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靶向实体瘤的微环境。

Targeting the microenvironment in solid tumors.

机构信息

Division of Early Drug Development for Innovative Therapies, European Institute of Oncology, via Ripamonti 435, 20141 Milan, Italy.

Division of Early Drug Development for Innovative Therapies, European Institute of Oncology, via Ripamonti 435, 20141 Milan, Italy.

出版信息

Cancer Treat Rev. 2018 Apr;65:22-32. doi: 10.1016/j.ctrv.2018.02.004. Epub 2018 Feb 22.

Abstract

Tumorigenesis is a complex and dynamic process involving different cellular and non-cellular elements composed of tumor microenvironment (TME). The interaction of TME with cancer cells is responsible for tumor development, progression and drug resistance. TME consists of non malignant cells of the tumor such as cancer associated fibroblasts (CAFs), endothelial cells and pericytes composing tumor vasculature, immune and inflammatory cells, bone marrow derived cells, and the extracellular matrix (ECM) establishing a complex cross-talk with tumor. These interactions contribute towards proliferation and invasion of the tumor by producing growth factors, chemokines and matrix-degrading enzymes. ECM is a complex system containing macromolecules with distinctive physical, biochemical and biomechanical properties. During tumorigenesis this system is deregulated favoring the generation of tumorigenic microenvironment enhancing tumor-associated angiogenesis and inflammation. An important step of anticancer treatment is the identification of the biological alterations present in TME in order to target these key molecular players. Multitargeted approaches, providing a simultaneous inhibition of TME components, may offer a more efficient way to treat cancer. In this manuscript we overview the function of each components of TME and the treatments targeting the key players.

摘要

肿瘤发生是一个复杂而动态的过程,涉及由肿瘤微环境(TME)组成的不同细胞和非细胞成分。TME 与癌细胞的相互作用负责肿瘤的发展、进展和耐药性。TME 由肿瘤的非恶性细胞组成,如癌症相关成纤维细胞(CAFs)、内皮细胞和周细胞组成肿瘤血管,免疫和炎症细胞、骨髓来源细胞和细胞外基质(ECM)与肿瘤建立复杂的交叉对话。这些相互作用通过产生生长因子、趋化因子和基质降解酶来促进肿瘤的增殖和侵袭。ECM 是一个含有具有独特物理、生化和生物力学特性的大分子的复杂系统。在肿瘤发生过程中,这个系统被失调,有利于生成肿瘤发生的微环境,增强肿瘤相关的血管生成和炎症。癌症治疗的一个重要步骤是识别 TME 中存在的生物学改变,以便针对这些关键分子靶点进行治疗。多靶点方法同时抑制 TME 成分,可能提供更有效的治疗癌症的方法。在本文中,我们概述了 TME 的每个成分的功能以及针对关键靶点的治疗方法。

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