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用于新兴癌症免疫疗法的免疫抑制性腺苷靶向生物材料。

Immunosuppressive adenosine-targeted biomaterials for emerging cancer immunotherapy.

机构信息

Department of Thoracic Surgery, China-Japan Union Hospital of Jilin University, Changchun, China.

Key Laboratory of Polymer Ecomaterials, Changchun Institute of Applied Chemistry, Chinese Academy of Sciences, Changchun, China.

出版信息

Front Immunol. 2022 Oct 25;13:1012927. doi: 10.3389/fimmu.2022.1012927. eCollection 2022.

Abstract

Immunotherapy has paved the way for the future of cancer therapy, but there are still significant challenges to be overcome, such as the occurrence of immune escape or suppression. Adenosine is essential in modulating the immune responses of immune cells and maintaining immune tolerance. Emerging adenosine pathway inhibitors are considered a breakthrough in cancer immunotherapy, with emphasis first being placed on the top-down blockade of adenosine signaling axis, followed by combination therapy. However, these therapeutic strategies rely on adenosine inhibitors, mainly small molecules or antibody proteins, which are limited by a single route of administration and off-target toxicity. Therefore, synergistic nanomedicine with accurate delivery targeting deeper tumors is focused on in preclinical studies. This review discusses how adenosine reshapes immunosuppressive microenvironments through its effects on immune cells, including lymphocytes and myeloid cells. Additionally, it will be the first discussion of a comprehensive strategy of biomaterials in modulating the adenosine signaling pathway, including inhibition of adenosine production, inhibition of adenosine binding to immune cells, and depletion of adenosine in the microenvironments. Furthermore, biomaterials integrating multiple therapeutic modalities with adenosine blocking are also discussed as a promising strategy for promoting cancer immunotherapy.

摘要

免疫疗法为癌症治疗的未来铺平了道路,但仍有许多重大挑战需要克服,如免疫逃逸或抑制的发生。腺苷在调节免疫细胞的免疫反应和维持免疫耐受方面至关重要。新兴的腺苷途径抑制剂被认为是癌症免疫治疗的一个突破,首先强调的是对腺苷信号轴的自上而下阻断,然后是联合治疗。然而,这些治疗策略依赖于腺苷抑制剂,主要是小分子或抗体蛋白,它们受到单一给药途径和脱靶毒性的限制。因此,临床前研究集中在具有精确递送到更深肿瘤的协同纳米医学上。本综述讨论了腺苷如何通过对淋巴细胞和髓样细胞等免疫细胞的作用重塑免疫抑制微环境。此外,这将是首次全面讨论生物材料在调节腺苷信号通路中的策略,包括抑制腺苷的产生、抑制腺苷与免疫细胞的结合以及耗竭微环境中的腺苷。此外,还讨论了整合多种治疗模式与腺苷阻断的生物材料作为促进癌症免疫治疗的一种有前途的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/40d8/9641176/22edb73c15aa/fimmu-13-1012927-g001.jpg

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