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工程化微颗粒调节精氨酸代谢以使肿瘤相关巨噬细胞再极化用于治疗难治性结直肠癌。

Engineered microparticles modulate arginine metabolism to repolarize tumor-associated macrophages for refractory colorectal cancer treatment.

机构信息

Gastrointestinal Surgery, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, 430022, China.

Center for Liver Transplantation, Union Hospital, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, 430022, China.

出版信息

J Transl Med. 2024 Oct 7;22(1):908. doi: 10.1186/s12967-024-05652-3.

Abstract

BACKGROUND

Arginase is abundantly expressed in colorectal cancer and disrupts arginine metabolism, promoting the formation of an immunosuppressive tumor microenvironment. This significant factor contributes to the insensitivity of colorectal cancer to immunotherapy. Tumor-associated macrophages (TAMs) are major immune cells in this environment, and aberrant arginine metabolism in tumor tissues induces TAM polarization toward M2-like macrophages. The natural compound piceatannol 3'-O-glucoside inhibits arginase activity and activates nitric oxide synthase, thereby reducing M2-like macrophages while promoting M1-like macrophage polarization.

METHODS

The natural compounds piceatannol 3'-O-glucoside and indocyanine green were encapsulated within microparticles derived from tumor cells, termed PG/ICG@MPs. The enhanced cancer therapeutic effect of PG/ICG@MP was assessed both in vitro and in vivo.

RESULTS

PG/ICG@MP precisely targets the tumor site, with piceatannol 3'-O-glucoside concurrently inhibiting arginase activity and activating nitric oxide synthase. This process promotes increased endogenous nitric oxide production through arginine metabolism. The combined actions of nitric oxide and piceatannol 3'-O-glucoside facilitate the repolarization of tumor-associated macrophages toward the M1 phenotype. Furthermore, the increase in endogenous nitric oxide levels, in conjunction with the photodynamic effect induced by indocyanine green, increases the quantity of reactive oxygen species. This dual effect not only enhances tumor immunity but also exerts remarkable inhibitory effects on tumors.

CONCLUSION

Our research results demonstrate the excellent tumor-targeting effect of PG/ICG@MPs. By modulating arginine metabolism to improve the tumor immune microenvironment, we provide an effective approach with clinical translational significance for combined cancer therapy.

摘要

背景

精氨酸酶在结直肠癌中大量表达,破坏精氨酸代谢,促进免疫抑制性肿瘤微环境的形成。这一重要因素导致结直肠癌对免疫治疗不敏感。肿瘤相关巨噬细胞(TAMs)是该环境中的主要免疫细胞,肿瘤组织中异常的精氨酸代谢诱导 TAM 向 M2 样巨噬细胞极化。天然化合物白藜芦醇 3'-O-葡萄糖苷抑制精氨酸酶活性并激活一氧化氮合酶,从而减少 M2 样巨噬细胞,同时促进 M1 样巨噬细胞极化。

方法

天然化合物白藜芦醇 3'-O-葡萄糖苷和吲哚菁绿被包裹在肿瘤细胞衍生的微粒中,称为 PG/ICG@MPs。在体外和体内评估了 PG/ICG@MP 的增强癌症治疗效果。

结果

PG/ICG@MP 精确靶向肿瘤部位,白藜芦醇 3'-O-葡萄糖苷同时抑制精氨酸酶活性并激活一氧化氮合酶。这一过程通过精氨酸代谢促进内源性一氧化氮的产生增加。一氧化氮和白藜芦醇 3'-O-葡萄糖苷的联合作用促进肿瘤相关巨噬细胞向 M1 表型的重极化。此外,内源性一氧化氮水平的增加,结合吲哚菁绿诱导的光动力效应,增加活性氧的数量。这种双重作用不仅增强了肿瘤免疫,而且对肿瘤具有显著的抑制作用。

结论

我们的研究结果表明 PG/ICG@MPs 具有优异的肿瘤靶向效果。通过调节精氨酸代谢来改善肿瘤免疫微环境,我们提供了一种具有临床转化意义的联合癌症治疗的有效方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1366/11457421/32a9c719dddc/12967_2024_5652_Sch1_HTML.jpg

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