RNF43 p.G659fs 通过 PI3K/AKT/mTOR 信号通路和 HLA-E 上调导致 MSI-high 结直肠癌中 NK 细胞功能障碍
RNF43 p.G659fs leads to natural killer cell dysfunction in MSI-high colorectal cancer through PI3K/AKT/mTOR signaling and HLA-E up-regulation.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Modulation of Human Immune Cells by Propyl-Propane Thiosulfonate (PTSO) Inhibits Colorectal Tumor Progression in a Humanized Mouse Model.
Modulation of Human Immune Cells by Propyl-Propane Thiosulfonate (PTSO) Inhibits Colorectal Tumor Progression in a Humanized Mouse Model.
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人外周血单个核细胞(hPBMC)经PTSO(25 μM,48小时)处理后,采用流式细胞术进行表征。随后将这些细胞(1×10^6)注射至NOD scid gamma(NSG)免疫缺陷小鼠,并同时通过皮下注射富集癌症干细胞(CSC)的HCT116结肠球体(每只小鼠60,000个细胞)诱导肿瘤。
PTSO减少MDSC群体,尤其显著降低单核细胞型MDSC(M-MDSC:对照组7.27±0.53%,PTSO组4.70±2.39%;P=.0458)和多形核MDSC(PMN-MDSC:对照组5.28±0.99%,PTSO组3.41±1.58%;P=.0385)。同时,PTSO增加T细胞亚群,尤其是产生干扰素γ(IFNG)的细胞毒性CD8+ T细胞(对照组9.52±2.06%,PTSO组15.04±5.01%;P=.0685)。在人源化肿瘤异种移植小鼠中,给予PTSO预处理的hPBMC可显著缩小肿瘤(对照组1.43±0.82 cm³,PTSO组0.44±0.35 cm³;P=.0068),并伴随CD4+ T淋巴细胞和NK细胞浸润增加、免疫抑制基因表达下调,最终降低癌细胞增殖和侵袭性。
PTSO对免疫细胞群具有双重作用,即减少免疫抑制性髓系细胞并增强效应T淋巴细胞和NK细胞应答,进而产生抗肿瘤作用。这提示该生物活性化合物有望作为CRC免疫治疗辅助剂,也为未来在其他模型中联合免疫治疗和PTSO、优化剂量并提高转化潜力提供研究方向。
Background/Objectives : Colorectal cancer (CRC) remains a major global health challenge and current therapies are not always effective.
In addition, certain immune cell populations, such as myeloid-derived suppressor cells (MDSCs), pose a significant barrier to immune-based treatments. Some phytochemicals, particularly compounds derived from Allium spp. like Propyl-Propane Thiosulfonate (PTSO), have shown strong immunomodulatory potential in digestive disorders.
This study aims to investigate the capacity of PTSO to modulate immune responses and affect tumor progression in CRC models, in vitro and in vivo, with a focus on the immune cell populations that comprise the tumor microenvironment. Methods : Human peripheral blood mononuclear cells (hPBMCs) were incubated with PTSO (25 M for 48 h) and characterized by flow cytometry. These cells (1 10 6 ) were then injected into NOD scid gamma (NSG) immunodeficient mice, which were simultaneously induced to develop a subcutaneous tumor by injection of HCT116 enriched cancer stem cells (CSCs) colonospheres (60,000 cells/mouse). Results : PTSO reduced MDSC populations, specifically, it significantly reduced monocytic (M-MDSCs, Control: 7. 27 0. 53% vs. PTSO: 4. 70 2. 39%; p = 0. 0458) and polymorphonuclear (PMN-MDSCs, Control: 5. 28 0. 99% vs. PTSO: 3. 41 1. 58%; p = 0. 0385) MDSCs. In parallel, PTSO increased T cell subpopulations, particularly interferon gamma (IFNG)-producing cytotoxic CD8 + T cells (Control: 9.
52 2. 06% vs. PTSO: 15. 04 5. 01%; p = 0. 0685). In the humanized tumor xenograft mouse, the administration of PTSO-pretreated hPBMCs led to a significant reduction in tumor size (Control: 1. 43 0. 82 cm 3 vs. PTSO: 0. 44 0. 35 cm 3 ; p = 0. 0068), accompanied by increased infiltration of CD4 + T lymphocytes and Natural Killer (NK) cells and downregulation of immunosuppressive genes. These effects resulted in a reduction in cancer cell proliferation and invasiveness.
Conclusions : The dual effect of PTSO on immune cell populations, reducing immunosuppressive myeloid cells and enhancing effector T lymphocyte and NK cell responses, resulted in an anti-tumor effect, highlighting this bioactive compound as a promising adjuvant in CRC immunotherapy and opening avenues for future research combining immunotherapy with PTSO in alternative models to optimize dosing and enhance translational potential.
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