胰腺肿瘤微环境中代谢-免疫交互的机制及临床意义
Mechanism and clinical relevance of metabolic-immune cross-talk in pancreatic tumor microenvironment.
代谢应激诱导的免疫抑制在胰腺导管腺癌(PDAC)的癌前阶段就已出现,并随疾病进展而加重,其特征是存在大量抑制性髓系和淋系细胞。
英文原题:Spatial Configuration of Pancreatic Cancer Is Associated with Disease Recurrence after Neoadjuvant Therapy and Curative-Intent Resection.
Spatial Configuration of Pancreatic Cancer Is Associated with Disease Recurrence after Neoadjuvant Therapy and Curative-Intent Resection.
从标准H&E切片量化的残留癌-间质拓扑结构在PDAC新辅助治疗后产生独立预后信号,为空间风险提供细胞免疫相关性依据,并推动前瞻性验证及空间信息指导的辅助治疗策略。
胰腺导管腺癌(PDAC)在新辅助治疗(NT)和根治性切除术后常复发。尽管主要病理缓解预示良好结局,但多数患者仅达到轻微缓解,且复发风险异质。我们探讨了残留PDAC的空间组织是否编码了超越残留肿瘤负荷的临床相关生物学信息。
在一项回顾性队列中,纳入203例接受NT并限于轻微病理反应的已切除PDAC患者,使用人工智能驱动的流程将常规苏木精-伊红(H&E)全切片图像分割为癌和间质。量化空间组成(斑块密度、边缘密度)和构型(紧密度/复杂性、混合程度),并在校正标准临床病理因素的多变量模型中检验其与DFS的关联。
较短的DFS与一种碎片化、界面丰富的肿瘤-间质生态相关,其特征为更高的边缘密度和多样性以及同型聚集减少,且独立于临床病理变量。两个空间风险模型具有独立预后价值:(i) 癌症平均形状指数加间质形状指数变异性[校正风险比(HR),1.71;P = 0.003]和(ii) 平均间质斑块面积加边缘密度(校正HR,2.19;P = 0.002)。两个模型均能对病理反应分级和残余癌区域无法分层的结果进行分层。高风险构型进一步与瘤内TIL(肿瘤浸润淋巴细胞)密度和浸润比例降低相关,并伴有TIL在癌症周边和间质内的相对聚集,与免疫排斥表型一致。
PURPOSE: Pancreatic ductal adenocarcinoma (PDAC) frequently recurs after neoadjuvant therapy (NT) and curative-intent resection. Although major pathologic response predicts favorable outcomes, most patients achieve only minor response with a heterogeneous recurrence risk. We asked whether the spatial organization of residual PDAC encodes clinically relevant biology beyond residual tumor burden. EXPERIMENTAL DESIGN: In a retrospective cohort of 203 patients with resected PDAC treated with NT and restricted to minor pathologic response, routine hematoxylin and eosin (H&E) whole-slide images were segmented into cancer and stroma using an artificial intelligence-enabled pipeline. Spatial composition (patch density, edge density) and configuration (compactness/complexity, intermixing) were quantified and tested for associations with disease-free survival (DFS) using multivariable models adjusted for standard clinicopathologic factors. RESULTS: Shorter DFS was associated with a fragmented, interface-rich tumor-stroma ecology featuring higher edge density and diversity and reduced homotypic aggregation, independent of clinicopathologic variables. Two spatial risk models were independently prognostic: (i) cancer mean shape index plus stromal shape index variability [adjusted hazard ratio (HR), 1.71; P = 0.003] and (ii) mean stromal patch area plus edge density (adjusted HR, 2.19; P = 0.002). Both models stratified outcomes in which pathologic response grading and residual cancer area did not. High-risk configurations were further associated with reduced intratumoral tumor-infiltrating lymphocyte (TIL) density and infiltration ratio, with relative TIL accumulation at the cancer periphery and within the stroma, consistent with an immune-excluded phenotype. CONCLUSIONS: Residual cancer-stroma topology quantified from standard H&E slides yields independent prognostic signals after NT in PDAC, provides a cellular immune correlate for spatial risk, and motivates prospective validation and spatially informed adjuvant strategies.
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