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多克隆和重组抗体对活 的捕获条件的研究。

Investigation of Conditions for Capture of Live with Polyclonal and Recombinant Antibodies.

机构信息

Laboratory for Nano-Technologies and Nano-Characterization (LN2)-CNRS UMI-3463, Interdisciplinary Institute for Technological Innovation (3IT), Université de Sherbrooke, 3000 Boul. de l'Université, Sherbrooke, QC J1K 0A5, Canada.

Department of Microbiology and Infectiology, Faculty of Medicine and Health Science, Université de Sherbrooke, 3001 12th Avenue North, Sherbrooke, QC J1H 5N4, Canada.

出版信息

Biosensors (Basel). 2022 May 31;12(6):380. doi: 10.3390/bios12060380.

Abstract

Since has caused punctual epidemics through various water systems, the need for a biosensor for fast and accurate detection of pathogenic bacteria in industrial and environmental water has increased. In this report, we evaluated conditions for the capture of live on a surface by polyclonal antibodies (pAb) and recombinant antibodies (recAb) targeting the bacterial lipopolysaccharide. Using immunoassay and PCR quantification, we demonstrated that, when exposed to live in PBS or in a mixture containing other non-target bacteria, recAb captured one third fewer than pAb, but with a 40% lower standard deviation, even when using the same batch of pAb. The presence of other bacteria did not interfere with capture nor increase background by either Ab. Increased reproducibility, as manifested by low standard deviation, is a characteristic that is coveted for biosensing. Hence, the recAb provided a better choice for immune adhesion in biosensors even though it was slightly less sensitive than pAb. Polyclonal or recombinant antibodies can specifically capture large targets such as whole bacteria, and this opens the door to multiple biosensor approaches where any of the components of the bacteria can then be measured for detection or characterisation.

摘要

由于 通过各种水系引起了定时的流行,因此需要生物传感器来快速准确地检测工业和环境水中的致病菌。在本报告中,我们评估了针对细菌脂多糖的多克隆抗体 (pAb) 和重组抗体 (recAb) 对活 的表面捕获条件。通过免疫测定和 PCR 定量,我们证明了当暴露于 PBS 或含有其他非靶细菌的混合物中的活 时,recAb 比 pAb 捕获的 少三分之一,但标准偏差低 40%,即使使用相同批次的 pAb 也是如此。其他细菌的存在既不会干扰捕获,也不会增加任何一种 Ab 的背景。增加的重现性,表现为低标准偏差,是生物传感所渴望的特性。因此,即使 recAb 的灵敏度略低于 pAb,它也为生物传感器中的免疫粘附提供了更好的选择。多克隆或重组抗体可以特异性地捕获大目标,如整个细菌,这为多种生物传感器方法打开了大门,然后可以测量细菌的任何成分来进行检测或表征。

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