<p>After shedding from&#xa0;the&#xa0;primary&#xa0;lesion,&#xa0;disseminated&#xa0;cancer cells invade into&#xa0;tumor stroma&#xa0;and intravasate into&#xa0;the nearby&#xa0;vasculature. While most of circulating tumor cells become apoptotic due to&#xa0;the&#xa0;harsh microenvironment within&#xa0;the vasculature, a small&#xa0;subpopulation of them&#xa0;still&#xa0;survives&#xa0;and extravasates for the generation of&#xa0;secondary&#xa0;lesions&#xa0;in distant organs, which account for more than 90% of&#xa0;cancer-related&#xa0;death. During this metastatic journey, cancer cells&#xa0;encounter&#xa0;distinct mechanical stimuli,&#xa0;such as&#xa0;geometric&#xa0;confinement, hydraulic resistance,&#xa0;and fluid shear stress, which&#xa0;considerably affect&#xa0;the survival and malignant functions of these&#xa0;disseminated&#xa0;tumor cells and thus the metastatic&#xa0;inefficiency. This review summarizes&#xa0;the&#xa0;latest findings of how&#xa0;these&#xa0;mechanical&#xa0;cues&#xa0;modulate&#xa0;the fate of cancer cells from intravasation to extravasation, highlighting the importance of mechano-regulation during cancer metastasis.</p> Graphical Abstract <p></p>

错误:搜索内容不能为空,请输入英文关键词
错误:关键词超出字数限制,请精简
高级检索

Mechano-regulation of tumor metastasis: from intravasation to extravasation

  • Cunyu Zhang,
  • Zejin Liu,
  • Xueyi Li,
  • Silu Li,
  • Youhua Tan

摘要

After shedding from the primary lesion, disseminated cancer cells invade into tumor stroma and intravasate into the nearby vasculature. While most of circulating tumor cells become apoptotic due to the harsh microenvironment within the vasculature, a small subpopulation of them still survives and extravasates for the generation of secondary lesions in distant organs, which account for more than 90% of cancer-related death. During this metastatic journey, cancer cells encounter distinct mechanical stimuli, such as geometric confinement, hydraulic resistance, and fluid shear stress, which considerably affect the survival and malignant functions of these disseminated tumor cells and thus the metastatic inefficiency. This review summarizes the latest findings of how these mechanical cues modulate the fate of cancer cells from intravasation to extravasation, highlighting the importance of mechano-regulation during cancer metastasis.

Graphical Abstract