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首页> 外文期刊>Japanese Journal of Pharmacology >A STUDY ON THE STRUCTURE-ACTIVITY RELATIONSHIP OF THE CARDIOTONIC STEROIDS
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A STUDY ON THE STRUCTURE-ACTIVITY RELATIONSHIP OF THE CARDIOTONIC STEROIDS

机译:心律失常的结构-活性关系的研究

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References(18) Cited-By(8) According to the prevailing opinion of today about the structure-activity relationship of cardenolides and bufadienolides, the structural requirements for the characteristic cardiotonic action of these compounds can be summarized as follows: cis-fusion of the C and D rings, hydroxyl groups in positions 3β and 14β, and a five- or six-membered unsaturated lactone ring having β-configuration at C14 (1). Most of the experimental data referred to as evidences supporting this opinion have come, however, from the determination of toxic doses in the whole animal, mainly in the cat, rather than from observations of the action of these compounds in isolated hearts. It follows as a natural consequence that the compounds with a rather weak toxicity have been condemned to be inactive, even if they have a strong cardiotonic action, in spite of the fact that such a kind of compounds may actually be more important from the clinical point of view. For example, the compound like dihydrodigitoxin of which the lactone ring is saturated, and the compound like resibufogenin, which have an epoxide ring between C14 and C15 instead of C14-OH, generally believed to be inactive based on the toxicity data in the cat, have recently been found to be fairly active when tested in the isolated heart (2-3). The authors also found that, different from the above-cited opinion, the presence of 3β-OH is not indispensable for the cardiotonic action of the cardenolides ; 3-epi-digitoxigenin was found to have a definite cardiotonic action upon the isolated frog's heart (See Fig. 8). These findings seem to warrant reexamination of the problem, on the basis of the action of these compounds in the isolated heart. In recent years several adrenocortical steroids and aldosterone antagonists have been reported to be cardiotonic (4-6), despite the fact that their stereochemical structures are essentially different from those of the cardiotonic steroids. In view of these, the authors took up the problem of the cis-fusion of the C and D rings out of the several important points in the structure of cardiotonic steroids as discussed above and reexamined its importance for the specific cardiotonic action using the isolated frog's heart and the heart-lung preparation of the dog.
机译:参考文献(18)Cited-By(8)根据当今关于心烯醇内酯和丁二烯内酯的结构-活性关系的普遍观点,这些化合物的特征性强心药作用的结构要求可归纳如下: C和D环,3β和14β位的羟基以及在C14处具有β构型的五元或六元不饱和内酯环(1)。但是,大多数实验数据(被称为支持该观点的证据)来自确定整个动物(主要是猫)的毒性剂量,而不是观察这些化合物在离体心脏中的作用。自然的结果是,尽管从临床角度来看,这类化合物实际上可能更重要,但即使毒性很弱的化合物也具有强心药作用,却被认为是无活性的。观点。例如,根据猫的毒性数据,通常认为其内酯环已饱和的化合物(如二氢数字氧还蛋白)和环氧丁蟾毒苷(其化合物在C14和C15之间而不是C14-OH处具有环氧基)是无活性的,最近发现,在离体心脏中进行测试时,其活性相当高(2-3)。作者还发现,与上述观点不同的是,3β-OH的存在对于心烯醇内酯的强心作用并非必不可少。发现3-表位-数字氧还蛋白对孤立的青蛙的心脏具有确定的强心作用(见图8)。根据这些化合物在离体心脏中的作用,这些发现似乎值得重新研究该问题。近年来,尽管有几种肾上腺皮质类固醇和醛固酮拮抗剂的立体化学结构与强心类固醇的立体化学结构不同,但据报道它们是强心的(4-6)。有鉴于此,作者从上文讨论的强心类固醇结构中的几个重要方面出发,解决了C和D环顺式融合的问题,并使用孤立的青蛙模型重新审查了其对特定强心作用的重要性。心和狗的心肺准备。

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