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Differences in the regulation of BDNF and NGF synthesis in cultured neonatal rat astrocytes.

机译:在培养的新生大鼠星形胶质细胞中BDNF和NGF合成调控的差异。

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Using a new brain-derived neurotrophic factor (BDNF) specific enzyme-immunoassay, we determined the basal cellular content of BDNF protein in neonatal rat astrocytes in primary culture, thus confirming the ability of astrocytes to synthesize BDNF in addition to nerve growth factor (NGF). We subsequently monitored the influence of different pharmacological agents: neurotransmitter receptor agonists, cytokines, and second messenger up-regulators, on the synthesis of BDNF and NGF. Marked differences in the regulation of their synthesis by the above pharmacological agents were observed in our study. The basal cellular levels of BDNF protein in cultured neonatal rat cortical and cerebellar astrocytes were [Formula: see text] and [Formula: see text] pg BDNF/mg cell protein, respectively, and differ significantly between astrocytes from different brain regions, whereas NGF levels were the same ( [Formula: see text] and [Formula: see text] pg NGF/mg cell protein, respectively). Screening different neurotransmitter systems for their influence on BDNF and NGF synthesis in cortical astrocytes revealed that dopamine (0.15mM) is a potent up-regulator of BDNF protein synthesis in astrocytes, while kainic acid (50microM) and histamine (1microM) did not raise the cellular level of BDNF protein. Dopamine had no influence on NGF synthesis, while kainic acid caused minor, and histamine marked, elevation of NGF cellular content. Tumor necrosis factor-alpha (30ng/ml) and interleukin-1beta (10U/ml) treatments did not influence BDNF synthesis, whereas they markedly increased NGF protein cellular level. We also confirmed (using forskolin (20microM) and phorbol 12-myristate 13-acetate (TPA) (100nM)) that adenylate cyclase and protein kinase C participate in the downstream signaling responsible for the stimulation of BDNF synthesis, whereas in the regulation of NGF synthesis only the participation of protein kinase C was confirmed. Our results indicate that astrocyte-derived neurotrophins could play a role in distinct brain functions under physiological conditions and in the pathogenesis as well as possible treatment of different neurodegenerative disorders.
机译:使用一种新的脑源性神经营养因子(BDNF)特异性酶免疫法,我们确定了原代培养的新生大鼠星形胶质细胞中BDNF蛋白的基础细胞含量,从而证实了星形胶质细胞除了神经生长因子(NGF)之外还具有合成BDNF的能力。 )。随后,我们监测了不同药理剂(神经递质受体激动剂,细胞因子和第二信使上调剂)对BDNF和NGF合成的影响。在我们的研究中观察到上述药理剂在其合成调节方面存在明显差异。培养的新生大鼠皮质和小脑星形胶质细胞中BDNF蛋白的基础细胞水平分别为[公式:参见文本]和[公式:参见文本] pg BDNF / mg细胞蛋白,并且来自不同大脑区域的星形胶质细胞之间存在显着差异。水平是相同的([配方:参见文本]和[配方:参见文本] pg NGF / mg细胞蛋白)。筛选不同的神经递质系统对皮质星形胶质细胞中BDNF和NGF合成的影响后发现,多巴胺(0.15mM)是星形胶质细胞中BDNF蛋白合成的有效上调剂,而海藻酸(50microM)和组胺(1microM)却没有升高BDNF蛋白的细胞水平。多巴胺对NGF的合成没有影响,而海藻酸则导致NGF细胞含量的升高,而组胺明显升高。肿瘤坏死因子-α(30ng / ml)和白细胞介素-1β(10U / ml)处理不影响BDNF合成,而它们却明显增加了NGF蛋白的细胞水平。我们还证实了(使用毛喉素(20microM)和佛波醇12-肉豆蔻酸酯13-乙酸酯(TPA)(100nM)),腺苷酸环化酶和蛋白激酶C参与了下游信号传导,负责刺激BDNF合成,而参与了NGF的调节合成仅证实了蛋白激酶C的参与。我们的结果表明,星形胶质细胞源性神经营养蛋白可能在生理条件下的独特脑功能,发病机理以及不同神经退行性疾病的可能治疗中发挥作用。

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