首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Microglial neurotransmitter receptors trigger superoxide production in microglia; consequences for microglial-neuronal interactions.
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Microglial neurotransmitter receptors trigger superoxide production in microglia; consequences for microglial-neuronal interactions.

机译:小胶质神经递质受体在小胶质细胞中触发超氧化物的产生。小胶质神经元相互作用的后果。

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摘要

Microglia express three isoforms of the NADPH oxidase, Nox1, Nox2 and Nox4, with the potential to produce superoxide (O(2) ˙(-) ). Microglia also express neurotransmitter receptors, which can modulate microglial responses. In this study, microglial activity of Nox1, Nox2 and Nox4 in primary rat cultured microglia or the rodent BV2 cell line were altered by microglial neurotransmitter receptor modulation. Glutamate, GABA or ATP triggered microglial O(2) ˙(-) production via Nox activation. Nox activation was elicited by agonists of metabotropic mGlu3 receptors and by group III receptors, by GABA(A) but not GABA(B) receptors, and by purinergic P2X(7) or P2Y(2/4) receptors but not P2Y(1) receptors, and inhibited by metabotropic glutamate receptor 5 antagonists. The neurotransmitters also modulated Nox mRNA expression and NADPH activity. The activation of Nox by BzATP or GABA promoted a neuroprotective phenotype whilst the activation of Nox by glutamate promoted a neurotoxic phenotype. Taken together, these data indicate that microglial neurotransmitter receptors can signal via Nox to promote neuroprotection or neurotoxicity. This has implications for the subsequent neurotoxic profile of microglia when neurotransmitter levels may become skewed in neurodegeneration.
机译:小胶质细胞表达NADPH氧化酶的三种同工型,Nox1,Nox2和Nox4,具有产生超氧化物的潜力(O(2)˙(-))。小胶质细胞还表达神经递质受体,可以调节小胶质细胞反应。在这项研究中,小胶质神经递质受体调节改变了原代大鼠培养的小胶质细胞或啮齿动物BV2细胞系中Nox1,Nox2和Nox4的小胶质细胞活性。谷氨酸,GABA或ATP通过NOx激活触发小胶质O(2)˙(-)的生产。代谢型mGlu3受体和III组受体的激动剂,GABA(A)而非GABA(B)受体,嘌呤能P2X(7)或P2Y(2/4)受体而非P2Y(1)引起Nox激活。受体,并被代谢型谷氨酸受体5拮抗剂抑制。神经递质还调节Nox mRNA表达和NADPH活性。 BzATP或GABA激活Nox促进了神经保护表型,而谷氨酸激活Nox则促进了神经毒性表型。综合来看,这些数据表明小胶质神经递质受体可以通过Nox发出信号,从而促进神经保护或神经毒性。当神经递质水平可能在神经退行性畸变中倾斜时,这对小胶质细胞的后续神经毒性特征具有影响。

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