PO.CL05.10 · 临床研究
整合组织和分泌组分析鉴定出腹膜癌病中一种IL-6/IL-8主导的免疫表型
Integrated tissue and secretome profiling identifies an IL-6/IL-8-dominant immune phenotype in peritoneal carcinomatosis
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
背景:腹膜癌病(PC)是腹盆腔恶性肿瘤的晚期表现,由于对其在腹膜免疫微环境中的生物学驱动因素了解不完整,往往对当前治疗耐药。本研究旨在通过分析患者腹膜可溶性介质和细胞组成,鉴定PC的可操作治疗靶点。基于既有证据表明IL-8是其他癌症中肿瘤相关炎症和免疫抑制的关键介质以及PC的初步数据,本研究还在临床前模型中评估了IL-8通路抑制。
方法:从三组患者中采集腹膜组织和液体:无良性病变的患者(n=15)、有癌症但无PC的患者(n=30)以及确诊PC的患者(n=41)。使用免疫组织化学定量组织中的免疫细胞,使用Luminex面板分析腹膜液中的免疫、炎症和生长因子。统计分析鉴定组间差异、与疾病负荷(腹膜癌指数——PCI)的相关性以及总生存(OS)。为评估IL-8轴阻断的治疗可行性,从第0至9天每日以CXCR2拮抗剂AZD5069(100 mg/kg)或生理盐水治疗生物发光CT26-luc小鼠PC模型,并进行连续IVIS成像、体重监测和至第11天的生存追踪。
结果:与非PC组相比,PC组织表现出更高的免疫细胞浸润,包括升高的肥大细胞、中性粒细胞、CD4+ T细胞、CD14+单核细胞、CD20+ B细胞和CD138+浆细胞。PC腹膜液的分泌组分析揭示了以IL-6/IL-8为中心的主导性炎症特征,伴有GRO、IL-6、IL-8、CXCL10、IL-10和TGF-beta的升高。这一模式支持促血管生成、免疫抑制和基质激活信号。CD4+、CD14+、CD20+和CD138+细胞的密度与PCI呈正相关,表明免疫-基质与肿瘤负荷的渐进性共同演化。在人样本中,中性粒细胞浸润与更差的OS相关,而CD1a+树突状细胞富集与更好的OS相关,强调了免疫学发现的临床相关性。在小鼠模型中,AZD5069在10只治疗小鼠中的4只显示出治疗效果,提示靶向IL-8轴在特定患者亚群中的潜在疗效。
结论:PC的特征是独特的免疫细胞浸润和显著的IL-6/IL-8细胞因子网络。中性粒细胞浸润和IL-6/IL-8轴均与疾病负荷和患者生存相关,突显IL-6/IL-8轴作为一个相关治疗靶点。临床前证据支持其在特定患者群体中的潜力。需要进一步研究以鉴定治疗应答的预测性生物标志物,并将这些发现转化为临床策略。
查看英文原文 English abstract
Background: Peritoneal carcinomatosis (PC) is a late manifestation of abdominopelvic malignancies, often resistant to current treatments due to an incomplete understanding of its biological drivers within the peritoneal immune microenvironment. This study aimed to identify actionable therapeutic targets for PC by analyzing peritoneal soluble mediators and cellular composition in patients. Building on existing evidence implicating IL-8 as a critical mediator of tumor-associated inflammation and immunosuppression in other cancers and preliminary data in PC, the study also evaluated IL-8 pathway inhibition in a preclinical model.
Methods: Peritoneal tissue and fluid were collected from three patient groups: patients without benign conditions (n=15), cancer without PC (n=30), and confirmed PC (n=41). Immunohistochemistry was used to quantify immune cells in tissue and Luminex panels to analyze immune, inflammatory, and growth factors in peritoneal fluid. Statistical analyses identified group differences, correlations with disease burden (Peritoneal Cancer Index - PCI), and overall survival (OS). To assess therapeutic tractability of IL-8 axis blockade, a bioluminescent CT26-luc murine PC model was treated daily with the CXCR2 antagonist AZD5069 (100 mg/kg) or saline from day 0-9, with serial IVIS imaging, body-weight monitoring, and survival tracking through day 11.
Results: PC tissue exhibited increased immune cell infiltration compared to non-PC groups, including elevated mast cells, neutrophils, CD4⁺ T cells, CD14⁺ monocytes, CD20⁺ B cells, and CD138⁺ plasma cells. Secretomic analysis of peritoneal fluid in PC revealed a dominant IL-6/IL-8-centered inflammatory signature, with increased GRO, IL-6, IL-8, CXCL10, IL-10, and TGF-beta. This pattern supports pro-angiogenic, immunosuppressive, and stromal-activation signaling. Densities of CD4⁺, CD14⁺, CD20⁺, and CD138⁺ cells positively correlated with PCI, indicating progressive immune-stromal co-evolution with tumor burden. In human samples, neutrophil infiltration correlated with worse OS, while CD1a⁺ dendritic cell enrichment correlated with improved OS, underscoring the clinical relevance of the immunologic findings. In the murine model, AZD5069 demonstrated a therapeutic effect in 4 of 10 treated mice, suggesting potential efficacy of IL-8-axis targeting in specific patient subsets.
Conclusion: PC is characterized by distinct immune cell infiltration and a significant IL-6/IL-8 cytokine network. Both neutrophil infiltration and the IL-6/IL-8 axis are associated with disease burden and patient survival, highlighting the IL-6/IL-8 axis as a relevant therapeutic target. Preclinical evidence supports its potential in specific patient groups. Further research is needed to identify predictive biomarkers for treatment response and translate these findings into clinical strategies.
利益披露 Disclosure
C. Sherry, None..
N. Dadgar, None..
Z. Liu, None..
Y. Fan, None..
H. Park, None..
A. Zaidi, None..
P. Mirsky, None..
O. Kucherenko, None..
A. Donnenberg, None..
D. L. Bartlett, None..
V. S. Donnenberg, None..
P. Wagner, None.