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生长激素对培养的下丘脑细胞发育及衰老的调控性影响
引用本文:梅俊,程卓刚,谢雯.生长激素对培养的下丘脑细胞发育及衰老的调控性影响[J].西安交通大学学报(医学版),1997(3).
作者姓名:梅俊  程卓刚  谢雯
作者单位:生理学教研室!西安,710061,生理学教研室!西安,710061,内蒙古金宇集团,生理学教研室!西安,710061
基金项目:国家自然科学基金!39170285
摘    要:实验用不同浓度的生长激素(h-GH)作用于培养的下丘脑神经细胞,观察其对细胞发育和衰老的影响,发现h-GH能促进培养细胞存活、发育,增加突起长度和细胞平均面积,并促进网络的形成,较高浓度的h-GH(5~10mg/L)均导致发育期及成熟期中的培养细胞寿命明显缩短,较低浓度(1mg/L)h-GH对发育中的细胞寿命无明显作用,但能显著延长成熟期细胞的寿命。适量h-GH有延长细胞寿命的作用,而过量则促进细胞迅速出现衰老特征性变化;如大量脂褐素形成,神经元纤维增生及线粒体肿胀、变性,跑体中出现空泡,细胞器减少等细胞衰老常见的特征。这些病理性变化常为衰老神经元的特征性表现。因此h-GH等因子在细胞蛋白质代谢中的平衡失调,可能在细胞衰老发展过程中起一定作用。

关 键 词:下丘脑  生长激素  细胞培养  衰老

THE MODULATION EFFECT OF GROWTH HORMONE ON THE DEVELOPMENT AND AGING PROCESS OF THE CURTURED NEURON OF HYPOTHALAMUS IN RATS
Mei Jun, Cheng Zhuogang, Xie Wen.THE MODULATION EFFECT OF GROWTH HORMONE ON THE DEVELOPMENT AND AGING PROCESS OF THE CURTURED NEURON OF HYPOTHALAMUS IN RATS[J].Journal of Xi‘an Jiaotong University:Medical Sciences,1997(3).
Authors:Mei Jun  Cheng Zhuogang  Xie Wen
Institution:Department of Physiology
Abstract:Using different doses of h-GH, we observed the effects on the developmental and aging process of curtured neuron of hypothalamus in rats.It was indicated that h-GH could improve the sur-viving and development of the neuron, increased the length of the neurite and mean diameter of the cell and benifited the formation of their networks. The higher doses of h-GH (5-10mg/L) shorted the life span of the neuron in the developmental and mature period significantly, and the lower dose (lmg/L)tured neuron but increased the life span of the ma-tured one. The suitable doses of h-GH increased the life span but the higher doses could induce some ag-ing characters of the neuron promptly such as lipo-fucin, neurofibrily, swelling and degeneration of the mitochondria, vacuole within the neuron, decrease of celluar organ, etc. These pathological changes are the characteristics of the aging of neuron, indi-cating that h-GH unbalance in the metabolism of protein in the cell might evoke some effect on the aging process of the neuron.
Keywords:hypothalamusl growth hormone  cell culture  aging
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