CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Advances in three-dimensional hydrogel networks for cancer immunotherapy.
Advances in three-dimensional hydrogel networks for cancer immunotherapy.
分数与星级只用于站内排序 —— 不代表疗效、安全性或个人适用性。
癌症免疫疗法,包括嵌合抗原受体(CAR)T 细胞疗法和免疫检查点阻断(ICB),已革新肿瘤治疗。然而,患者缓解率不理想以及免疫相关不良事件仍是重要临床挑战。免疫抑制性肿瘤微环境(TME)是影响免疫疗效的关键因素,可阻碍免疫细胞浸润及其功能。三维(3D)水凝胶网络可针对并响应 TME 的独特理化特性,如异常酸性、缺氧、活性氧(ROS)水平升高、血管结构异常及细胞外基质(ECM)致密,从而为调节 TME 的免疫抑制特征提供有前景的方法。本综述总结水凝胶癌症免疫治疗的最新进展,为优化靶向免疫治疗策略、增强抗肿瘤免疫应答提供见解。综述介绍了调节肿瘤这些特征的水凝胶免疫治疗策略,旨在提高多种免疫疗法的疗效;首先概述水凝胶辅助免疫治疗的机会,随后说明水凝胶在癌症免疫治疗中的优势,包括免疫细胞疗法、联合治疗、靶向治疗及基于水凝胶基质的疫苗。作者讨论了水凝胶平台如何开辟以往难以实现的免疫治疗途径,并展望这一快速发展领域的未来方向。
Cancer immunotherapies, including chimeric antigen receptor (CAR) T-cell and immune checkpoint blockade (ICB) therapy, have revolutionized oncological treatment.
However, suboptimal patient response rates and immune-related adverse events continue to pose significant clinical challenges. The immunosuppressive tumor microenvironment (TME) is a critical factor influencing immunotherapy efficacy and it can impede immune cell infiltration and functionality. Three-dimensional (3D) hydrogel networks offer a promising approach to modulating the immunosuppressive characteristics of the TME by targeting and responding to its distinct physicochemical properties, such as aberrant acidity, hypoxia, elevated reactive oxygen species (ROS) levels, irregular vasculature, and a dense extracellular matrix (ECM).
This review summarizes recent advances in hydrogel-based cancer immunotherapy, providing insights into refining targeted immunotherapeutic strategies to enhance anti-tumor immune responses. It explores hydrogel-based immunotherapy strategies designed to modulate these characteristics within tumors, aiming to improve the efficacy of diverse immunotherapeutic approaches.
It begins by outlining the opportunities associated with hydrogel-facilitated immunotherapy. Subsequent sections describe the advantageous properties of hydrogels for cancer immunotherapy, including immune cell-based therapy, combinatorial approaches, targeted therapy, and vaccines using hydrogel matrices.
We discuss how hydrogel platforms unlock previously unattainable avenues for immunotherapy.
Finally, we discuss future outlooks and research directions in this rapidly evolving field.
MEMBER ACCOUNT
登录成功会直接打开下一页。