损伤诱导集体细胞迁移的单细胞基因表达分析。

IF 1.4
Reza Riahi, Min Long, Yongliang Yang, Zachary Dean, Donna D Zhang, Marvin J Slepian, Pak Kin Wong
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引用次数: 26

摘要

集体细胞行为对机械损伤的反应是各种再生和病理过程的核心。使用双链锁定核酸探针实时监测细胞内基因表达,我们检测了上皮细胞在损伤诱导的集体迁移过程中的时空反应,并与最小损伤作为对照的阻断剂试验进行了比较。我们发现,距离伤口边缘约150 μm的细胞在机械损伤反应中表现出梯度,根据损伤过程表达不同的基因。虽然释放接触抑制足以触发迁移行为,但细胞损伤还会以时空方式诱导活性氧、Nrf2蛋白和应激反应基因,包括热休克蛋白70和血红素加氧酶-1。此外,我们发现Nrf2在损伤诱导的上皮-间质转化中具有抑制作用,这表明在损伤诱导的反应中存在潜在的自我调节机制。总之,我们的单细胞基因表达分析揭示了模块化细胞对机械损伤的反应,操纵这些反应可能为未来组织修复和预防肿瘤侵袭提供新的策略。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Single cell gene expression analysis in injury-induced collective cell migration.

Single cell gene expression analysis in injury-induced collective cell migration.

Single cell gene expression analysis in injury-induced collective cell migration.

Collective cell behavior in response to mechanical injury is central to various regenerative and pathological processes. Using a double-stranded locked nucleic acid probe for monitoring real-time intracellular gene expression, we examined the spatiotemporal response of epithelial cells during injury-induced collective migration and compared to the blocker assay with minimal injury as control. We showed that cells ∼150 μm from the wound edge exhibit a gradient in response to mechanical injury, expressing different genes depending on the wounding process. While release of contact inhibition is sufficient to trigger the migratory behavior, cell injury additionally induces reactive oxygen species, Nrf2 protein, and stress response genes, including heat shock protein 70 and heme oxygenase-1, in a spatiotemporal manner. Furthermore, we show that Nrf2 has an inhibitory role in injury-induced epithelial-mesenchymal transition, suggesting a potential autoregulatory mechanism in injury-induced response. Taken together, our single-cell gene expression analyses reveal modular cell responses to mechanical injury, manipulation of which may afford novel strategies for tissue repair and prevention of tumor invasion in the future.

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