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基于病理亚型的壶腹周围癌临床和分子特征

英文原题:Clinical and molecular characteristics of periampullary carcinoma based on pathological subtypes.

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Clinical and molecular characteristics of periampullary carcinoma based on pathological subtypes.

PubMed 2025/02/26(内容时间) J Gastrointest Oncol Q3 · IF 2.1(JCR 2025)

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研究概要

病理分型指导的个体化化疗使晚期 PAC 患者获得了更长的生存期。PAC 的 PB 和 IN 亚型表现出不同的分子调控机制和免疫浸润微环境。这些发现强调了在开发 PAC-PB 诊断模型时考虑亚型特异性因素的重要性。

研究思路结论见上方概要

壶腹周围癌(PAC)是一种相对罕见但高度侵袭性的恶性肿瘤,给确定最佳治疗方案带来了挑战。本研究旨在阐明组织病理学分型在指导晚期PAC患者化疗选择方面的潜力,并描述不同亚型相关的独特分子特征、潜在功能变化及调控机制。

我们回顾性分析了2015年1月至2022年5月期间在西京医院肿瘤科住院的晚期PAC患者的临床数据。这些患者接受了一线化疗,方案为FOLFOX(亚叶酸、氟尿嘧啶和奥沙利铂)或基于吉西他滨的方案。部分患者被分为病理分型组和对照组。病理分型组接受亚型特异性化疗方案,而对照组接受基于原发肿瘤部位的化疗方案。我们比较了两组的中位无进展生存期(PFS)和总生存期(OS)。利用公开数据库(GSE60980),我们进行了差异基因筛选、富集分析和免疫细胞浸润评估。基于差异表达基因构建了蛋白质-蛋白质相互作用(PPI)网络,最终鉴定出60个节点基因。随后,使用最小绝对收缩和选择算子(LASSO)回归机器学习算法进行核心基因选择,以鉴定PAC-PB亚型特有的关键基因。

病理分型组共46例患者,其中26例归为PB亚型,20例归为IN亚型,而对照组包含40例患者。与对照组患者相比,病理分型组患者在ORR(20.5% vs . 12.9%;P=0.04)、中位PFS(8.1 vs . 5.4个月;P=0.04)和中位OS(34 vs . 25.9个月;P=0.02)方面均表现出显著改善。多因素Cox回归分析显示,病理分型独立影响PFS[风险比(HR)=0.20,95%置信区间(CI):0.10-0.44;P=0.009]和OS(HR=0.21,95% CI:0.17-0.71;P=0.02)。利用公开可用的PAC队列(GSE60980),我们筛选出154个差异表达基因,这些基因在细胞周期、成纤维细胞和上皮-间质转化相关信号通路中显著富集。免疫细胞浸润分析表明,在PAC-PB亚型中,成纤维细胞丰度显著增加,而B细胞和γδ T细胞丰度显著降低。此外,我们鉴定了PAC-PB亚型特异的核心基因,并利用这些基因构建了PAC-PB诊断模型。

展开英文摘要原文

Periampullary carcinoma (PAC) is a relatively rare but highly aggressive malignancy, posing challenges to the determination of the optimal therapeutic approach. The objective of this study was to clarify the potential of histopathological typing in guiding chemotherapy selection for patients with advanced PAC and to characterize the distinct molecular features, underlying functional changes, and regulatory mechanisms associated with the different subtypes.

We conducted a retrospective analysis of clinical data from patients with advanced PAC admitted to the Oncology Department of Xijing Hospital between January 2015 and May 2022. These patients received first-line chemotherapy with either FOLFOX (folinic acid, fluorouracil, and oxaliplatin) or gemcitabine-based regimens. Certain patients were divided into the pathological typing group and the control group. The pathological typing group received subtype-specific chemotherapy regimens, while the control group received chemotherapy regimens based on the primary tumor site. We compared the median progression-free survival (PFS) and overall survival (OS) between the two groups. Using publicly available databases (GSE60980), we conducted differential gene screening, enrichment analysis, and immune cell infiltration assessment. A protein-protein interaction (PPI) network was constructed based on the differentially expressed genes, resulting in the identification of 60 node genes. Subsequently, a core gene selection using the least absolute shrinkage and selection operator (LASSO) regression machine learning algorithm was performed to identify the key genes specific to PAC-PB subtype.

The pathological typing group consisted of 46 patients, with 26 classified as the PB subtype and 20 as the IN subtype, while the control group comprised 40 patients. Compared to those in the control group, patients in the pathological typing group demonstrated significant improvements in overall response rate (20.5% vs . 12.9%; P=0.04), median PFS (8.1 vs . 5.4 months; P=0.04), and median OS (34 vs . 25.9 months; P=0.02). Multivariate Cox regression analysis revealed that pathological typing independently influenced PFS [hazard ratio (HR) =0.20, 95% confidence interval (CI): 0.10-0.44; P=0.009] and OS (HR =0.21, 95% CI: 0.17-0.71; P=0.02). Using a publicly available PAC cohort (GSE60980), we selected 154 differentially expressed genes, which were significantly enriched in signaling pathways related to the cell cycle, fibroblasts, and epithelial-mesenchymal transition. Analysis of immune cell infiltration indicated a significant increase in the abundance of fibroblast cells and a significant decrease in that of B cells and γδ T cells in the PAC-PB subtype. Furthermore, we identified core genes specific to the PAC-PB subtype and used them to construct a PAC-PB diagnostic model.

Pathologic typing-guided individualized chemotherapy resulted in prolonged survival for patients with advanced PAC. The PB and IN subtypes of PAC exhibit distinct molecular regulatory mechanisms and immune infiltration microenvironments. These findings underscore the importance of considering subtype-specific factors in the development of a PAC-PB diagnostic model.

论文信息

作者
Wang Q、Wang X、Shi Z、Yang Y、Ai L、Zhang H、Yang J
单位
Department of Oncology, Xijing Hospital, Air Force Medical University, Xi'an, China.China
期刊
Journal of gastrointestinal oncology2025 Feb 28
原文标识
PubMed 40115922 · DOI 10.21037/jgo-2025-14