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β-苯乙胺和安非他命对豚鼠主动脉的非肾上腺素能血管收缩和舒张作用——用 L-NAME 和 NO 清除剂测定的一氧化氮的作用。

Non-adrenergic vasoconstriction and vasodilatation of guinea-pig aorta by β-phenylethylamine and amphetamine - Role of nitric oxide determined with L-NAME and NO scavengers.

机构信息

Division of Pharmacology, Cardiff School of Pharmacy & Pharmaceutical Sciences, Cardiff University, King Edward Vll Avenue, Cathays Park, Cardiff Wales, CF10 3NB, UK.

Division of Pharmacology, Cardiff School of Pharmacy & Pharmaceutical Sciences, Cardiff University, King Edward Vll Avenue, Cathays Park, Cardiff Wales, CF10 3NB, UK.

出版信息

Eur J Pharmacol. 2018 Jan 5;818:198-205. doi: 10.1016/j.ejphar.2017.10.038. Epub 2017 Oct 23.

Abstract

Sympathomimetic and trace amines, including β-phenylethylamine (PEA) and amphetamine, increase blood pressure and constrict isolated blood vessels. By convention this is regarded as a sympathomimetic response, however, recent studies suggest trace amine-associated receptor (TAAR) involvement. There is also uncertainty whether these amines also release nitric oxide (NO) causing opposing vasodilatation. These questions were addressed in guinea-pig isolated aorta, a species not previously examined. Guinea-pig aortic rings were set up to measure contractile tension. Cumulative concentration-response curves were constructed for the reference α-adrenoceptor agonist, phenylephrine, PEA or d-amphetamine before and in the presence of vehicles, the α-adrenoceptor antagonist, prazosin (1µM), the nitric oxide synthase inhibitor, N-nitro-L-arginine (L-NAME), or NO scavengers, curcumin and astaxanthin. Prazosin inhibited phenylephrine contractions with low affinity consistent with α-adrenoceptors. However, PEA and amphetamine were not antagonised, indicating non-adrenergic responses probably via TAARs. L-NAME potentiated contractions to PEA both in the absence and presence of prazosin, indicating that PEA releases NO to cause underlying opposing vasodilatation, independent of α-adrenoceptors. L-NAME also potentiated amphetamine and phenylephrine. PEA was potentiated by the NO scavenger astaxanthin but less effectively. Curcumin, an active component of turmeric, however, inhibited PEA. Trace amines therefore constrict blood vessels non-adrenergically with an underlying NO-mediated non-adrenergic vasodilatation. This has implications in the pressor actions of these amines when NO is compromised.

摘要

拟交感胺和痕量胺,包括β-苯乙胺(PEA)和安非他命,会升高血压并收缩离体血管。根据惯例,这被视为拟交感反应,然而,最近的研究表明痕量胺相关受体(TAAR)的参与。也不确定这些胺是否也释放一氧化氮(NO),从而导致相反的血管扩张。这些问题在豚鼠离体主动脉中得到了研究,这是一种以前未被检查过的物种。豚鼠主动脉环被建立起来以测量收缩张力。在存在载体、α-肾上腺素受体拮抗剂普萘洛尔(1µM)、一氧化氮合酶抑制剂 N-硝基-L-精氨酸(L-NAME)或 NO 清除剂姜黄素和虾青素的情况下,构建了参考α-肾上腺素受体激动剂苯肾上腺素、PEA 或 d-安非他命的累积浓度-反应曲线。普萘洛尔对苯肾上腺素的收缩具有低亲和力,这与α-肾上腺素受体一致。然而,PEA 和安非他命没有被拮抗,表明这是一种非肾上腺素能反应,可能是通过 TAAR 介导的。L-NAME 增强了 PEA 对苯肾上腺素的收缩作用,无论是在缺乏还是存在普萘洛尔的情况下,表明 PEA 通过释放 NO 引起潜在的相反血管扩张,独立于 α-肾上腺素受体。L-NAME 还增强了安非他命和苯肾上腺素的收缩作用。NO 清除剂虾青素增强了 PEA 的作用,但效果较弱。姜黄素,姜黄的一种活性成分,然而,抑制了 PEA。因此,痕量胺通过潜在的 NO 介导的非肾上腺素能血管舒张,非肾上腺素能地收缩血管。当 NO 受到损害时,这些胺的升压作用就会产生影响。

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