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BCG 在致癌剂诱导的膀胱癌小鼠模型中引发优于放疗的 STING 介导的固有免疫反应。

BCG invokes superior STING-mediated innate immune response over radiotherapy in a carcinogen murine model of urothelial cancer.

机构信息

Department of Urology, The Johns Hopkins Medical Institutions, Baltimore, MD, USA.

Greenberg Bladder Cancer Institute, The Johns Hopkins Medical Institutions, Baltimore, MD, USA.

出版信息

J Pathol. 2022 Feb;256(2):223-234. doi: 10.1002/path.5830. Epub 2021 Dec 10.

Abstract

Radiation and bacillus Calmette-Guérin (BCG) instillations are used clinically for treatment of urothelial carcinoma, but the precise mechanisms by which they activate an immune response remain elusive. The role of the cGAS-STING pathway has been implicated in both BCG and radiation-induced immune response; however, comparison of STING pathway molecules and the immune landscape following treatment in urothelial carcinoma has not been performed. We therefore comprehensively analyzed the local immune response in the bladder tumor microenvironment following radiotherapy and BCG instillations in a well-established spontaneous murine model of urothelial carcinoma to provide insight into activation of STING-mediated immune response. Mice were exposed to the oral carcinogen, BBN, for 12 weeks prior to treatment with a single 15 Gy dose of radiation or three intravesical instillations of BCG (1 × 10  CFU). At sacrifice, tumors were staged by a urologic pathologist and effects of therapy on the immune microenvironment were measured using the NanoString Myeloid Innate Immunity Panel and immunohistochemistry. Clinical relevance was established by measuring immune biomarker expression of cGAS and STING on a human tissue microarray consisting of BCG-treated non-muscle-invasive urothelial carcinomas. BCG instillations in the murine model elevated STING and downstream STING-induced interferon and pro-inflammatory molecules, intratumoral M1 macrophage and T-cell accumulation, and complete tumor eradication. In contrast, radiotherapy caused no changes in STING pathway or innate immune gene expression; rather, it induced M2 macrophage accumulation and elevated FoxP3 expression characteristic of immunosuppression. In human non-muscle-invasive bladder cancer, STING protein expression was elevated at baseline in patients who responded to BCG therapy and increased further after BCG therapy. Overall, these results show that STING pathway activation plays a key role in effective BCG-induced immune response and strongly indicate that the effects of BCG on the bladder cancer immune microenvironment are more beneficial than those induced by radiation. © 2021 The Pathological Society of Great Britain and Ireland.

摘要

辐射和卡介苗(BCG)灌注被临床用于治疗尿路上皮癌,但它们激活免疫反应的确切机制仍难以捉摸。cGAS-STING 途径在 BCG 和辐射诱导的免疫反应中都有作用;然而,尚未对膀胱癌治疗后 STING 途径分子和免疫图谱进行比较。因此,我们在一个成熟的自发性膀胱癌小鼠模型中全面分析了放射治疗和 BCG 灌注后膀胱肿瘤微环境中的局部免疫反应,以深入了解 STING 介导的免疫反应的激活。在接受单次 15Gy 剂量的辐射或三次膀胱内 BCG 灌注(1×10 CFU)之前,小鼠接受了口服致癌剂 BBN 的 12 周处理。在牺牲时,泌尿科病理学家对肿瘤进行分期,并使用 NanoString 髓系先天免疫面板和免疫组织化学测量治疗对免疫微环境的影响。通过测量包含 BCG 治疗的非肌肉浸润性尿路上皮癌的人类组织微阵列中的 cGAS 和 STING 的免疫生物标志物表达,确立了临床相关性。在小鼠模型中,BCG 灌注会升高 STING 及其下游 STING 诱导的干扰素和促炎分子、肿瘤内 M1 巨噬细胞和 T 细胞积累,并完全消除肿瘤。相比之下,放射治疗不会改变 STING 途径或先天免疫基因表达;相反,它会诱导 M2 巨噬细胞积累并升高 FoxP3 表达,这是免疫抑制的特征。在人类非肌肉浸润性膀胱癌中,BCG 治疗反应良好的患者在基线时 STING 蛋白表达升高,BCG 治疗后进一步升高。总的来说,这些结果表明 STING 途径的激活在有效的 BCG 诱导的免疫反应中起着关键作用,并强烈表明 BCG 对膀胱癌免疫微环境的影响比辐射诱导的更为有益。

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