免疫检查点阻断通过扩增效应 CD8⁺ T 细胞克隆增强淋巴细胞清除性化疗诱导的抗肿瘤免疫
Immune Checkpoint Blockade Augments Lymphodepleting Chemotherapy-Induced Antitumor Immunity by Expanding Effector CD8+ T-cell Clones.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Harnessing the reverse cholesterol transport pathway to favor differentiation of monocyte-derived APCs and antitumor responses.
Harnessing the reverse cholesterol transport pathway to favor differentiation of monocyte-derived APCs and antitumor responses.
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脂质和胆固醇代谢在肿瘤细胞行为及肿瘤微环境塑造中发挥关键作用。特别是酶促和非酶促胆固醇代谢及其衍生代谢物调控树突状细胞(DC)功能,最终影响肿瘤块内外的肿瘤抗原呈递,抑制肿瘤免疫和免疫治疗尝试。导致这些事件的机制在很大程度上仍有待明确。
在此,我们通过遗传学和药理学手段扰动(氧)固醇代谢,并分析了肿瘤脂质组景观与肿瘤浸润免疫细胞的关系。我们报道,通过表达在胆固醇和氧固醇硫酸盐合成中至关重要的磺基转移酶2B1b来扰动肿瘤微环境的脂质组,有利于单核细胞来源的抗原呈递细胞(包括单核细胞-DC)在肿瘤内的呈现。
我们还发现,用一种新开发的氧固醇受体肝X受体(LXRs)拮抗剂治疗小鼠,可促进肿瘤内单核细胞-DC分化,延缓肿瘤生长,并与抗PD-1免疫治疗和过继性T细胞治疗产生协同作用。
值得注意的是,在接受抗PD-1为基础免疫治疗的黑色素瘤患者中观察LXR/胆固醇基因特征可预测不同的临床结局。事实上,肿瘤中表达LXR靶基因的单核细胞/巨噬细胞浸润较差的患者在治疗过程中显示出改善的生存。
因此,我们的数据支持(氧)固醇代谢在塑造单核细胞向DC分化以及在对免疫治疗应答至关重要的肿瘤抗原呈递中的作用。一种新型LXR拮抗剂的鉴定为癌症患者开辟了新的治疗途径。
Lipid and cholesterol metabolism play a crucial role in tumor cell behavior and in shaping the tumor microenvironment. In particular, enzymatic and non-enzymatic cholesterol metabolism, and derived metabolites control dendritic cell (DC) functions, ultimately impacting tumor antigen presentation within and outside the tumor mass, dampening tumor immunity and immunotherapeutic attempts. The mechanisms accounting for such events remain largely to be defined.
Here we perturbed (oxy)sterol metabolism genetically and pharmacologically and analyzed the tumor lipidome landscape in relation to the tumor-infiltrating immune cells.
We report that perturbing the lipidome of tumor microenvironment by the expression of sulfotransferase 2B1b crucial in cholesterol and oxysterol sulfate synthesis, favored intratumoral representation of monocyte-derived antigen-presenting cells, including monocyte-DCs.
We also found that treating mice with a newly developed antagonist of the oxysterol receptors Liver X Receptors (LXRs), promoted intratumoral monocyte-DC differentiation, delayed tumor growth and synergized with anti-PD-1 immunotherapy and adoptive T cell therapy.
Of note, looking at LXR/cholesterol gene signature in melanoma patients treated with anti-PD-1-based immunotherapy predicted diverse clinical outcomes. Indeed, patients whose tumors were poorly infiltrated by monocytes/macrophages expressing LXR target genes showed improved survival over the course of therapy.
Thus, our data support a role for (oxy)sterol metabolism in shaping monocyte-to-DC differentiation, and in tumor antigen presentation critical for responsiveness to immunotherapy. The identification of a new LXR antagonist opens new treatment avenues for cancer patients.
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