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糖氧剥夺对大鼠脂肪干细胞自噬和成脂的影响
引用本文:袁志坚,吴小瑜,何文涓,丁亚明,钟晓春.糖氧剥夺对大鼠脂肪干细胞自噬和成脂的影响[J].实验动物科学,2021,38(6):11.
作者姓名:袁志坚  吴小瑜  何文涓  丁亚明  钟晓春
摘    要:目的 研究大鼠脂肪干细胞( adipose derived stem cells,ADSC)及糖氧剥夺下,细胞自噬和对诱导分化成脂的影响。 方法常规制备 ADSC, 设 置 对 照 组 ( G 组 ) 、 少 糖 组 ( SG 组 ) 、 缺 氧 组 ( G + CoCl2 组 ) 、 缺氧少糖组( SG+CoCl2 组)和自噬阳性对照组( EBSS 组) 。 设置不同培养时间,MTT 检测各组 ADSC 存活情况;Western blot 分析细胞自噬及成脂诱导油红“ O”染色与比色。 结果 不同培养时间,ADSC 细胞均可增殖。 培养 24 h,各组细胞之间无差别( P>0. 05) ,但培养 48 h 和 72 h,G 组细胞增殖明显高于其它三组( SG 组、G + CoCl2 组和 SG+CoCl2 组) ,P<0.05;Western blot 分 析, EBSS 组、G 组 和 SG 组 的自噬相关蛋白 Ⅰ 型 ( LC3-Ⅰ ) 明显弱于自噬相关蛋白Ⅱ 型( LC3-Ⅱ ) ,且 G+CoCl2 组和 SG+CoCl2 组的 LC3-Ⅰ 明显高于 EBSS 组;成脂诱导实验中,G 组油红“ O” 比色值最高,与其它组比较均有统计学差异( P<0. 05) 。 结论 ADSC 具有较强的细胞自噬作用,推测在缺糖缺氧条件下,通过抑制细胞自噬,降低 ADSC 存活率以及诱导分化成脂率。

关 键 词:大鼠脂肪干细胞  细胞自噬  缺糖  缺氧  

Effects of Oxygen Glucose Deprivation on Autophagy and Lipogenesis of Rat Adipose Stem Cells
YUAN Zhijian,WU Xiaoyu,HE Wenjuan,DING Yaming,ZHONG Xiaochun.Effects of Oxygen Glucose Deprivation on Autophagy and Lipogenesis of Rat Adipose Stem Cells[J].Shiyan Dongwu Kexue,2021,38(6):11.
Authors:YUAN Zhijian  WU Xiaoyu  HE Wenjuan  DING Yaming  ZHONG Xiaochun
Abstract:Objective To study the autophagy of rat adipose derived stem cells ( ADSC) and effects of oxygen glucose deprivation on autophagy and lipogenesis of rat ADSC. Method The ADSC were prepared conventionally and set up as the control group ( group G) , the low glucose group ( group SG) , the hypoxia group ( group G + CoCl2 ) , the hypoxia & low glucose group ( group SG + CoCl2 ) and the autophagy positive control group ( group EBSS) . In different culture periods, cell viability was measured by MTT assays, the autophagy by Western blot and adipogenic induction, the oil red O staining and its OD value were performed. Result The ADSC in all groups were cultured and survived for 24 hours without difference ( P>0. 05) in different culture periods. But at 48 and 72 hours, the cell proliferation of the group G was significantly higher than that of the other 3 groups( P<0. 05) . By Western blot, the protein expression of LC3-Ⅰ was significantly less than that of LC3-Ⅱ in groups G,SG,SG+CoCl2 and EBSS. However, the LC3-Ⅰ s in groups G+CoCl2 and SG+CoCl2 were much higher than that in the group EBSS. In the test of adipogenesis, the OD value of the group G was the highest, which was statistically different ( P < 0. 05 ) , compared with other groups. Conclusion The rat ADSC may have a high level of autophagy. It was suggested that under the circumstance of sugar deficiency and hypoxia, inhibiting autophagy will hinder the survival and lipogenesis of rat ADSC.
Keywords:rat adipose derived stem cells  autophagy  sugar deficiency  hypoxia  
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