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高通量分析表明,吞噬成功的时间尺度取决于目标的韧性。

High-throughput assays show the timescale for phagocytic success depends on the target toughness.

作者信息

Bakhtiari Layla A, Wells Marilyn J, Gordon Vernita D

出版信息

Biophys Rev (Melville). 2021 Sep;2(3):031402. doi: 10.1063/5.0057071. Epub 2021 Sep 30.

Abstract

Phagocytic immune cells can clear pathogens from the body by engulfing them. Bacterial biofilms are communities of bacteria that are bound together in a matrix that gives biofilms viscoelastic mechanical properties that do not exist for free-swimming bacteria. Since a neutrophil is too small to engulf an entire biofilm, it must be able to detach and engulf a few bacteria at a time if it is to use phagocytosis to clear the infection. We recently found a negative correlation between the target elasticity and phagocytic success. That earlier work used time-consuming, manual analysis of micrographs of neutrophils and fluorescent beads. Here, we introduce and validate flow cytometry as a fast and high-throughput technique that increases the number of neutrophils analyzed per experiment by two orders of magnitude, while also reducing the time required to do so from hours to minutes. We also introduce the use of polyacrylamide gels in our assay for engulfment success. The tunability of polyacrylamide gels expands the mechanical parameter space we can study, and we find that high toughness and yield strain, even with low elasticity, also impact the phagocytic success as well as the timescale thereof. For stiff gels with low-yield strain, and consequent low toughness, phagocytic success is nearly four times greater when neutrophils are incubated with gels for 6 h than after only 1 h of incubation. In contrast, for soft gels with high-yield strain and consequent high toughness, successful engulfment is much less time-sensitive, increasing by less than a factor of two from 1 to 6 h incubation.

摘要

吞噬性免疫细胞可以通过吞噬作用清除体内的病原体。细菌生物膜是由细菌聚集形成的群落,这些细菌被包裹在一种基质中,这种基质赋予了生物膜粘弹性力学特性,而自由游动的细菌并不具备这种特性。由于中性粒细胞太小,无法吞噬整个生物膜,因此如果要通过吞噬作用清除感染,它必须能够一次分离并吞噬少量细菌。我们最近发现目标弹性与吞噬成功率之间存在负相关。早期的研究使用了耗时的、对中性粒细胞和荧光珠显微照片的手动分析。在这里,我们引入并验证了流式细胞术,这是一种快速且高通量的技术,它将每个实验中分析的中性粒细胞数量增加了两个数量级,同时将所需时间从数小时减少到数分钟。我们还在吞噬成功率测定中引入了聚丙烯酰胺凝胶的使用。聚丙烯酰胺凝胶的可调性扩展了我们可以研究的力学参数空间,并且我们发现,即使弹性较低,但高韧性和屈服应变也会影响吞噬成功率及其时间尺度。对于屈服应变低且韧性随之较低的硬凝胶,与凝胶孵育6小时的中性粒细胞的吞噬成功率比仅孵育1小时的情况高出近四倍。相比之下,对于屈服应变高且韧性随之较高的软凝胶,成功吞噬对时间的敏感性要低得多,从孵育1小时到6小时,吞噬成功率增加不到两倍。

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