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:Immune modulation following α and β(-) radionuclide therapy targeting fibroblast activation protein-α in a preclinical tumor model.
Immune modulation following α and β(-) radionuclide therapy targeting fibroblast activation protein-α in a preclinical tumor model.
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靶向人纤维母细胞活化蛋白α(hFAP)的α和β⁻放射性核素正在癌症治疗中接受研究。既往研究对治疗结束24小时后的肿瘤微环境分析显示,治疗可诱导免疫活化。
本研究进一步分析治疗期间不同时间点的全身免疫反应,以阐明该疗法的免疫刺激作用;同时分析终末期肿瘤,了解潜在耐药机制。研究将结合hFAP的单域抗体4AH29分别标记¹³¹I或²²⁵Ac,制备[¹³¹I]I-GMIB-4AH29和[²²⁵Ac]Ac-DOTA-4AH29,并用于治疗携带皮下TC-1-hFAP肿瘤的C57BL/6小鼠。通过流式细胞术分析血液,并利用流式细胞术和RNA测序表征肿瘤。考虑到两种放射性药物性质和剂量不同,研究未进行直接头对头比较。两种治疗均激活了肿瘤内炎症反应,且治疗后肿瘤和外周CD8⁺ T细胞上的PD-1表达均升高。在肿瘤中,[¹³¹I]I-GMIB-4AH29治疗特异性诱导了肿瘤细胞复制、TNF-α、IL-6/STAT3、IL-2/STAT5和补体通路相关基因表达;在血液中,该治疗上调单核细胞SIRPα和NK细胞TIGIT,并下调单核细胞CD86表达。对外周血免疫细胞进行纵向分析显示,治疗早期其组成和表型发生改变,例如效应和调节性T细胞变化。
总体而言,本研究进一步证明,α和β⁻放射性核素具有免疫增敏能力,可触发多种炎症效应反应。
α- and β - -emitting radionuclides targeting human fibroblast activation protein-α (hFAP) are under investigation for cancer therapy. In prior work, analysis of the tumor microenvironment 24 h after therapy completion indicated therapy-induced immune activation.
Here, we analyzed systemic immune responses at varying timepoints during treatment to further elucidate the immune-stimulating effects of the therapy.
Moreover, we analyzed end-stage tumors to gain insight in potential mechanisms of therapy resistance. Single domain antibody 4AH29 that binds hFAP was labeled with 131 I or 225 Ac, generating [ 131 I]I-GMIB-4AH29 and [ 225 Ac]Ac-DOTA-4AH29, respectively. These were used to treat C57BL/6 mice bearing subcutaneous TC-1-hFAP tumors. Blood analysis was conducted using flow cytometry, while tumor characterization was performed using flow cytometry and RNA sequencing. Given the distinct properties and doses of both radiopharmaceuticals, no head-to-head comparison was performed.
Both treatments activated inflammatory responses in the tumor. Increased PD-1 expression on CD8 + T-cells was observed following both treatments in the tumor and periphery.
In the tumor, [ 131 I]I-GMIB-4AH29 therapy uniquely induced the expression of genes involved in tumor cell replication, TNF-α, IL-6/STAT3, IL-2/STAT5 and complement pathways, while in the blood [ 131 I]I-GMIB-4AH29 therapy upregulated SIRPα on monocytes and TIGIT on NK cells, and downregulated CD86 expression on monocytes. Longitudinal blood immune cell analysis showed changes in composition and phenotype early in therapy, e. g. in effector and regulatory T-cells.
Overall, this study corroborates the immune sensitizing capacity of α- and β - -emitting radionuclides, triggering a variety of inflammatory effector responses.
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