Department of Otorhinolaryngology Head and Neck Surgery, The Second Xiangya Hospital, Central South University, Changsha, 410011, Hunan, China.
Key Laboratory of Artificial Organs and Computational Medicine in Zhejiang Province, Institute of Translational Medicine, Zhejiang Shuren University, Hangzhou, 310015, Zhejiang, China.
J Nanobiotechnology. 2024 Nov 27;22(1):737. doi: 10.1186/s12951-024-03005-2.
The tumor microenvironment (TME) is a complex system characterized by low oxygen, low pH, high pressure, and numerous growth factors and protein hydrolases that regulate a wide range of biological behaviors in the tumor and have a profound impact on cancer progression. Immunotherapy is an innovative approach to cancer treatment that activates the immune system, resulting in the spontaneous killing of tumor cells. However, the therapeutic efficacy of these clinically approved cancer immunotherapies (e.g., immune checkpoint blocker (ICB) therapies and chimeric antigen receptor (CAR) T-cell therapies) is far from satisfactory due to the presence of immunosuppressive TMEs created in part by tumor hypoxia, acidity, high levels of reactive oxygen species (ROS), and a dense extracellular matrix (ECM). With continuous advances in materials science and drug-delivery technologies, biomaterials hold considerable potential for targeting the TME. This article reviews the advances in biomaterial-based targeting of the TME to advance our current understanding on the role of biomaterials in enhancing tumor immunity. In addition, the strategies for remodeling the TME offer enticing advantages; however, the represent a double-edged sword. In the process of reshaping the TME, the risk of tumor growth, infiltration, and distant metastasis may increase.
肿瘤微环境(TME)是一个复杂的系统,其特征为低氧、低 pH 值、高压以及大量生长因子和蛋白水解酶,这些物质调节肿瘤中的广泛的生物学行为,并对癌症进展产生深远影响。免疫疗法是一种癌症治疗的创新方法,它能激活免疫系统,从而自发杀死肿瘤细胞。然而,由于肿瘤缺氧、酸度、高水平的活性氧(ROS)和密集的细胞外基质(ECM)等因素造成的免疫抑制性 TME 的存在,这些已批准的临床癌症免疫疗法(如免疫检查点抑制剂(ICB)疗法和嵌合抗原受体(CAR)T 细胞疗法)的治疗效果远不理想。随着材料科学和药物输送技术的不断进步,生物材料在靶向 TME 方面具有巨大的潜力。本文综述了基于生物材料的 TME 靶向治疗的进展,以增进我们对生物材料在增强肿瘤免疫方面作用的理解。此外,重塑 TME 的策略提供了诱人的优势,但这是一把双刃剑。在重塑 TME 的过程中,肿瘤生长、浸润和远处转移的风险可能会增加。