM revealed rapid growth and aggregation within a short time period. FTIR spectra to analyze chemical constituents of biofilm presented with varied peaks of water, amide A, amide I, water, lipids, and phospholipids. Conclusion Further validation with more advanced imaging for an extended time period is vital to derive better conclusive evidence.

摘要

背景 龋齿是牙齿钙化组织最常见的细菌性疾病。在牙齿表面形成的致龋生物膜会分泌有机酸,从而导致脱矿质。深入研究生物膜的深度对于理解致病机制和设计改进的治疗方法至关重要。本研究的目的是分析致龋生物膜的空间和生化特征。材料与方法 用新鲜拔除的第三磨牙的牙髓组织样本与口腔致龋细菌即 、 、 、 和 一起培养以形成生物膜。在场发射扫描电子显微镜(FESEM,JSM-IT800,日本东京电子株式会社)下对生物膜进行空间评估。在24小时和48小时时间段内,对傅里叶变换红外光谱(FTIR,Alpha II,德国布鲁克公司)光谱进行化学分子相互作用评估。结果 用FESEM进行的形态学评估显示在短时间内生物膜快速生长和聚集。用于分析生物膜化学成分的FTIR光谱呈现出水、酰胺A、酰胺I、水、脂质和磷脂各异的峰。结论 用更先进的成像技术在更长时间段内进行进一步验证对于获得更好的确凿证据至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/915f/10924687/6d8ba019f2c7/cureus-0016-00000053871-i01.jpg

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