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Role of pancreatic stellate cells in pancreatic cancer metastasis.

机译:胰腺星状细胞在胰腺癌转移中的作用。

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摘要

Pancreatic stellate cells (PSCs) produce the stromal reaction in pancreatic cancer (PC), and their interaction with cancer cells facilitates cancer progression. This study investigated the role of human PSCs (hPSCs) in the metastatic process and tumor angiogenesis using both in vivo (orthotopic model) and in vitro (cultured PSC and PC cells) approaches. A sex mismatch study (injection of male hPSCs plus female PC cells into the pancreas of female mice) was conducted to determine whether hPSCs accompany cancer cells to metastatic sites. Metastatic nodules were examined by fluorescent in situ hybridization for the presence of the Y chromosome. Angiogenesis was assessed by i) immunostaining tumors for CD31, an endothelial cell marker; and ii) quantifying human microvascular endothelial cell (HMEC-1) tube formation in vitro on exposure to conditioned media from hPSCs. Transendothelial migration was assessed in vitro by examining the movement of fluorescently labeled hPSCs through an endothelial cell monolayer. Human PSCs i) were found in multiple metastatic sites in each mouse injected with male hPSCs plus female PC cells; ii) increased CD31 expression in primary tumors from mice injected with MiaPaCa-2 and hPSCs and stimulated tube formation by HMEC-1 in vitro; and iii) exhibited transendothelial migration that was stimulated by cancer cells. Human PSCs accompany cancer cells to metastatic sites, stimulate angiogenesis, and are able to intravasate/extravasate to and from blood vessels.
机译:胰腺星状细胞(PSC)在胰腺癌(PC)中产生基质反应,它们与癌细胞的相互作用促进了癌症的进展。本研究使用体内(原位模型)和体外(培养的PSC和PC细胞)方法研究了人PSC(hPSC)在转移过程和肿瘤血管生成中的作用。进行了一项性别不匹配研究(将雄性hPSC加上雌性PC细胞注入雌性小鼠的胰腺中),以确定hPSC是否伴随癌细胞转移至转移部位。通过荧光原位杂交检查转移结节中Y染色体的存在。通过以下方法评估血管生成:i)对CD31(一种内皮细胞标记物)进行免疫染色的肿瘤; ii)在暴露于hPSC的条件培养基中后,在体外量化人微血管内皮细胞(HMEC-1)管的形成。通过检查荧光标记的hPSCs通过内皮细胞单层的运动,体外评估了内皮迁移。在每只注射了雄性hPSC和雌性PC细胞的小鼠的多个转移部位发现了人类PSC。 ii)注射MiaPaCa-2和hPSC的小鼠原发性肿瘤中CD31表达增加,并通过HMEC-1刺激体外管形成; iii)表现出被癌细胞刺激的跨内皮迁移。人PSC伴随癌细胞到转移部位,刺激血管生成,并能够在血管内血管内/外渗。

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