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评估麦角生物碱(S)-差向异构体的体外血管活性作用。

Assessment of the vasoactive effects of the (S)-epimers of ergot alkaloids in vitro.

机构信息

Toxicology Centre, University of Saskatchewan, Saskatoon, SK, Canada.

Centre for Applied Epidemiology, Large Animal Clinical Sciences, Western College of Veterinary Medicine, University of Saskatchewan, Saskatoon, SK, Canada.

出版信息

J Anim Sci. 2020 Jul 1;98(7). doi: 10.1093/jas/skaa203.

Abstract

Ergot alkaloids are produced by the fungus Claviceps purpurea and their levels are carefully monitored in animal and human diets due to their harmful effects and widespread contamination of cereal crops. Ergot alkaloids exist in two forms known as the (R)- and (S)-epimers with only the former being monitored in diets in North America. The (S)-epimers of ergot alkaloids are thought to be biologically inactive and, therefore, harmless. A major mechanism by which the (R)-epimers of ergot alkaloids produce their toxic effect is through vasoconstriction. Therefore, the objective of this study was to examine the vasoactivity potential (contractile response) of four (S)-epimers, namely ergocryptinine, ergocristinine, ergocorninine, and ergotaminine utilizing an in vitro arterial tissue bath system. Bovine metatarsal arteries (n = 6, ergocryptinine and ergocorninine; n = 6, ergocristinine and ergotaminine; n = 6 arteries/(S)-epimer, total n = 12) were collected from healthy mixed-breed beef steers immediately after slaughter, cut into 3-mm arterial cross sections, and suspended in a tissue bath with continuously oxygenated Krebs-Henseleit buffer. To assess the contractile response of each (S)-epimer, a cumulative contractile dose-response curve was constructed by incubating arteries with increasing concentrations (1 × 10-11 to 1 × 10-6 M) of that (S)-epimer. Contractile responses were recorded as grams of tension and were normalized to an initial contraction of phenylephrine. Contrary to the widespread belief, all tested (S)-epimers were found vasoactive and produced a concentration-dependent arterial contractile response similar to what has been reported for the (R)-epimers. The arterial contractile response to ergotaminine was strongest and was significantly greater than that of ergocryptinine and ergocristinine at the highest concentration used (P ≤ 0.01). Our results indicate that the (S)-epimers are biologically active and are likely harmful similar to the (R)-epimers. The levels of (S)-epimers should be carefully monitored in human and animal diets worldwide.

摘要

麦角生物碱是由真菌麦角菌产生的,由于其有害影响和谷物作物的广泛污染,其在动物和人类饮食中的含量受到严格监测。麦角生物碱有两种旋光异构体,分别称为(R)-和(S)-差向异构体,在北美饮食中仅监测前者。(S)-差向异构体的麦角生物碱被认为是生物上无活性的,因此是无害的。(R)-差向异构体的麦角生物碱产生其毒性作用的一个主要机制是通过血管收缩。因此,本研究的目的是利用体外动脉组织浴系统研究四种(S)-差向异构体,即麦角隐亭、麦角柯亭、麦角柯宁和麦角胺的血管活性潜力(收缩反应)。从健康的杂种肉牛屠宰后立即采集牛跖骨动脉(n = 6,麦角隐亭和麦角柯宁;n = 6,麦角柯亭和麦角胺;n = 6 条动脉/(S)-差向异构体,总 n = 12),切成 3-mm 动脉横切片,悬浮在充氧的 Krebs-Henseleit 缓冲液的组织浴中。为了评估每个(S)-差向异构体的收缩反应,通过孵育动脉与递增浓度(1×10-11 至 1×10-6 M)的该(S)-差向异构体来构建累积收缩剂量反应曲线。收缩反应以张力克数记录,并归一化为苯肾上腺素的初始收缩。与普遍的看法相反,所有测试的(S)-差向异构体都被发现具有血管活性,并产生类似于(R)-差向异构体的浓度依赖性动脉收缩反应。麦角胺引起的动脉收缩反应最强,在使用的最高浓度(P≤0.01)时明显大于麦角隐亭和麦角柯亭。我们的结果表明,(S)-差向异构体是生物活性的,并且可能类似于(R)-差向异构体一样有害。(S)-差向异构体的水平应在全球范围内的人类和动物饮食中仔细监测。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d003/7373324/2c56e4feab53/skaa203f0001.jpg

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