首页> 外文期刊>Life sciences >Cytoprotective effect of two synthetic enhancer substances, (-)-BPAP and (-)-deprenyl, on human brain capillary endothelial cells and rat PC12 cells.
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Cytoprotective effect of two synthetic enhancer substances, (-)-BPAP and (-)-deprenyl, on human brain capillary endothelial cells and rat PC12 cells.

机译:两种合成增强剂(-)-BPAP和(-)-异戊烯基对人脑毛细血管内皮细胞和大鼠PC12细胞的细胞保护作用。

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Enhancer regulation is a new control mechanism in the brain [Knoll, J., 2003. Enhancer regulation/endogenous and synthetic enhancer compounds: a neurochemical concept of the innate and acquired drives. Neurochemical Research 28(8), 1275-1297]. Enhancer substances exert their effect in bi-modal form with a highly characteristic dose-dependency. Two bell-shaped concentration curves have been published. The one in ultra low concentration range (fM) specific form of enhancer regulation and the other at high concentration (100 microM) non-specific form of enhancer regulation. Catecholaminergic neurons proved to be enhancer-sensitive cells. Since rat PC12 cells and human brain endothelial cells (HBEC) work under catecholaminergic influence, it was reasonable to expect that both the specific and non-specific form of the enhancer regulation might be detectable in these cells. We tested this possibility on these cultured cells under normoxia and hypoxia-reoxygenation. After 1 h hypoxia produced by Argon gas and0, 2, 4, and 20 h reoxygenation the cell loss was calculated by propidiumiodide assay and the cell activity was investigated by Alamar Blue assay colorimetric measurement. The percentages of living and necrotic cells were expressed after propidiumiodide staining. Broad scale concentrations of the two compounds (1 fM-100 microM) were added to the culture strait after the oxygen deprivation. (-)-BPAP and (-)-deprenyl, due to their enhancer effect, exerted a significant cytoprotective effect on both HBECs and PC12 cells. In harmony with Knoll's publications we were able to demonstrate by the aid of (-)-BPAP and (-)-deprenyl that both HBEC and PC12 are enhancer-sensitive cells. We detected the specific form of the enhancer regulation in the ultra low concentration range (fM-pM) and also the non-specific form of the enhancer regulation was visible (mM-microM).
机译:增强子调节是大脑中的新控制机制[Knoll,J.,2003。增强子调节/内源性和合成增强剂化合物:先天和后天驱动的神经化学概念。神经化学研究28(8),1275-1297]。增强剂物质以具有高特征剂量依赖性的双峰形式发挥作用。已经发布了两个钟形的浓度曲线。一种处于超低浓度范围(fM)增强剂调节的特定形式,另一种处于高浓度(100 microM)非特异性形式的增强剂调节。儿茶酚胺能神经元被证明是增强子敏感细胞。由于大鼠PC12细胞和人脑内皮细胞(HBEC)在儿茶酚胺能的影响下工作,因此可以合理预期,在这些细胞中可以检测到增强子调控的特异性和非特异性形式。我们在常氧和低氧-复氧条件下在这些培养的​​细胞上测试了这种可能性。在氩气产生缺氧1小时并分别进行0、2、4和20小时的复氧后,通过丙二酰亚胺测定计算细胞损失,并通过Alamar Blue测定比色法研究细胞活性。丙米二酰亚胺染色后表达了活细胞和坏死细胞的百分比。氧气剥夺后,将两种化合物的大规模浓度(1 fM-100 microM)添加到培养海峡。由于它们的增强作用,(-)-BPAP和(-)-异戊二烯基对HBEC和PC12细胞均具有显着的细胞保护作用。与Knoll的出版物一致,我们能够借助(-)-BPAP和(-)-异戊二烯基证明HBEC和PC12均为增强子敏感细胞。我们在超低浓度范围(fM-pM)中检测到增强子调控的特定形式,并且可见到增强子调控的非特异性形式(mM-microM)。

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