T细胞利用板足和丝足感知生物物理信号,优化腔内寻径。

IF 1.4
Kwang Hoon Song, Keon Woo Kwon, Jong-Cheol Choi, Jaehwang Jung, Yongkeun Park, Kahp-Yang Suh, Junsang Doh
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引用次数: 24

摘要

腔内爬行被认为对白细胞在血管中的外渗很重要,但指导白细胞爬行的生化/生物物理线索尚不清楚。在这里,我们提供的证据表明,T细胞分别利用板足和丝足感知腔内表面的地形和内皮细胞(ECs)的细胞核,以优化腔内爬行过程中的寻路。制备了排列良好的EC层或EC层复制品,其形貌与EC层相似,并平行或垂直于EC层排列方向施加气流。T细胞沿着EC层地形地形的山谷爬行,同时无论流动方向如何都避开EC的细胞核。药物抑制剂治疗表明,EC层的地形和细胞核的感知分别由板足和丝状足介导。板足或丝状足抑制的T细胞在外渗过程中爬行的距离明显长于正常T细胞,这表明感知生物物理线索对于优化外渗途径至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
T cells sense biophysical cues using lamellipodia and filopodia to optimize intraluminal path finding.

Intraluminal crawling is considered to be important for extravasation of leukocytes in blood vessels, but biochemical/biophysical cues guiding the crawling of leukocytes have not been clearly understood. Here we provide evidence that T cells sense the topography of luminal surfaces and the nuclei of endothelial cells (ECs) using lamellipodia and filopodia, respectively, to optimize path finding during intraluminal crawling. Well-aligned EC layers or replicas of EC layers, which exhibit topography similar to that of EC layers, were fabricated, and flow was applied either parallel or perpendicular to the orientation of EC alignment. T cells crawled along the valleys of the topographical landscapes of the EC layers, while avoiding nuclei of ECs regardless of flow direction. Pharmacological inhibitor treatments revealed that sensing of topography and nuclei of EC layers was mediated by lamellipodia and filopodia, respectively. Lamellipodia or filopodia-inhibited T cells crawled significantly longer distances for extravasation than did normal T cells, indicating that sensing biophysical cues are critical for optimizing routes for extravasation.

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