Comparative vasodepressor effects of 3-pyridine derivatives possessing the cyanoamidine or amide structure in pithed rats.

T Kashiwabara, T Nakajima, S Hasegawa, Y Tanaka, Y Okada, T Izawa, N Ogawa
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Abstract

The potency and mechanism of the vasodepressor action of N-cyano-3-pyridinecarboximidamide and nicotinamide, which are 3-pyridine derivatives possessing cyanoamidine and amide structures, respectively, were studied in pithed rats infused with phenylephrine. The N-substituents of cyanoamidine and amide in the derivatives studied comprised 2-nitroxyethyl (KRN2391 and nicorandil), phenethyl (Ki769 and Ki765) and 2-(2-chlorophenyl)ethyl (Ki3005 and Ki4261) moieties. These derivatives produced vasodepressor actions in a dose-dependent manner, except for Ki4261 which did not show any action below the solubility limit. When the vasodepressor effects of compounds possessing the same N-substituents in cyanoamidine and amide derivatives were compared, the potency of cyanoamidine derivatives was greater than that of amide derivatives, Ki3005 being the most potent. The vasodepressor effects of cyanoamidine and amide derivatives were antagonized by glibenclamide, although the antagonism of the depressor effects of KRN2391 and nicorandil was less pronounced than that of the other derivatives. These results suggest that N-substituents, in addition to the cyanoamidine structure, play an important role in determining the vasodepressor potencies of 3-pyridine derivatives. Furthermore, the vasodepressor effects of these derivatives appear to be based on their K+ channel-opening actions, although those of KRN2391 and nicorandil seem to be partly mediated by a nitrate-like action in addition to their K+ channel-opening action.

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具有氰胺或酰胺结构的3-吡啶衍生物对大鼠血管抑制作用的比较。
研究了3-吡啶衍生物n -氰-3-吡啶carboximidamide和烟酰胺对大鼠血管抑制作用的效价和机制。所研究的氰脒和酰胺衍生物的n -取代基由2-硝基乙基(KRN2391和nicorandil)、苯基(Ki769和Ki765)和2-(2-氯苯基)乙基(Ki3005和Ki4261)组成。除了Ki4261在溶解度限制下没有表现出任何作用外,这些衍生物以剂量依赖的方式产生血管抑制作用。比较含有相同n取代基的氰脒类化合物和酰胺类衍生物的血管抑制作用,发现氰脒类衍生物的抑制作用大于酰胺类衍生物,其中Ki3005的抑制作用最强。格列本脲可拮抗氰脒及其酰胺衍生物的血管抑制作用,但KRN2391和尼可地尔的拮抗作用不如其他衍生物明显。这些结果表明,除了氰脒结构外,n取代基在3-吡啶衍生物的血管抑制作用中起重要作用。此外,这些衍生物的血管抑制作用似乎是基于它们的K+通道打开作用,尽管KRN2391和尼可地尔的血管抑制作用似乎部分是由硝酸盐样作用介导的,除了它们的K+通道打开作用。
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