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工程化外膜囊泡作为纳米级免疫细胞激活剂增强实体瘤免疫治疗。

Engineered Outer Membrane Vesicles as Nanosized Immune Cell Engagers for Enhanced Solid Tumor Immunotherapy.

机构信息

Collaborative Innovation Center of Yangtze River Delta Region Green Pharmaceuticals, College of Pharmaceutical Sciences, Zhejiang University of Technology, Hangzhou 310014, P. R. China.

State Key Laboratory of Bioreactor Engineering, East China University of Science and Technology, Shanghai 200237, P. R. China.

出版信息

ACS Nano. 2024 Nov 5;18(44):30332-30344. doi: 10.1021/acsnano.4c07364. Epub 2024 Oct 25.

Abstract

Although tumor immunotherapy has achieved significant success in recent years, tackling solid tumors remains a formidable challenge. Here, we present an approach that utilizes outer membrane vesicles (OMVs) from bacterial cells as scaffolds to engage immune cells in solid tumor immunotherapy. Two types of nanobodies targeting CD47/SIRPα and PD-1/PD-L1 pathways were simultaneously conjugated onto the surfaces of the OMVs in divalent and trivalent forms using orthogonal SpyCatcher-SpyTag and SnoopCatcher-SnoopTag chemistry. This resulted in the generation of an OMV-based nanosized immune cell engager (OMV-NICE) with dual-targeting abilities. assays confirmed the retention of the function of the two nanobodies on the OMV-NICE, as evidenced by the synergistically enhanced macrophage phagocytosis and T cell cytotoxicity against tumor cells. studies using a B16-F10 melanoma mouse model also revealed the superior antitumor activity of OMV-NICE compared to those of unconjugated nanobodies and OMVs alone. Subsequent mechanistic investigations further supported the enhanced recruitment of macrophages and T cells to the tumor region by OMV-NICE. Overall, this work expands the current repertoire of immune cell engagers, and the developed OMV-NICE platform holds great promise for broad applications, particularly in solid tumor immunotherapy.

摘要

尽管肿瘤免疫疗法近年来取得了显著的成功,但攻克实体瘤仍然是一个巨大的挑战。在这里,我们提出了一种利用细菌细胞外膜囊泡(OMVs)作为支架的方法,使免疫细胞参与实体瘤免疫治疗。两种针对 CD47/SIRPα 和 PD-1/PD-L1 通路的纳米抗体分别以二价和三价形式通过正交 SpyCatcher-SpyTag 和 SnoopCatcher-SnoopTag 化学被同时连接到 OMVs 的表面。这导致了具有双重靶向能力的基于 OMV 的纳米级免疫细胞衔接器(OMV-NICE)的产生。功能测定证实了两种纳米抗体在 OMV-NICE 上的功能保留,这表现为巨噬细胞吞噬作用和 T 细胞对肿瘤细胞的细胞毒性协同增强。使用 B16-F10 黑色素瘤小鼠模型的研究也揭示了 OMV-NICE 与未缀合的纳米抗体和 OMV 相比具有优越的抗肿瘤活性。随后的机制研究进一步支持了 OMV-NICE 将巨噬细胞和 T 细胞募集到肿瘤区域的增强作用。总的来说,这项工作扩展了当前的免疫细胞衔接器库,所开发的 OMV-NICE 平台具有广泛应用的巨大潜力,特别是在实体瘤免疫治疗中。

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