叙利亚仓鼠胚胎细胞生长分化因子转化潜能分析:可逆和不可逆转化。

In vitro & molecular toxicology Pub Date : 1999-01-01
Isfort, Cody, Kerckaert, LeBoeuf
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引用次数: 0

摘要

采用连续暴露7 d和瞬时暴露24 h的叙利亚地鼠胚胎(SHE)细胞转化实验,检测有丝分裂生长分化因子(GDFs)抑癌素M (OM)、表皮生长因子(EGF)、成纤维细胞生长因子4 (FGF-4)、血小板源性生长因子AA (PDGF AA)、PDGF AB和PDGF BB以及抗有丝分裂生长因子β 1 (tgf - β 1)的可逆和不可逆转化潜能。在暴露7天的SHE细胞转化实验中,OM呈阴性,而EGF、FGF-4和PDGF AA呈阳性,形态学转化(MT)具有统计学意义。在24小时瞬时暴露的SHE细胞转化试验中,PDGF AB和PDGF BB(但不包括EGF、FGF-4和PDGF AA)对MT呈阳性,具有统计学意义。tgf - β 1不仅在7天和24小时暴露的SHE细胞转化实验中对MT的诱导呈阴性,而且抑制了自发的背景转化反应。对TGF-beta1转化抑制潜能的研究表明,TGF-beta1能够不可逆地抑制多种转化因子的转化潜能,包括生长因子、Ames试验阳性致癌物和Ames试验阴性致癌物。研究PDGF AA和PDGF BB,以更好地了解可逆和不可逆转化反应。在PDGF AA或PDGF BB处理的SHE细胞中,观察到受体激活、受体磷酸化蛋白和即时早期基因表达的差异。重要的是,用tgf - β 1和PDGF BB(两种不可逆地调节SHE细胞转化的GDFs)处理SHE细胞,改变了DNA甲基化;PDGF AA没有表现出这种作用。综上所述,这些数据表明,SHE细胞转化实验可以用来评估GDFs的转化潜力和激活机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analysis of the Transforming Potential of Growth and Differentiation Factors in Syrian Hamster Embryo Cells: Reversible and Irreversible Transformation.

The mitogenic growth and differentiation factor (GDFs) oncostatin M (OM), epidermal growth factor (EGF), fibroblast growth factor 4 (FGF-4), platelet-derived growth factor AA (PDGF AA), PDGF AB, and PDGF BB and the anti-mitogenic GDF, transforming growth factor beta one (TGF-beta1), were tested in the 7-day continuous exposure and 24-h transient exposure Syrian hamster embryo (SHE) cell transformation assay to determine their reversible and irreversible transforming potential. OM was negative while EGF, FGF-4, and PDGF AA were positive for statistically significant morphological transformation (MT) in the 7-day exposure SHE cell transformation assay. PDGF AB and PDGF BB (but not EGF, FGF-4, and PDGF AA) were positive for statistically significant MT in the 24-h transient exposure SHE cell transformation assays. TGF-beta1 was not only negative for the induction of MT in the 7-day and 24-h exposure SHE cell transformation assays, but suppressed the spontaneous background transformation response. Investigation of the transformation suppression potential of TGF-beta1 demonstrated that TGF-beta1 was able to irreversibly suppress the transformation potential of a variety of transforming agents including growth factors, Ames assay positive carcinogens, and Ames assay negative carcinogens. PDGF AA and PDGF BB were investigated to better understand the reversible and irreversible transformation response. Differences in the receptors activated, the proteins phosphorylated by the receptors, and immediate early gene expressed were observed in SHE cells treated with either PDGF AA or PDGF BB. Importantly, SHE cells treated with TGF-beta1 and PDGF BB, two GDFs, which modulate SHE cell transformation irreversibly, altered DNA methylation; PDGF AA did not demonstrate this effect. Together these data demonstrate that the SHE cell transformation assay can be utilized to evaluate the transformation potential and mechanism of activation of GDFs.

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