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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Detecting Bacterial Surface Organelles on Single Cells Using Optical Tweezers
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Detecting Bacterial Surface Organelles on Single Cells Using Optical Tweezers

机译:使用光学镊子检测单细胞上的细菌表面细胞器

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摘要

Bacterial cells display a diverse array of surface organelles that are important for a range of processes such as Bald intercellular communication, motility and adhesion leading to biofilm formation, infections, and bacterial spread. More specifically, attachment to host cells by Gram-negative bacteria are mediated by adhesion pill, which are nanometers wide and micrometers long fibrous organelles. Since these pill are significantly thinner than the wavelength of visible light, they cannot be detected using standard light microscopy techniques. At present, there is' no fast and simple method available to investigate if a single cell expresses pill while keeping the cell alive for further studies. In this study, we present a method to determine the presence of pili on a single bacterium. The protocol involves imaging the bacterium to measure its size, followed by predicting the fluid drag based on its size using an analytical Model, and thereafter oscillating the sample while a single bacterium is trapped by an optical tweezer to measure its effective fluid drag. Comparison between the predicted and the measured fluid drag thereby indicate the presence Herein, we verify the method using polymer coated silica microspheres and Escherichia coli bacteria expressing adhesion pili: Our protocol can in real time and within seconds assist single cell studies by distinguishing between piliated and nonpiliated bacteria.
机译:细菌细胞显示出各种各样的表面细胞器,这些表面器对于一系列过程(例如秃顶细胞间通讯,运动性和粘附性,导致生物膜形成,感染和细菌传播)很重要。更具体地,革兰氏阴性细菌对宿主细胞的附着是通过粘附丸介导的,该粘附丸是纳米宽且微米长的纤维细胞器。由于这些药丸比可见光的波长薄得多,因此无法使用标准的光学显微镜技术对其进行检测。目前,尚没有快速,简单的方法来研究单个细胞是否表达药丸,同时保持细胞存活以供进一步研究。在这项研究中,我们提出了一种确定单个细菌上菌毛存在的方法。该方案包括对细菌进行成像以测量其大小,然后使用分析模型基于细菌的大小预测流体阻力,然后振荡样品,同时用光学镊子捕获单个细菌以测量其有效流体阻力。预测的和测量的流体阻力之间的比较由此表明存在。在此,我们验证了使用聚合物包被的二氧化硅微球和表达粘附菌毛的大肠杆菌的方法:我们的方案可通过区分纤毛和胶粘剂来实时,数秒内协助单细胞研究。无毛细菌。

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