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肿瘤微环境的复杂性及其治疗意义简述。

Tumor microenvironment complexity and therapeutic implications at a glance.

机构信息

Drug Applied Research Center, Tabriz University of Medical Sciences, Tabriz, Iran.

Department of Medical Biotechnology, School of Advanced Medical Sciences, Tabriz University of Medical Sciences, Tabriz, Iran.

出版信息

Cell Commun Signal. 2020 Apr 7;18(1):59. doi: 10.1186/s12964-020-0530-4.

Abstract

The dynamic interactions of cancer cells with their microenvironment consisting of stromal cells (cellular part) and extracellular matrix (ECM) components (non-cellular) is essential to stimulate the heterogeneity of cancer cell, clonal evolution and to increase the multidrug resistance ending in cancer cell progression and metastasis. The reciprocal cell-cell/ECM interaction and tumor cell hijacking of non-malignant cells force stromal cells to lose their function and acquire new phenotypes that promote development and invasion of tumor cells. Understanding the underlying cellular and molecular mechanisms governing these interactions can be used as a novel strategy to indirectly disrupt cancer cell interplay and contribute to the development of efficient and safe therapeutic strategies to fight cancer. Furthermore, the tumor-derived circulating materials can also be used as cancer diagnostic tools to precisely predict and monitor the outcome of therapy. This review evaluates such potentials in various advanced cancer models, with a focus on 3D systems as well as lab-on-chip devices. Video abstract.

摘要

癌细胞与其微环境的动态相互作用,包括基质细胞(细胞部分)和细胞外基质(ECM)成分(非细胞),对于刺激癌细胞的异质性、克隆进化以及增加多药耐药性从而导致癌细胞的进展和转移至关重要。细胞-细胞/ECM 相互作用和肿瘤细胞劫持非恶性细胞会迫使基质细胞失去功能并获得新的表型,从而促进肿瘤细胞的发展和侵袭。了解这些相互作用所涉及的细胞和分子机制,可以作为一种间接破坏癌细胞相互作用的新策略,并有助于开发有效和安全的治疗策略来对抗癌症。此外,肿瘤衍生的循环物质也可用作癌症诊断工具,以精确预测和监测治疗效果。本综述评估了各种先进的癌症模型中的这些潜力,重点介绍了 3D 系统和芯片实验室设备。视频摘要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/104a/7140346/9844d9573a22/12964_2020_530_Fig1_HTML.jpg

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