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首页> 外文期刊>Prostaglandins and Other Lipid Mediators >Expression of CYP 4A omega-hydroxylase and formation of 20-hydroxyeicosatetreanoic acid (20-HETE) in cultured rat brain astrocytes
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Expression of CYP 4A omega-hydroxylase and formation of 20-hydroxyeicosatetreanoic acid (20-HETE) in cultured rat brain astrocytes

机译:CYP 4Aω-羟化酶的表达及大鼠脑星形胶质细胞中20-羟基二十二碳氢硬脂酸(20-HETE)的形成

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Astrocytes secrete vasodilator and vasoconstrictor factors via end feet processes, altering blood flow to meet neuronal metabolic demand. Compared to what is known about the ability of astrocytes to release factors that dilate local cerebral vasculature, very little is known regarding the source and identity of astrocyte derived constricting factors. The present study investigated if astrocytes express CYP 4A a-hydroxylase and metabolize arachidonic acid (AA) to 20-hydroxyeicotetraenoic acid (20-HETE) that regulates K-Ca channel activity in astrocytes and cerebral arterial myocyte contractility. Here we report that cultured astrocytes express CYP 4A2/3 omega-hydroxylase mRNA and CYP 4A protein and produce 20-HETE and the CYP epoxygenase metabolites epoxyeicosatrienoic acids (EETs) when incubated with AA. The production of 20-HETE and EETs was enhanced following stimulation of metabotropic glutamate receptors (mGluR) on the astrocytes. Exogenous application of 20-HETE attenuated, whereas inhibition of 20-HETE production with HET-0016 increased the open state probabilities (NPo) of 71 pS and 161 pS K-Ca single-channel currents recorded from astrocytes. Exposure of isolated cerebral arterial myocytes to conditioned media from cultured astrocytes caused shortening of the length of freshly isolated cerebral arterial myocytes that was not evident following inhibition of astrocyte 20-HETE synthesis and action. These findings suggest that astrocytes not only release vasodilator EETs in response to mGluR stimulation but also synthetize and release the cerebral arterial myocyte constrictor 20-HETE that also functions as an endogenous inhibitor of the activity of two types of K-Ca channel currents found in astrocytes. (C) 2016 Published by Elsevier Inc.
机译:星形胶质细胞通过末端足突分泌血管舒张因子和血管收缩因子,改变血流以满足神经元代谢的需求。与已知的星形胶质细胞释放扩张局部脑血管的因子的能力相比,关于星形胶质细胞收缩因子的来源和特性知之甚少。本研究调查星形胶质细胞是否表达CYP 4Aα-羟化酶并将花生四烯酸(AA)代谢为20-羟基二十碳四烯酸(20-HETE),从而调节星形胶质细胞中K-Ca通道的活性和脑动脉心肌细胞的收缩性。在这里,我们报告培养的星形胶质细胞表达CYP 4A2 / 3ω-羟化酶mRNA和CYP 4A蛋白,并在与AA孵育时产生20-HETE和CYP环氧酶代谢产物环氧二十碳三烯酸(EET)。在星形胶质细胞上刺激代谢型谷氨酸受体(mGluR)后,增加了20-HETE和EET的产生。外源施加20-HETE减弱,而用HET-0016抑制20-HETE产生则增加了星形胶质细胞记录的71 pS和161 pS K-Ca单通道电流的开态概率(NPo)。将分离的脑动脉心肌细胞暴露于培养的星形胶质细胞的条件培养基中会导致新鲜分离的脑动脉心肌细胞的长度缩短,这在抑制星形胶质细胞20-HETE合成和作用后并不明显。这些发现表明,星形胶质细胞不仅响应mGluR刺激释放血管舒张性EET,而且合成并释放脑动脉心肌细胞收缩剂20-HETE,后者也可作为星形胶质细胞中发现的两种K-Ca通道电流活性的内源性抑制剂。 。 (C)2016由Elsevier Inc.发布

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