CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:Tumors produce glucocorticoids by metabolite recycling, not synthesis, and activate Tregs to promote growth.
Tumors produce glucocorticoids by metabolite recycling, not synthesis, and activate Tregs to promote growth.
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糖皮质激素是一类具有强效免疫抑制特性的类固醇激素。其主要来源是肾上腺,在肾上腺中由胆固醇从头合成生成。此外,许多组织具有一种再循环途径,其中糖皮质激素由无活性代谢物经11β-羟基类固醇脱氢酶1型(11β-HSD1,由Hsd11b1编码)再生。
在此,我们发现多种肿瘤类型表达Hsd11b1并产生活性糖皮质激素。在这类细胞中基因敲除Hsd11b1对体外生长无影响,但减少了体内肿瘤进展,这与表达活化标志物并产生效应细胞因子的CD8+TIL(肿瘤浸润淋巴细胞)(TILs)频率增加相对应。
研究发现,肿瘤来源的糖皮质激素可促进肿瘤浸润Treg中Treg活化的特征,并抑制常规T细胞活化的特征。事实上,在Treg特异性糖皮质激素受体缺陷的小鼠中,CD8+ T细胞活化得以恢复,肿瘤生长减少。
重要的是,药理学抑制11β-HSD1可将肿瘤生长降低至与基因敲除相同的程度,并使免疫治疗耐药的肿瘤对PD-1阻断敏感。鉴于HSD11B1表达在许多人类肿瘤中上调,且11β-HSD1抑制在临床研究中耐受良好,这些数据表明靶向11β-HSD1可能是癌症治疗中的有益辅助手段。
Glucocorticoids are steroid hormones with potent immunosuppressive properties. Their primary source is the adrenals, where they are generated via de novo synthesis from cholesterol.
In addition, many tissues have a recycling pathway in which glucocorticoids are regenerated from inactive metabolites by the enzyme 11β-hydroxysteroid dehydrogenase type 1 (11β-HSD1, encoded by Hsd11b1).
Here, we find that multiple tumor types express Hsd11b1 and produce active glucocorticoids. Genetic ablation of Hsd11b1 in such cells had no effect on in vitro growth, but reduced in vivo tumor progression, which corresponded with increased frequencies of CD8+ tumor-infiltrating lymphocytes (TILs) expressing activation markers and producing effector cytokines.
Tumor-derived glucocorticoids were found to promote signatures of Treg activation and suppress signatures of conventional T cell activation in tumor-infiltrating Tregs. Indeed, CD8+ T cell activation was restored and tumor growth reduced in mice with Treg-specific glucocorticoid receptor deficiency.
Importantly, pharmacologic inhibition of 11β-HSD1 reduced tumor growth to the same degree as gene knockout and rendered immunotherapy-resistant tumors susceptible to PD-1 blockade. Given that HSD11B1 expression is upregulated in many human tumors and that inhibition of 11β-HSD1 is well tolerated in clinical studies, these data suggest that targeting 11β-HSD1 may be a beneficial adjunct in cancer therapy.
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