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肿瘤来源的 CXCL5 耗竭改善肥胖型胰腺癌模型中的 T 细胞浸润和抗 PD-1 治疗反应

英文原题:Depletion of tumor-derived CXCL5 improves T cell infiltration and anti-PD-1 therapy response in an obese model of pancreatic cancer.

查看英文原题

Depletion of tumor-derived CXCL5 improves T cell infiltration and anti-PD-1 therapy response in an obese model of pancreatic cancer.

PubMed 2025/03/22(内容时间) J Immunother Cancer Q1 · IF 11.7(JCR 2025)

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研究概要

我们的研究结果表明,TNF 和 IL-1β均能在体外刺激 PDAC 细胞释放 CXCL5,这与患者数据中的表达相关。在体内单独清除 CXCL5 就足以促进 T 细胞浸润到肿瘤中,提高疗效,并且需要检查点阻断抑制来减轻肿瘤负荷。

研究思路结论见上方概要

CXCR1/2抑制剂正与免疫疗法联合应用于PDAC临床试验中。CXC配体是一类负责刺激这些受体的细胞因子家族;虽然通常由活化的免疫细胞、成纤维细胞甚至脂肪细胞分泌,但它们也由免疫逃逸的癌细胞分泌。已知CXC配体的释放发生在对炎症刺激的响应中。脂肪组织是一个内分泌器官,也是炎症信号肽的来源。重要的是,脂肪来源的细胞因子和趋化因子被认为是肿瘤细胞免疫逃逸的潜在驱动因素;累积来看,这些发现表明,在肥胖背景下靶向CXC配体可能是有益的。

采用RNA测序分析人PDAC细胞系,以评估脂肪条件培养基对癌细胞转录组的影响。通过ELISA验证PDAC细胞受脂肪诱导产生的分泌组中CXCL5分泌的诱导情况。利用CPTAC的人体组织数据,将IL-1β和TNF表达与CXCL5 mRNA及蛋白水平进行相关性分析。使用CRISPR-Cas9技术从鼠源PDAC KPC细胞系中敲除CXCL5,以在饮食诱导的肥胖同源小鼠中进行原位肿瘤研究。采用流式细胞术和免疫组织化学方法比较有无CXCL5的肿瘤之间的免疫特征。对携带CXCL5正常或缺陷肿瘤的小鼠进行监测,以评估其在抗PD-1免疫检查点阻断治疗下的肿瘤大小差异。

人脂肪组织条件培养基通过IL-1β或TNF刺激PDAC细胞分泌CXCL5;需要同时中和两者才能显著阻断肿瘤细胞释放CXCL5。从肿瘤中消除CXCL5促进了富集的免疫表型,并出乎意料地增加了耗竭CD8 T细胞的数量。应用抗PD-1治疗控制肿瘤未能改变肿瘤生长,然而治疗CXCL5缺陷肿瘤显示出响应,肿瘤质量显著减少。

展开英文摘要原文

CXCR1/2 inhibitors are being implemented with immunotherapies in PDAC clinical trials. CXC-ligands are a family of cytokines responsible for stimulating these receptors; while typically secreted by activated immune cells, fibroblasts, and even adipocytes, they are also secreted by immune-evasive cancer cells. CXC-ligand release is known to occur in response to inflammatory stimuli. Adipose tissue is an endocrine organ and a source of inflammatory signaling peptides. Importantly, adipose-derived cytokines and chemokines are implicated as potential drivers of tumor cell immune evasion; cumulatively, these findings suggest that targeting CXC-ligands may be beneficial in the context of obesity.

RNA-sequencing of human PDAC cell lines was used to assess influences of adipose conditioned media on the cancer cell transcriptome. The adipose-induced secretome of PDAC cells was validated with ELISA for induction of CXCL5 secretion. Human tissue data from CPTAC was used to correlate IL-1β and TNF expression with both CXCL5 mRNA and protein levels. CRISPR-Cas9 was used to knockout CXCL5 from a murine PDAC KPC cell line to assess orthotopic tumor studies in syngeneic, diet-induced obese mice. Flow cytometry and immunohistochemistry were used to compare the immune profiles between tumors with or without CXCL5. Mice-bearing CXCL5 competent or deficient tumors were monitored for differential tumor size in response to anti-PD-1 immune checkpoint blockade therapy.

Human adipose tissue conditioned media stimulates CXCL5 secretion from PDAC cells via either IL-1β or TNF; neutralization of both is required to significantly block the release of CXCL5 from tumor cells. Ablation of CXCL5 from tumors promoted an enriched immune phenotype with an unanticipatedly increased number of exhausted CD8 T cells. Application of anti-PD-1 treatment to control tumors failed to alter tumor growth, yet treatment of CXCL5-deficient tumors showed response by significantly diminished tumor mass.

In summary, our findings show that both TNF and IL-1β can stimulate CXCL5 release from PDAC cells in vitro, which correlates with expression in patient data. CXCL5 depletion in vivo alone is sufficient to promote T cell infiltration into tumors, increasing efficacy and requiring checkpoint blockade inhibition to alleviate tumor burden.

论文信息

作者
Walsh RM、Ambrose J、Jack JL、Eades AE、Bye BA、Tannus Ruckert M、Messaggio F、Olou AA
第一作者单位
Cancer Biology, KUMC, Kansas City, Kansas, USA.United States
通讯作者单位
Cancer Biology, KUMC, Kansas City, Kansas, USA mvansaun@kumc.edu.United States
期刊
Journal for immunotherapy of cancer2025 Mar 22
原文标识
PubMed 40121029 · DOI 10.1136/jitc-2024-010057