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腹水剪切应力激活G蛋白偶联受体并下调黏蛋白15以促进卵巢癌恶性进展。

Ascitic Shear Stress Activates GPCRs and Downregulates Mucin 15 to Promote OvarianCancer Malignancy.

作者信息

Mehta Geeta, Horst Eric, Cotter Liam, Bonini Mia, Novak Caymen, Treacher Nina, Zhang Yeye, Jackson Zoe, Narayanan Ishwarya Venkata, Wuchu Fulei, Nenwani Minal, Fischer Zachary, Sunshine Alec, Lin Zequan, Tran Linh, Nagrath Deepak, Ljungman Mats, Maturen Katherine, DiFeo Analisa, Nordsletten David

机构信息

University of Michigan.

University of Michigan-Ann Arbor.

出版信息

Res Sq. 2024 Nov 25:rs.3.rs-5160301. doi: 10.21203/rs.3.rs-5160301/v1.

Abstract

The accumulation of ascites in patients with ovarian cancer increases their risk of transcoelomic metastasis. Although common routes of peritoneal dissemination are known to follow distinct paths of circulating ascites, the mechanisms that initiate these currents and subsequent fluid shear stresses are not well understood. Here, we developed a patient-based, boundary-driven computational fluid dynamics model to predict an upper range of fluid shear stress generated by the accumulation of ascites. We show that ovarian cancer cells exposed to ascitic shear stresses display heightened G protein-coupled receptor mechanosignaling and the induction of an epithelial to mesenchymal-like transition through p38α mitogen-activated protein kinase and mucin 15 modulation. These findings along with a shear-induced immunomodulatory secretome position elevated shear stress as a protumoural signal. Together, this study suggests inhibition of the Gαq protein and restriction of ascites accumulation as maintenance strategies for overcoming mechanotransduction-mediated metastasis within the peritoneal cavity.

摘要

卵巢癌患者腹水量的增加会加大其发生经体腔转移的风险。虽然已知腹膜播散的常见途径遵循腹水循环的不同路径,但引发这些流动及后续流体剪应力的机制仍未完全明确。在此,我们构建了一个基于患者、边界驱动的计算流体动力学模型,以预测腹水积聚所产生的流体剪应力的上限范围。我们发现,暴露于腹水剪应力下的卵巢癌细胞会表现出增强的G蛋白偶联受体机械信号传导,并通过p38α丝裂原活化蛋白激酶和粘蛋白15调节诱导上皮向间充质样转变。这些发现连同剪切诱导的免疫调节分泌组将升高的剪应力定位为一种促肿瘤信号。总之,本研究表明抑制Gαq蛋白和限制腹水积聚作为克服腹膜腔内机械转导介导的转移的维持策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4e82/11600955/74c8959c4702/nihpp-rs5160301v2-f0001.jpg

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