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Modulation of Motility and Proliferation of Glioma Cells by Hepatocyte Growth Factor

机译:肝细胞生长因子对神经胶质瘤细胞运动和增殖的调节

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摘要

Invasive proliferation is a critical biological characteristic of gliomas. We evaluated the activities of hepatocyte growth factor (HGF) on proliferation and motility of glioma cells, comparing them with the effects of other growth factors (EGF, bFGF, PDGF‐BB, TGF‐βl). Seven primary culture lines all expressed c‐met and HGF mRNA, and secreted HGF. HGF stimulated 3H‐thymidine uptake of every glioma cell line (30 to 70% upregulation). Boyden chamber assay and scattering assay revealed that HGF promoted cell motility with chemokinetic and strong chemotactic activities. Concentric circle assay showed that HGF promoted two‐dimensional expansion (proliferation and motility) most strongly among the growth factors studied. Further, we analyzed 23 paraffin‐embedded sections of surgically resected gliomas (7 grade II, 8 grade III, and 8 grade IV) by immunohistochemistry. Expression of HGF and Met increased with malignant progression of gliomas, suggesting that gliomas stimulated their invasive proliferation by autocrine HGF production. Neurons and vasculature were HGF‐positive, and Met‐positive glioma cells gathered around them. The data indicate that neurons and vasculature, which are the main tracks of glioma invasion, augment chemotactic invasion and proliferation of gliomas by paracrine HGF secretion. Clearly HGF plays a critical role in invasive proliferation of glioma cells and it is therefore a candidate target of therapeutic intervention.
机译:侵袭性增殖是神经胶质瘤的关键生物学特征。我们评估了肝细胞生长因子(HGF)对神经胶质瘤细胞增殖和运动的活性,并将其与其他生长因子(EGF,bFGF,PDGF-BB,TGF-β1)的作用进行了比较。七个主要培养系均表达c-met和HGF mRNA,并分泌HGF。 HGF刺激每个神经胶质瘤细胞系的 3 H-胸苷摄取(上调30%至70%)。博伊登室分析和散射分析表明,HGF具有化学动力学和强大的趋化活性促进细胞运动。同心圆分析表明,在研究的生长因子中,HGF最能促进二维扩展(增殖和运动)。此外,我们通过免疫组织化学分析了手术切除的神经胶质瘤的23个石蜡包埋切片(7个II级,8个III级和8个IV级)。 HGF和Met的表达随神经胶质瘤的恶性进展而增加,表明神经胶质瘤通过自分泌HGF的产生刺激其侵袭性增殖。神经元和脉管系统为HGF阳性,Met阳性神经胶质瘤细胞聚集在它们周围。数据表明,作为神经胶质瘤入侵的主要途径的神经元和脉管系统通过旁分泌HGF的分泌增强了神经胶质瘤的趋化侵袭和增殖。显然,HGF在神经胶质瘤细胞的侵入性增殖中起关键作用,因此它是治疗干预的候选靶标。

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