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口腔静态生物膜模型研究进展北大核心CSCD
引用本文:赵化冰,史婷婷,李凤珠,王睿,路福平,黄正梅.口腔静态生物膜模型研究进展北大核心CSCD[J].生物工程学报,2022,38(9):3267-3278.
作者姓名:赵化冰  史婷婷  李凤珠  王睿  路福平  黄正梅
作者单位:天津科技大学 工业发酵微生物教育部重点实验室, 天津 300457;天津科技大学 天津市工业微生物重点实验室, 天津 300457;天津科技大学 生物工程学院 工业酶国家工程实验室, 天津 300457;天科本真 (天津) 生物技术有限公司 天科本真人体微生态研究院, 天津 300457
摘    要:口腔静态生物膜模型是体外模拟口腔微生态环境的重要手段,因其成本低、通量高、可靠性好、操作容易等优点,已成为研究各种口腔疾病的发病机制,测试各种药物、口腔护理用品、食品的重要工具。建立口腔静态生物膜模型,可根据研究目的,选择不同的装置、接种源、培养基、基质和培养条件,并通过测定生物量、代谢活性、群落结构以及进行可视化分析等多种方法评价生物膜的生长情况。本文汇总了近年来报道的口腔静态生物膜模型建立和评价的方法学要素,并分析讨论了各种方法的适用范围,希望有助于相关领域研究和生产实践的开展。

关 键 词:口腔  生物膜  静态模型  阿姆斯特丹主动附着模型  卡尔加里装置  微观世界模型  多物种模型
收稿时间:2021/12/10 0:00:00

Advance of in vitro oral static biofilm model
ZHAO Huabing,SHI Tingting,LI Fengzhu,WANG Rui,LU Fuping,HUANG Zhengmei.Advance of in vitro oral static biofilm model[J].Chinese Journal of Biotechnology,2022,38(9):3267-3278.
Authors:ZHAO Huabing  SHI Tingting  LI Fengzhu  WANG Rui  LU Fuping  HUANG Zhengmei
Institution:Key Laboratory of Industrial Fermentation Microbiology, Ministry of Education, Tianjin University of Science & Technology, Tianjin 300457, China;Tianjin Key Laboratory of Industrial Microbiology, Tianjin University of Science & Technology, Tianjin 300457, China;National Engineering Laboratory for Industrial Enzymes, College of Biotechnology, Tianjin University of Science & Technology, Tianjin 300457, China;Tianke & Benzhen Human microecology Research Institute, Tianke & Benzhen (Tianjin) Biotechnology Company Limited, Tianjin 300457, China
Abstract:Oral static biofilm model is an important tool for in vitro simulation of oral microecological environment, which has become an important method for studying the pathogenesis of various oral diseases and testing the efficacy of various drugs, oral care products and foods due to its low cost, high throughput, good reliability and easy operation. The establishment of oral static biofilm models allows the selection of different devices, inoculum sources, media, substrates and culture conditions according to the purpose of the study, and the evaluation of biofilm growth by various methods such as measuring biomass, metabolic activity, community structure and performing visualization analysis. This paper summarizes the methodological elements reported in recent years for the establishment and evaluation of oral static biofilm models, and analyzes and discusses the applicability of various methods in the hope of contributing to the research and production practice in related fields.
Keywords:oral  biofilm  static model  Amsterdam active attachment model  Calgary biofilm device  microcosms models  multispecies biofilm models
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