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uPAR mediates anticancer activity of PEDF.

机译:uPAR介导PEDF的抗癌活性。

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Osteosarcoma (OS) is a cancer which afflicts the bone, ending in usually fatal lung metastasis mainly in teenagers and adolescents. We have recently shown that PEDF is one biological that has multiple anti-OS activity. In parallel, we have also shown using rodent cells, the beneficial effects of downregulation of uPAR against OS. Here, we provide further proof of such effects of uPAR downregulation using human OS cells and combine this with PEDF treatment. We describe the involvement of uPAR with activity of PEDF. In silico, PEDF did not bind to uPA and thus did not attenuate its activity. In the presence of exogenous PEDF, both uPA, its receptor and FAK localize intracellularly. Blocking of uPA and uPAR on the cell surface increased the binding of PEDF, whether endogenous or exogenous. In clinical specimens of OS, there was mutually exclusive expression of PEDF and uPAR at the growing edge of the tumor. Incubation of cells with PEDF and a uPAR antibody led to an increased reduction in invasion of cells through Matrigel, and a heightened apoptotic signal. In vivo, treatment of human OS cells with both PEDF and uPAR DNAzyme resulted in greater primary tumor growth, pulmonary metastasis inhibition and decreased osteolysis. Areas of necrosis were noted in the PEDF-administered group of animals. This study shows an association between two very important systems involved in tumor progression and highlights the possibility that a combined approach of PEDF exposure and uPAR knockdown may lead to a better targeted outcome against OS.
机译:骨肉瘤(OS)是一种折磨骨骼的癌症,通常以致命的肺转移为主,主要发生在青少年中。我们最近显示,PEDF是一种具有多种抗OS活性的生物。同时,我们还显示了使用啮齿动物细胞时,uPAR对OS的下调的有益作用。在这里,我们提供了使用人OS细胞对uPAR下调的这种作用的进一步证明,并将其与PEDF处理结合使用。我们描述了uPAR与PEDF活性的关系。在计算机上,PEDF不与uPA结合,因此不会减弱其活性。在存在外源PEDF的情况下,uPA,其受体和FAK都位于细胞内。 uPA和uPAR在细胞表面的封闭增加了PEDF的结合,无论是内源的还是外源的。在OS的临床标本中,PEDF和uPAR在肿瘤的生长边缘相互表达。用PEDF和uPAR抗体孵育细胞会导致细胞通过Matrigel侵袭的减少减少,并导致凋亡信号增强。在体内,同时用PEDF和uPAR DNAzyme处理人OS细胞导致更大的原发肿瘤生长,肺转移抑制并减少骨溶解。在使用PEDF的动物组中发现了坏死区域。这项研究显示了涉及肿瘤进展的两个非常重要的系统之间的关联,并强调了PEDF暴露和uPAR组合的组合方法可能导致针对OS更好的靶向结果的可能性。

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