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Plasma serotonin levels and the platelet serotonin transporter.

机译:血浆5-羟色胺水平和血小板5-羟色胺转运蛋白。

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Serotonin (5HT) is a platelet-stored vasoconstrictor. Altered concentrations of circulating 5HT are implicated in several pathologic conditions, including hypertension. The actions of 5HT are mediated by different types of receptors and terminated by a single 5HT transporter (SERT). Therefore, SERT is a major mechanism that regulates plasma 5HT levels to prevent vasoconstriction and thereby secure a stable blood flow. In this study, the response of platelet SERT to the plasma 5HT levels was examined within two models: (i) in subjects with chronic hypertension or normotension; (ii) on platelets isolated from normotensive subjects and pretreated with 5HT at various concentrations. The platelet 5HT uptake rates were lower during hypertension due to a decrease in Vmax with a similar Km; also, the decrease in Vmax was primarily due to a decrease in the density of SERT on the platelet membrane, with no change in whole cell expression. Additionally, while the platelet 5HT content decreased 33%, the plasma 5HTcontent increased 33%. Furthermore, exogenous 5HT altered the 5HT uptake rates by changing the density of SERT molecules on the plasma membrane in a biphasic manner. Therefore, we hypothesize that in a hypertensive state, the elevated plasma 5HT levels induces a loss in 5HT uptake function in platelets via a decrease in the density of SERT molecules on the plasma membrane. Through the feedback effect of this proposed mechanism, plasma 5HT controls its own concentration levels by modulating the uptake properties of platelet SERT.
机译:血清素(5HT)是血小板存储的血管收缩剂。循环中5HT浓度的改变与多种病理状况有关,包括高血压。 5HT的作用由不同类型的受体介导,并由单个5HT转运蛋白(SERT)终止。因此,SERT是调节血浆5HT水平以防止血管收缩从而确保稳定的血流的主要机制。在这项研究中,在两种模型中检查了血小板SERT对血浆5HT水平的反应:(i)患有慢性高血压或正常血压的受试者; (ii)从正常血压受试者中分离出的血小板上,并用不同浓度的5HT预处理。高血压期间血小板的5HT摄取率较低,这是由于Kmax相似时Vmax降低所致;同样,Vmax的降低主要是由于血小板膜上SERT密度的降低,而全细胞表达没有变化。此外,虽然血小板5HT含量降低了33%,但血浆5HT含量却提高了33%。此外,外源性5HT通过以两相方式改变质膜上SERT分子的密度来改变5HT的吸收速率。因此,我们假设在高血压状态下,升高的血浆5HT水平通过质膜上SERT分子密度的降低诱导血小板5HT摄取功能的丧失。通过这种机制的反馈效应,血浆5HT通过调节血小板SERT的吸收特性来控制其自身的浓度水平。

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