更正:B7-H3 CAR T 细胞清除肝内胆管癌并诱导持久应答
Correction: B7-H3 CAR T cells eradicate intrahepatic cholangiocarcinoma and induce durable response.
英文原题:Molecular Characterization of Biliary Tract Cancer Predicts Chemotherapy and Programmed Death 1/Programmed Death-Ligand 1 Blockade Responses.
本研究利用临床测序平台,提出了晚期 BTC 对化疗和免疫治疗应答的预测性分子特征。
背景与目的:胆道癌(BTC)具有多样的分子特征,但尚未发现可可靠预测治疗应答的生物标志物。本研究旨在识别 BTC 对化疗和免疫治疗应答相关的分子特征。研究方法与结果:纳入 121 例晚期 BTC 患者,包括 68 例胆管癌(肝内 33 例、肝外 35 例)、41 例胆囊癌和 12 例壶腹癌,采用临床测序平台分析其肿瘤样本。所有患者均接受一线姑息化疗;其中 48 例化疗失败后接受程序性死亡受体 1(PD-1)/程序性死亡配体 1(PD-L1)阻断治疗。采用靶向测序和免疫组化对肿瘤进行分子及组织病理学表征,以寻找治疗应答相关标志物。基因组分析显示,突变谱随解剖部位而广泛不同。小胆管型肝内胆管癌患者化疗应答较好,并常见 BRCA1 相关蛋白 1/异柠檬酸脱氢酶 1/2 基因突变;大胆管型则常见 KRAS 原癌基因和 SMAD 家族成员 4 基因突变。进一步分析显示,转化生长因子 β 通路改变的肿瘤化疗应答较差,而 DNA 损伤应答通路改变者应答较好。在接受 PD-1/PD-L1 阻断的患者中,KRAS 改变和染色体不稳定肿瘤与免疫治疗耐药相关。具有这些耐药因素的大多数患者(95.0%)未从 PD-1/PD-L1 阻断中获益,且肿瘤突变负荷较低。这些肿瘤 TIL 密度低,提示微环境具有免疫抑制性;相反,较高的肿瘤内 TIL 密度与较好的免疫治疗应答相关。结论:本研究利用临床测序平台提出了预测晚期 BTC 化疗和免疫治疗应答的分子特征,为依据肿瘤分子特征选择治疗药物提供了直观框架。
BACKGROUND AND AIMS: Biliary tract cancer (BTC) exhibits diverse molecular characteristics. However, reliable biomarkers that predict therapeutic responses are yet to be discovered. We aimed to identify the molecular features of treatment responses to chemotherapy and immunotherapy in BTCs. APPROACH AND RESULTS: We enrolled 121 advanced BTC patients (68 cholangiocarcinomas [33 intrahepatic, 35 extrahepatic], 41 gallbladder cancers, and 12 Ampulla of Vater cancers) whose specimens were analyzed by clinical sequencing platforms. All patients received first-line palliative chemotherapy; 48 patients underwent programmed death 1 (PD-1)/programmed death-ligand 1 (PD-L1) blockade therapy after failed chemotherapy. Molecular and histopathological characterization was performed using targeted sequencing and immunohistochemical staining to investigate treatment response-associated biomarkers. Genomic analysis revealed a broad spectrum of mutational profiles according to anatomical location. Favorable responses to chemotherapy were observed in the small-duct type compared with the large-duct type intrahepatic cholangiocarcinoma, with frequent mutations in BRCA1-associated protein-1/isocitrate dehydrogenase 1/2 and KRAS proto-oncogene, GTPase/SMAD family member 4 genes, respectively. The molecular features were further analyzed in BTCs, and transforming growth factor beta and DNA damage response pathway-altered tumors exhibited poor and favorable chemotherapy responses, respectively. In PD-1/PD-L1 blockade-treated patients, KRAS alteration and chromosomal instability tumors were associated with resistance to immunotherapy. The majority of patients (95.0%) with these resistance factors show no clinical benefit to PD-1/PD-L1 blockade and low tumor mutational burdens. Low tumor-infiltrating lymphocyte (TIL) density in tumors with these resistance factors indicated immune-suppressive tumor microenvironments, whereas high intratumoral TIL density was associated with a favorable immunotherapy response. CONCLUSIONS: This study proposes predictive molecular features of chemotherapy and immunotherapy responses in advanced BTCs using clinical sequencing platforms. Our result provides an intuitive framework to guide the treatment of advanced BTCs benefiting from therapeutic agents based on the tumors' molecular features.
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