Tissue geometry spatiotemporally drives bacterial infections
Tissue geometry spatiotemporally drives bacterial infectionsTissue-geometry-regulated cellular traction forces trigger the activation of Piezo1 and its co-localization with bacteria to facilitate the formation of specific bacterial invasion patterns to promote infection.Tissue-geometry-regulated cellular traction forces trigger the activation of Piezo1 and its co-localization with bacteria to facilitate the formation of specific bacterial invasion patterns to promote infection.Yiming Han, Xiaoye Liu, Shaoqi Qu, Xiaocen Duan, Yunqing Xiang, Nan Jiang, Shuyu Yang, Xu Fang, Liang Xu, Hui Wen, Yue Yu, Shuqiang Huang, Jianyong Huang, Kui Zhuhttps://www.cell.com/cell/fulltext/S0092-8674(25)00394-0?rss=yeshttp://www.cell.com/cell/inpress.rssCellCell RSS feed.Wireless News CampaignApril 22, 2025
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