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Nuclear translocation of FGFR1 and FGF2 in pancreatic stellate cells facilitates pancreatic cancer cell invasion

机译:FGFR1和FGF2在胰腺星状细胞中的核易位促进胰腺癌细胞的侵袭

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摘要

Pancreatic cancer is characterised by desmoplasia, driven by activated pancreatic stellate cells (PSCs). Over-expression of FGFs and their receptors is a feature of pancreatic cancer and correlates with poor prognosis, but whether their expression impacts on PSCs is unclear. At the invasive front of human pancreatic cancer, FGF2 and FGFR1 localise to the nucleus in activated PSCs but not cancer cells. In vitro, inhibiting FGFR1 and FGF2 in PSCs, using RNAi or chemical inhibition, resulted in significantly reduced cell proliferation, which was not seen in cancer cells. In physiomimetic organotypic co-cultures, FGFR inhibition prevented PSC as well as cancer cell invasion. FGFR inhibition resulted in cytoplasmic localisation of FGFR1 and FGF2, in contrast to vehicle-treated conditions where PSCs with nuclear FGFR1 and FGF2 led cancer cells to invade the underlying extra-cellular matrix. Strikingly, abrogation of nuclear FGFR1 and FGF2 in PSCs abolished cancer cell invasion. These findings suggest a novel therapeutic approach, where preventing nuclear FGF/FGFR mediated proliferation and invasion in PSCs leads to disruption of the tumour microenvironment, preventing pancreatic cancer cell invasion.
机译:胰腺癌的特征是由活化的胰腺星状细胞(PSC)驱动的异型增生。 FGF及其受体的过表达是胰腺癌的特征,并且与不良预后相关,但尚不清楚它们的表达是否对PSC产生影响。在人类胰腺癌的侵袭性前沿,FGF2和FGFR1位于活化的PSC中的细胞核中,而不是癌细胞中。在体外,使用RNAi或化学抑制作用抑制PSC中的FGFR1和FGF2,会导致细胞增殖显着降低,而这在癌细胞中是看不到的。在仿生器官型共培养物中,FGFR抑制可防止PSC以及癌细胞侵袭。与载体处理的条件相反,FGFR抑制导致FGFR1和FGF2在细胞质中定位,在这种条件下,带有核FGFR1和FGF2的PSC导致癌细胞侵袭潜在的细胞外基质。令人惊讶的是,PSC中核FGFR1和FGF2的废除消除了癌细胞的入侵。这些发现提示了一种新颖的治疗方法,其中防止核FGF / FGFR介导的PSC中的增殖和侵袭导致肿瘤微环境的破坏,从而防止胰腺癌细胞的侵袭。

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