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非共价结合的、能延长肿瘤保留时间的细胞因子,可安全地引发有效的抗肿瘤免疫。

Noncovalently particle-anchored cytokines with prolonged tumor retention safely elicit potent antitumor immunity.

机构信息

Department of Chemical Engineering, Virginia Polytechnic Institute and State University, 635 Prices Fork Road, Blacksburg, VA, 24061, USA.

Department of Materials Science and Engineering, Virginia Polytechnic Institute and State University, 445 Old Turner Street, Blacksburg, VA, 24061, USA.

出版信息

Sci Adv. 2024 Apr 19;10(16):eadk7695. doi: 10.1126/sciadv.adk7695.

Abstract

Preclinical studies have shown that immunostimulatory cytokines elicit antitumor immune responses but their clinical use is limited by severe immune-related adverse events upon systemic administration. Here, we report a facile and versatile strategy for noncovalently anchoring potent Fc-fused cytokine molecules to the surface of size-discrete particles decorated with Fc-binding peptide for local administration. Following intratumoral injection, particle-anchored Fc cytokines exhibit size-dependent intratumoral retention. The 1-micrometer particle prolongs intratumoral retention of Fc cytokine for over a week and has minimal systemic exposure, thereby eliciting antitumor immunity while eliminating systemic toxicity caused by circulating cytokines. In addition, the combination of these particle-anchored cytokines with immune checkpoint blockade antibodies safely promotes tumor regression in various syngeneic tumor models and genetically engineered murine tumor models and elicits systemic antitumor immunity against tumor rechallenge. Our formulation strategy renders a safe and tumor-agnostic approach that uncouples cytokines' immunostimulatory properties from their systemic toxicities for potential clinical application.

摘要

临床前研究表明,免疫刺激细胞因子能引发抗肿瘤免疫反应,但由于全身给药会引发严重的免疫相关不良反应,其临床应用受到限制。在这里,我们报告了一种简便通用的策略,用于将有效 Fc 融合细胞因子非共价锚定到表面带有 Fc 结合肽的离散颗粒上,用于局部给药。瘤内注射后,颗粒锚定的 Fc 细胞因子表现出与尺寸相关的瘤内保留。1 微米的颗粒使 Fc 细胞因子在瘤内的保留时间延长超过一周,且全身暴露最小,从而引发抗肿瘤免疫,同时消除循环细胞因子引起的全身毒性。此外,这些颗粒锚定的细胞因子与免疫检查点阻断抗体联合使用可安全促进各种同源肿瘤模型和基因工程小鼠肿瘤模型中的肿瘤消退,并引发针对肿瘤再挑战的全身抗肿瘤免疫。我们的配方策略提供了一种安全且与肿瘤无关的方法,将细胞因子的免疫刺激特性与其全身毒性分离,具有潜在的临床应用前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4ea5/11029804/8f28c30a3190/sciadv.adk7695-f1.jpg

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