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Physics Comes to the Aid of Medicine—Clinically-Relevant Microorganisms through the Eyes of Atomic Force Microscope

机译:物理学通过原子力显微镜的眼睛借助医学临床相关的微生物

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摘要

Despite the hope that was raised with the implementation of antibiotics to the treatment of infections in medical practice, the initial enthusiasm has substantially faded due to increasing drug resistance in pathogenic microorganisms. Therefore, there is a need for novel analytical and diagnostic methods in order to extend our knowledge regarding the mode of action of the conventional and novel antimicrobial agents from a perspective of single microbial cells as well as their communities growing in infected sites, i.e., biofilms. In recent years, atomic force microscopy (AFM) has been mostly used to study different aspects of the pathophysiology of noninfectious conditions with attempts to characterize morphological and rheological properties of tissues, individual mammalian cells as well as their organelles and extracellular matrix, and cells’ mechanical changes upon exposure to different stimuli. At the same time, an ever-growing number of studies have demonstrated AFM as a valuable approach in studying microorganisms in regard to changes in their morphology and nanomechanical properties, e.g., stiffness in response to antimicrobial treatment or interaction with a substrate as well as the mechanisms behind their virulence. This review summarizes recent developments and the authors’ point of view on AFM-based evaluation of microorganisms’ response to applied antimicrobial treatment within a group of selected bacteria, fungi, and viruses. The AFM potential in development of modern diagnostic and therapeutic methods for combating of infections caused by drug-resistant bacterial strains is also discussed.
机译:尽管希望在医疗实践中实施抗生素的抗生素来提高抗生素,但由于致病微生物的耐药性增加,最初的热情基本上褪色。因此,需要新颖的分析和诊断方法,以便从单一微生物细胞的角度来扩展关于常规和新型抗微生物剂的作用模式以及它们在感染的位点生长的社区,即生物膜。近年来,原子力显微镜(AFM)主要用于研究非染色条件的病理生理学的不同方面,试图表征组织,个体哺乳动物细胞的形态学和流变性能,单个哺乳动物细胞以及细胞细胞和细胞外基质和细胞'暴露于不同刺激后的机械变化。同时,越来越多的研究已经证明AFM作为研究微生物在其形态和纳米力学性质的变化方面的有价值的方法,例如,响应抗菌处理或与基材的相互作用以及基材相互作用以及他们毒力背后的机制。本综述总结了最近的发展和作者对微生物的评价对一群选定的细菌,真菌和病毒的应用抗菌治疗的基于AFM的评价。还讨论了用于打击由耐药细菌菌株引起的现代诊断和治疗方法的AFM潜力。

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