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通过多价CXCR4拮抗纳米渗透剂逆转PAI-1诱导的实体瘤纤维化免疫排斥

Reversing the PAI-1-induced fibrotic immune exclusion of solid tumor by multivalent CXCR4 antagonistic nano-permeator.

作者信息

Dong Jingwen, Zhu Chenfei, Huang Ying, Li Quanhao, Li Jing, Wang Zheng, Wang Yixin, Zhou Zhanwei, Sun Minjie

机构信息

NMPA Key Laboratory for Research and Evaluation of Pharmaceutical Preparations and Excipients, State Key Laboratory of Natural Medicines, Department of Pharmaceutics, China Pharmaceutical University, Nanjing 210009, China.

出版信息

Acta Pharm Sin B. 2023 Jul;13(7):3106-3120. doi: 10.1016/j.apsb.2022.12.012. Epub 2022 Dec 21.

Abstract

Fibrosis is one of the key factors that lead to the immune exclusion of solid tumors. Although degradation of fiber is a promising strategy, its application was still bottlenecked by the side effects of causing metastasis, resulting in the failure of immunotherapy. Here, we developed an antimetastatic polymer (HPA) for the delivery of chemo-drug and antifibrotic siPAI-1 to form the nano-permeator. Nano-permeator shrank after protonation and deeply penetrated into the tumor core to down-regulate the expression of PAI-1 for antifibrosis, and further promoted the sustained infiltration and activation of T cells for killing tumor cells. Moreover, metastasis after fiber elimination was prevented by multivalent CXCR4 antagonistic HPA to reduce the attraction of CXCL12 secreted by distant organs. The administration of stroma-alleviated immunotherapy increased the infiltration of CD8 T cells to 52.5% in tumor tissues, inhibiting nearly 90% metastasis by HPA in distant organs. The nano-permeator reveals the mechanism and correlation between antifibrosis and antimetastasis and was believed to be the optimizing immunotherapy for solid fibrotic tumors.

摘要

纤维化是导致实体瘤免疫排斥的关键因素之一。尽管纤维降解是一种很有前景的策略,但其应用仍受到导致转移的副作用的限制,从而导致免疫治疗失败。在此,我们开发了一种抗转移聚合物(HPA),用于递送化疗药物和抗纤维化的siPAI-1,以形成纳米渗透剂。纳米渗透剂在质子化后收缩,并深入渗透到肿瘤核心,下调PAI-1的表达以实现抗纤维化,并进一步促进T细胞的持续浸润和激活以杀死肿瘤细胞。此外,多价CXCR4拮抗剂HPA可防止纤维消除后的转移,以减少远处器官分泌的CXCL12的吸引力。基质缓解免疫疗法的给药使肿瘤组织中CD8 T细胞的浸润增加到52.5%,抑制了HPA在远处器官中近90%的转移。这种纳米渗透剂揭示了抗纤维化和抗转移之间的机制和相关性,被认为是实体纤维化肿瘤的优化免疫疗法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5b2f/10372828/16fa04654463/ga1.jpg

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