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Ginseng-derived nanoparticles reprogram macrophages to regulate arginase-1 release for ameliorating T cell exhaustion in tumor microenvironment

Authors :
Yan Lv
Mengyuan Li
Ling Weng
Haoying Huang
Yujie Mao
Danchen Aaron Yang
Qingyun Wei
Mengmeng Zhao
Qin Wei
Ke Rui
Xuan Han
Weiwei Fan
Xueting Cai
Peng Cao
Meng Cao
Source :
Journal of Experimental & Clinical Cancer Research, Vol 42, Iss 1, Pp 1-19 (2023)
Publication Year :
2023
Publisher :
BMC, 2023.

Abstract

Abstract Background Lines of evidence indicated that, immune checkpoints (ICs) inhibitors enhanced T cell immune response to exert anti-tumor effects. However, T cell exhaustion has been so far a major obstacle to antitumor immunotherapy in colorectal cancer patients. Our previous studies showed that ginseng-derived nanoparticles (GDNPs) inhibited the growth of various tumors by reprograming tumor-associated macrophages (TAMs) and downregulated the ICs expression on T cells in tumor microenvironment (TME), but the underlying effector mechanisms remained unclear. Methods The correlation between arginase-1 (ARG1) and T cells was computed based on the colorectal cancer patients in TCGA database. In vitro, we observed that GDNPs reprogrammed TAMs inhibited ARG1 release and ultimately ameliorated T cell exhaustion according to several techniques including WB, PCR, ELISA and flow cytometry. We also used an in vivo MC38 tumor-bearing model and administered GDNPs to assess their anti-tumor effects through multiple indices. The mechanism that GDNPs improved T cell exhaustion was further clarified using the bioinformatics tools and flow cytometry. Results GDNPs reprogramed TAMs via reducing ARG1 production. Moreover, normalized arginine metabolism ameliorated T cell exhaustion through mTOR-T-bet axis, resulting in reduced ICs expression and enhanced CD8+ T cells expansion. Conclusions By regulating the mTOR-T-bet axis, GDNPs reprogramed macrophages to regulate ARG1 release, which further ameliorated T cell exhaustion in TME. These findings provided new insights into comprehending the mechanisms underlying the mitigation of T cell exhaustion, which may facilitate the development of innovative therapeutic strategies in the field of cancer treatment.

Details

Language :
English
ISSN :
17569966
Volume :
42
Issue :
1
Database :
Directory of Open Access Journals
Journal :
Journal of Experimental & Clinical Cancer Research
Publication Type :
Academic Journal
Accession number :
edsdoj.bee7f4b20b4c46c1af6f2472aee35e09
Document Type :
article
Full Text :
https://doi.org/10.1186/s13046-023-02888-7