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首页> 外文期刊>ACS nano >Differential Depth Sensing Reduces Cancer Cell Proliferation via Rho-Rac-Regulated Invadopodia
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Differential Depth Sensing Reduces Cancer Cell Proliferation via Rho-Rac-Regulated Invadopodia

机译:差异深度感测通过Rho-Rac调节的invidopodia降低癌细胞增殖

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摘要

Bone, which is composed of a porous matrix, is one of the principal secondary locations for cancer. However, little is known about the effect of this porous microenvironment in regulating cancer cell proliferation. Here, we examine how the depth of the pores can transduce a mechanical signal and reduce the proliferation of noncancer breast epithelial cells (MCF-10A) and malignant breast cancer cells (MDA-MB-231 and MCF-7) using micrometer-scale topographic features. Interestingly, cells extend actin-rich protrusions, such as invadopodia, to sense the depth of the matrix pore and activate actomyosin contractility to decrease MCF-10A proliferation. However, in MDA-MB-231, depth sensing inactivates Rho-Rac-regulated actomyosin contractility and phospho-ERK signaling. Inhibiting contractility on this porous matrix using blebbistatin further reduces MDA-MB-231 proliferation. Our findings support the notion of mechanically induced dormancy through depth sensing, where invadopodia-mediated depth sensing can inhibit the proliferation of noncancer and malignant breast cancer cells through differential regulation of actomyosin contractility.
机译:由多孔基质组成的骨是癌症的主要次要位置之一。然而,关于这种多孔微环境在调节癌细胞增殖中的影响几乎熟知。在这里,我们研究孔的深度如何使用微米级地形来突破机械信号并降低非癌剂乳腺上皮细胞(MCF-10A)和恶性乳腺癌细胞(MDA-MB-231和MCF-7)的增殖特征。有趣的是,细胞延伸富含诱发蛋白的突起,例如invidopodia,以感测基质孔的深度并激活肌动酶收缩性以降低MCF-10A增殖。然而,在MDA-MB-231中,深度感测灭活RHO-RAC调节的肌动酶收缩性和磷酸-ERK信号传导。使用Blebbistatin抑制在该多孔基质上的收缩性进一步降低了MDA-MB-231增殖。我们的研究结果支持通过深度传感机械诱导的休眠概念,其中invidopodia介导的深度感测通过差异调节Actomyosin收缩性的差异调节抑制非癌症和恶性乳腺癌细胞的增殖。

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