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Real-Time Monitoring of Chemical Transmission in Slices of the Murine Adrenal Gland

机译:实时监测小鼠肾上腺切片中化学物质的传输

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摘要

The real-time electrochemical detection of catecholamine secretion from murine adrenal slices using fast-scan cyclic voltammetry (FSCV) and amperometry at carbon fiber microelectrodes is described. Bright-field and immunofluorescent microscopy supported that chromaffin cells in the adrenal medulla are organized into clusters and positively stain for tyrosine hydroxylase confirming that they are catecholaminergic. Spontaneous exocytotic catecholamine events were observed inside chromaffin cell clusters with both FSCV and amperometry and were modulated by the nicotinic acetylcholine receptor antagonist hexamethonium and low extracellular calcium. Reintroduction of extracellular calcium and pressure ejection of acetylcholine caused the frequency of spikes to increase back to predrug levels. Electrical stimulation caused the synchronous secretion from multiple cells within the gland, which were modulated by nicotinic acetylcholine receptors but not muscarinic receptors or gap junctions. Furthermore, electrically stimulated release was abolished with perfusion of low extracellular calcium or tetrodotoxin, indicating that the release requires electrical excitability. An extended waveform was used to study the spontaneous and stimulated release events to determine their chemical content by FSCV. Consistent with total content analysis and immunohistochemical studies, about two thirds of the cells studied spontaneously secreted epinephrine, whereas one third secreted norepinephrine. Whereas adrenergic sites contained mostly epinephrine during electrical stimulation, noradrenergic sites contained a mixture of the catecholamines showing the heterogeneity of the adrenal medulla.
机译:描述了在碳纤维微电极上使用快速扫描循环伏安法(FSCV)和安培法实时电化学检测鼠肾上腺切片中儿茶酚胺的分泌。明视野和免疫荧光显微镜法支持肾上腺髓质中的嗜铬细胞被组织成簇,并对酪氨酸羟化酶染色呈阳性,证实它们是儿茶酚胺能的。通过FSCV和安培法在嗜铬细胞簇中观察到自发的胞外儿茶酚胺事件,并受烟碱乙酰胆碱受体拮抗剂六甲铵和低细胞外钙调节。细胞外钙的重新引入和乙酰胆碱的压力喷射导致刺突的频率增加回到前药水平。电刺激引起腺内多个细胞的同步分泌,这些分泌受烟碱乙酰胆碱受体调节,但不受毒蕈碱受体或间隙连接调节。此外,低细胞外钙或河豚毒素的灌注消除了电刺激释放,表明该释放需要电兴奋性。使用扩展波形来研究自发和刺激释放事件,以通过FSCV确定其化学含量。与总含量分析和免疫组织化学研究一致,约三分之二的细胞自发分泌肾上腺素,而三分之一则分泌去甲肾上腺素。肾上腺素能位点在电刺激过程中主要包含肾上腺素,而去甲肾上腺素能位点包含儿茶酚胺混合物,显示肾上腺髓质异质性。

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