PO.TB10.18 · 肿瘤生物学
使用离体微流控模型鉴定剪切应力下卵巢肿瘤细胞附着于腹膜间皮细胞的分子调控因子
Identifying molecular regulators of ovarian tumor cell attachment to peritoneal mesothelial cells under shear stress using an ex-vivo microfluidic model
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摘要 Abstract
中文摘要
卵巢癌转移的独特之处在于原发肿瘤与最初的转移部位——腹膜间皮层——共处同一体腔。卵巢癌的早期扩散涉及肿瘤细胞从原发卵巢肿瘤脱落,随后在腹腔内循环,附着并侵袭覆盖腹腔器官的间皮。在腹膜迁移过程中,卵巢肿瘤细胞还会暴露于腹水中,而这种液体流动对肿瘤细胞附着于间皮的影响尚不明确。为解决这一问题,我们开发并表征了一种稳健的微流控装置,将卵巢肿瘤细胞在液体流动存在下对间皮细胞的附着纳入其中。间皮细胞在微流控装置内培养48小时,卵巢癌细胞以固定流速引入7分钟。通过活细胞视频成像和分析,我们能够量化肿瘤细胞黏附的程度。我们发现卵巢肿瘤细胞分泌的因子显著增加了肿瘤细胞对间皮的黏附。为鉴定调控这种细胞-细胞通讯的候选分子,我们对经卵巢肿瘤细胞培养上清液处理的间皮细胞进行了批量mRNA测序,并对卵巢肿瘤细胞分泌的培养基进行了蛋白质组学分析。通过这些分析,我们鉴定出众多潜在的候选分子。其中一种分子cadherin-12,在体外和体内响应肿瘤细胞培养上清液暴露时,在间皮细胞中均下调。在小鼠腹膜间皮细胞中对cadherin-12进行基因耗竭,导致间皮屏障功能改变、成纤维细胞分化以及肿瘤细胞对间皮黏附的增加。我们的结果表明,cadherin-12在维持腹膜间皮完整性方面发挥作用,并在早期卵巢癌转移过程中受卵巢肿瘤细胞分泌的某些因子操纵。
查看英文原文 English abstract
Ovarian cancer metastasis is unique in that the primary tumor and the initial metastatic site, the peritoneal mesothelial layer, share the same cavity. Early spread of ovarian cancer involves tumor cell shedding from primary ovarian tumors, which then circulate throughout the abdominal cavity to attach and invade mesothelium covering the abdominal organs. During peritoneal migration, ovarian tumor cells are also exposed to ascitic fluid, and the influence of this fluid flow on tumor cell attachment to mesothelium is poorly understood. To address this problem, we developed and characterized a robust microfluidic device incorporating ovarian tumor cell attachment to mesothelial cells in the presence of fluid flow. Mesothelial cells are cultured within the microfluidic device for 48 hours, and ovarian cancer cells are introduced at fixed flow rates for 7 minutes. Using live cell video imaging and analysis, we can quantify the extent of tumor cell adhesion. We find that factor(s) secreted by ovarian tumor cells significantly increase tumor cell adhesion to mesothelium. To identify candidate molecules modulating this cell-cell communication, we performed bulk mRNA sequencing of mesothelial cells treated with ovarian tumor cell culture supernatant and proteomics of the ovarian tumor cell secreted media. From these analyses, we have identified numerous potential candidate molecules. One of these molecules, cadherin-12, is downregulated in mesothelial cells in response to tumor cell culture supernatant exposure both in vitro and in vivo. Genetic depletion of cadherin-12 in mouse peritoneal mesothelial cells results in altered mesothelial barrier function, fibroblastic differentiation, and increased tumor cell adhesion to mesothelium. Our results suggest that cadherin-12 plays a role in maintaining peritoneal mesothelial integrity and is manipulated by some factor(s) secreted by ovarian tumor cells during early ovarian cancer metastasis.
利益披露 Disclosure
J. A. Martin, None..
B. Baker, None..
V. Morikis, None..
A. DiMauro, None..
G. D. Longmore, None..
W. R. Grither, None.