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皮中存在的高血压和抗高血压成分、辛弗林和川陈皮素。

Co-Existence of Hypertensive and Anti-Hypertensive Constituents, Synephrine, and Nobiletin in Peel.

机构信息

College of Pharmacy, Seoul National University, Seoul 08826, Korea.

College of Pharmacy, Hanyang University, Ansan 15588, Korea.

出版信息

Molecules. 2019 Mar 27;24(7):1197. doi: 10.3390/molecules24071197.

Abstract

A single herb can contain multiple constituents with diverse bioactivities. We found that the extract of peel (CUP), induced abnormal vasoconstriction responses on the freshly isolated rat aortic rings in vitro. CUP stimulated the vasoconstriction alone, and it suppressed the phenylephrine-stimulated vasoconstriction. We studied the reasons behind this abnormal vasoconstriction pattern. Major constituents of CUP were determined and evaluated for their vaso-activities. Notably, synephrine, a contractile agonist, and nobiletin, newly identified to have anti-contractile activity co-existed in CUP. Synephrine and nobiletin competitively blocked or activated the same contractile targets resulting in contradicting and abnormal vasoconstriction responses. Accordingly, the vasoconstriction pattern varies significantly depending on the relative contents of synephrine and nobiletin in CUP. Interestingly, this response pattern could be observed with another plant extract, Collectively, we demonstrated that active ingredients with contradicting bioactivities could co-exist in a single plant extract, interact and produce abnormal response patterns in bioassay, which would give an important insight into the interpretation of unusual activity patterns induced by plant extracts.

摘要

一种草药可能含有多种具有不同生物活性的成分。我们发现,果皮(CUP)的提取物在体外能诱导新鲜分离的大鼠主动脉环产生异常的血管收缩反应。CUP 单独刺激血管收缩,并抑制去甲肾上腺素刺激的血管收缩。我们研究了这种异常血管收缩模式的原因。确定了 CUP 的主要成分,并评估了它们的血管活性。值得注意的是,辛弗林是一种收缩激动剂,而新发现具有抗收缩活性的诺必灵共存于 CUP 中。辛弗林和诺必灵竞争性地阻断或激活相同的收缩靶标,导致相互矛盾和异常的血管收缩反应。因此,血管收缩模式根据 CUP 中辛弗林和诺必灵的相对含量而有很大差异。有趣的是,这种反应模式可以在另一种植物提取物中观察到。总之,我们证明了具有相反生物活性的活性成分可以共存于单一的植物提取物中,在生物测定中相互作用并产生异常的反应模式,这为解释植物提取物引起的异常活性模式提供了重要的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1aee/6480055/ba9feb7766f9/molecules-24-01197-g001.jpg

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