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肿瘤相关突起波动作为癌症侵袭性的特征。

Tumor-Associated Protrusion Fluctuations as a Signature of Cancer Invasiveness.

机构信息

3B's Research Group, I3Bs - Research Institute on Biomaterials, Biodegradables and Biomimetics, University of Minho, Headquarters of the European Institute of Excellence on Tissue Engineering and Regenerative Medicine, Barco, Guimarães, 4805-017, Portugal.

ICVS/3B's, PT Government Associate Laboratory, Braga, Guimarães, 4805-017, Portugal.

出版信息

Adv Biol (Weinh). 2021 Sep;5(9):e2101019. doi: 10.1002/adbi.202101019. Epub 2021 Jul 3.

Abstract

The generation of invasive fluctuating protrusions is a distinctive feature of tumor dissemination. During the invasion, individual cancer cells modulate the morphodynamics of protrusions to optimize their migration efficiency. However, it remains unclear how protrusion fluctuations govern the invasion of more complex multi-cellular structures, such as tumors, and their correlation with the tumor metastatic potential. Herein, a reductionist approach based on 3D tumor cell micro-spheroids with different invasion capabilities is used as a model to decipher the role of tumor-associated fluctuating protrusions in cancer progression. To quantify fluctuations, a set of key biophysical parameters that precisely correlate with the invasive potential of tumors is defined. It is shown that different pharmacological drugs and cytokines are capable of modulating protrusion activity, significantly altering protrusion fluctuations, and tumor invasiveness. This correlation is used to define a novel quantitative invasion index encoding the key biophysical parameters of fluctuations and the relative levels of cell-cell/matrix interactions, which is capable of assessing the tumor's metastatic capability solely based on its magnitude. Overall, this study provides new insights into how protrusion fluctuations regulate tumor cell invasion, suggesting that they may be employed as a novel early indicator, or biophysical signature, of the metastatic potential of tumors.

摘要

侵入性波动突起的产生是肿瘤扩散的一个显著特征。在侵袭过程中,单个癌细胞调节突起的形态动力学,以优化其迁移效率。然而,目前尚不清楚突起波动如何控制更复杂的多细胞结构(如肿瘤)的侵袭,以及它们与肿瘤转移潜力的相关性。在此,基于具有不同侵袭能力的 3D 肿瘤细胞微球体的简化方法被用作模型,以破译与肿瘤相关的波动突起在癌症进展中的作用。为了量化波动,定义了一组与肿瘤侵袭潜力精确相关的关键生物物理参数。结果表明,不同的药理药物和细胞因子能够调节突起活性,显著改变突起波动和肿瘤侵袭性。这种相关性被用来定义一种新的定量侵袭指数,它编码波动的关键生物物理参数和细胞-细胞/基质相互作用的相对水平,可以仅根据其大小评估肿瘤的转移能力。总的来说,这项研究提供了关于突起波动如何调节肿瘤细胞侵袭的新见解,表明它们可以作为肿瘤转移潜力的新的早期指标或生物物理特征。

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