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骨形态发生蛋白(BMP6和BMP7)可增强神经营养因子在低血糖期间对培养的隔区胆碱能神经元的保护作用。

Bone morphogenetic proteins (BMP6 and BMP7) enhance the protective effect of neurotrophins on cultured septal cholinergic neurons during hypoglycemia.

作者信息

Nonner D, Barrett E F, Kaplan P, Barrett J N

机构信息

Department of Physiology and Biophysics, University of Miami Medical School, Miami, USA Creative Biomolecules, Boston, USA.

出版信息

J Neurochem. 2001 Apr;77(2):691-9. doi: 10.1046/j.1471-4159.2001.00273.x.

Abstract

The effects of two bone morphogenetic proteins (BMP6, BMP7), alone and in combination with neurotrophins, were tested on cultures of embryonic day 15 rat septum. A week-long exposure to BMP6 or BMP7 in the optimal concentration range of 2-5 n M increased the activity of choline acetyltransferase (ChAT) by 1.6-2-fold, in both septal and combined septal-hippocampal cultures. The increase in ChAT activity reached significance after 4 days and continued to increase over an 11-day exposure. Under control culture conditions neither BMP significantly altered the number of cholinergic neurons, and BMP effects on ChAT activity were less than linearly additive with those of nerve growth factor. The effects of BMPs and BMP + neurotrophin combinations were also assayed under two stress conditions: low-density culture and hypoglycemia. In low-density cultures BMPs and BMP + neurotrophin combinations preserved ChAT activity more effectively than neurotrophins alone. During 24 h hypoglycemic stress, BMPs alone did not preserve ChAT activity, but BMP + neurotrophin combinations preserved ChAT activity much more effectively than neurotrophins alone. These results demonstrate that BMP6 and BMP7 enhance ChAT activity under control and low-density stress conditions, and that during a hypoglycemic stress their trophic effect requires and complements that exerted by neurotrophins.

摘要

研究了两种骨形态发生蛋白(BMP6、BMP7)单独及与神经营养因子联合作用于胚胎第15天大鼠中隔培养物的效果。在2 - 5 nM的最佳浓度范围内,对中隔培养物以及中隔 - 海马联合培养物进行为期一周的BMP6或BMP7处理,可使胆碱乙酰转移酶(ChAT)的活性提高1.6至2倍。4天后ChAT活性的增加达到显著水平,并在11天的处理过程中持续上升。在对照培养条件下,两种BMP均未显著改变胆碱能神经元的数量,且BMP对ChAT活性的影响与神经生长因子的影响并非线性相加。还在两种应激条件下检测了BMP及BMP + 神经营养因子组合的效果:低密度培养和低血糖。在低密度培养中,BMP及BMP + 神经营养因子组合比单独使用神经营养因子更有效地保留了ChAT活性。在24小时低血糖应激期间,单独使用BMP不能保留ChAT活性,但BMP + 神经营养因子组合比单独使用神经营养因子更有效地保留了ChAT活性。这些结果表明,BMP6和BMP7在对照和低密度应激条件下增强了ChAT活性,并且在低血糖应激期间,它们的营养作用需要神经营养因子发挥的作用并与之互补。

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