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癌症相关间皮细胞衍生的 ANGPTL4 和 STC1 促进卵巢癌转移的早期步骤。

Cancer-associated mesothelial cell-derived ANGPTL4 and STC1 promote the early steps of ovarian cancer metastasis.

机构信息

Department of Obstetrics and Gynecology/Section of Gynecologic Oncology.

Department of Pathology, and.

出版信息

JCI Insight. 2023 Mar 22;8(6):e163019. doi: 10.1172/jci.insight.163019.

Abstract

Ovarian cancer (OvCa) preferentially metastasizes in association with mesothelial cell-lined surfaces. We sought to determine if mesothelial cells are required for OvCa metastasis and detect alterations in mesothelial cell gene expression and cytokine secretion upon interaction with OvCa cells. Using omental samples from patients with high-grade serous OvCa and mouse models with Wt1-driven GFP-expressing mesothelial cells, we validated the intratumoral localization of mesothelial cells during human and mouse OvCa omental metastasis. Removing mesothelial cells ex vivo from human and mouse omenta or in vivo using diphtheria toxin-mediated ablation in Msln-Cre mice significantly inhibited OvCa cell adhesion and colonization. Human ascites induced angiopoietin-like 4 (ANGPTL4) and stanniocalcin 1 (STC1) expression and secretion by mesothelial cells. Inhibition of STC1 or ANGPTL4 via RNAi obstructed OvCa cell-induced mesothelial cell to mesenchymal transition while inhibition of ANGPTL4 alone obstructed OvCa cell-induced mesothelial cell migration and glycolysis. Inhibition of mesothelial cell ANGPTL4 secretion via RNAi prevented mesothelial cell-induced monocyte migration, endothelial cell vessel formation, and OvCa cell adhesion, migration, and proliferation. In contrast, inhibition of mesothelial cell STC1 secretion via RNAi prevented mesothelial cell-induced endothelial cell vessel formation and OvCa cell adhesion, migration, proliferation, and invasion. Additionally, blocking ANPTL4 function with Abs reduced the ex vivo colonization of 3 different OvCa cell lines on human omental tissue explants and in vivo colonization of ID8p53-/-Brca2-/- cells on mouse omenta. These findings indicate that mesothelial cells are important to the initial stages of OvCa metastasis and that the crosstalk between mesothelial cells and the tumor microenvironment promotes OvCa metastasis through the secretion of ANGPTL4.

摘要

卵巢癌(OvCa)优先与间皮细胞衬里表面转移。我们试图确定间皮细胞是否是 OvCa 转移所必需的,并检测间皮细胞与 OvCa 细胞相互作用时基因表达和细胞因子分泌的变化。使用来自高级别浆液性 OvCa 患者的大网膜样本和具有 Wt1 驱动 GFP 表达的间皮细胞的小鼠模型,我们验证了间皮细胞在人类和小鼠 OvCa 大网膜转移过程中的肿瘤内定位。从人类和小鼠大网膜中体外去除间皮细胞或在 Msln-Cre 小鼠中使用白喉毒素介导的消融体内去除间皮细胞,显著抑制 OvCa 细胞黏附和定植。人类腹水诱导间皮细胞表达和分泌血管生成素样 4(ANGPTL4)和斯钙素 1(STC1)。通过 RNAi 抑制 STC1 或 ANGPTL4 会阻碍 OvCa 细胞诱导的间皮细胞向间充质转化,而单独抑制 ANGPTL4 会阻碍 OvCa 细胞诱导的间皮细胞迁移和糖酵解。通过 RNAi 抑制间皮细胞 ANGPTL4 的分泌可防止间皮细胞诱导单核细胞迁移、内皮细胞血管形成和 OvCa 细胞黏附、迁移和增殖。相比之下,通过 RNAi 抑制间皮细胞 STC1 的分泌可防止间皮细胞诱导的内皮细胞血管形成和 OvCa 细胞黏附、迁移、增殖和侵袭。此外,用 Abs 阻断 ANPTL4 功能可减少 3 种不同的 OvCa 细胞系在人类大网膜组织外植体上的体外定植以及 ID8p53-/-Brca2-/-细胞在小鼠大网膜上的体内定植。这些发现表明间皮细胞对 OvCa 转移的初始阶段很重要,并且间皮细胞与肿瘤微环境之间的串扰通过分泌 ANGPTL4 促进 OvCa 转移。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9dd4/10070116/74d46629c57b/jciinsight-8-163019-g091.jpg

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