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The importance of force in microbial cell adhesion

机译:武力在微生物细胞粘附中的重要性

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Microbes have evolved sophisticated strategies to colonize biotic and abiotic surfaces. Forces play a central role in microbial cell adhesion processes, yet until recently these were not accessible to study at the molecular scale. Unlike traditional assays, atomic force microscopy (AFM) is capable to study forces in single cell surface molecules and appendages, in their biologically relevant conformation and environment. Recent AFM investigations have demonstrated that bacterial pili exhibit a variety of mechanical responses upon contact with surfaces and that cell surface adhesion proteins behave as force-sensitive switches, two phenomena that play critical roles in cell adhesion and biofilm formation. AFM has also enabled to assess the efficiency of sugars, peptides, and antibodies in blocking cell adhesion, opening up new avenues for the development of antiadhesion therapies against pathogens.
机译:微生物已经进化了殖民化生物和非生物表面的复杂策略。 力在微生物细胞粘附过程中发挥着核心作用,但直到最近,这些不能以分子尺度进行研究。 与传统测定不同,原子力显微镜(AFM)能够在其生物相关构象和环境中研究单细胞表面分子和阑尾的力。 最近的AFM研究表明,细菌菌毛在与表面接触时表现出各种机械响应,并且细胞表面粘附蛋白表现为力敏感的开关,这两个现象在细胞粘附和生物膜形成中起重要作用。 AFM还使评估糖,肽和抗体在阻断细胞粘附中的效率,开放新的途径,用于对病原体的抗粘附疗法的发展。

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