Peulve P, Laquerriere A, Paresy M, Hemet J, Tadie M
Pathology Laboratory, Charles Nicolle Hospital, Rouen, France.
Exp Cell Res. 1994 Oct;214(2):543-50. doi: 10.1006/excr.1994.1292.
Mitotically active Schwann cells isolated from adult rat sciatic nerve segments were cultivated, using a bivariate BrdU/DNA flow cytometry analysis, to test the effect of b-FGF (10 ng/ml), alpha-MSH (10 ng/ml), NGF (10 ng/ml), PDGF-AB (10 ng/ml), and TGF-beta 1 (10 ng/ml) on the cell cycle. Compared to control or cholera toxin-treated cultures, no significant differences (P < 0.05; Newmann-Keuls test) were observed in the proportion of G0G1 cells, S cells, G2M cells, and in the LI when alpha-MSH, NGF, PDGF-AB, or TGF-beta 1 were present. The S phase duration varied from 6.16 +/- 0.24 to 7.86 +/- 2.6 h, and the deduced potential doubling time was estimated at between 46.70 +/- 7.09 and 56.05 +/- 7.55 h. In contrast, when b-FGF was added to the culture, the cell cycle was significantly modified, and the proportion of G0G1 cells decreased from 68-77% to 59-64%, while the proportion of S cells increased from 14-16% to 24.0-26.4%. Although S phase duration was not significantly changed (6.02 +/- 0.36 h), the 1.7- to 2.8-fold LI increase reduced the potential doubling time to 25.99 +/- 6.13 h. We conclude from these results that only b-FGF-induced adult rat Schwann cells dramatically reenter in cell cycle and that this growth factor may be an axonally derived signal-promoting mitogenesis after nerve injury.
从成年大鼠坐骨神经节段分离出有丝分裂活跃的雪旺细胞,采用双变量BrdU/DNA流式细胞术分析,以检测碱性成纤维细胞生长因子(b-FGF,10纳克/毫升)、α-促黑素(α-MSH,10纳克/毫升)、神经生长因子(NGF,10纳克/毫升)、血小板衍生生长因子AB(PDGF-AB,10纳克/毫升)和转化生长因子β1(TGF-β1,10纳克/毫升)对细胞周期的影响。与对照或霍乱毒素处理的培养物相比,当存在α-MSH、NGF、PDGF-AB或TGF-β1时,在G0G1期细胞、S期细胞、G2M期细胞的比例以及标记指数(LI)方面未观察到显著差异(P<0.05;纽曼-考尔斯检验)。S期持续时间在6.16±0.24至7.86±2.6小时之间变化,推导的潜在倍增时间估计在46.70±7.09至56.05±7.55小时之间。相比之下,当向培养物中添加b-FGF时,细胞周期发生显著改变,G0G1期细胞的比例从68%-77%降至59%-64%,而S期细胞的比例从14%-16%增至24.0%-26.4%。尽管S期持续时间没有显著变化(6.02±0.36小时),但LI增加1.7至2.8倍使潜在倍增时间缩短至25.99±6.13小时。从这些结果我们得出结论,只有b-FGF能诱导成年大鼠雪旺细胞显著重新进入细胞周期,并且这种生长因子可能是神经损伤后促进有丝分裂的轴突衍生信号。