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5-酰基-6-芳基-4-硝基-3(2H)哒嗪酮及相关4-氨基化合物:合成与药理学评价

5-Acyl-6-aryl-4-nitro-3(2H)pyridazinones and related 4-amino compounds: synthesis and pharmacological evaluation.

作者信息

Dal Piaz V, Ciciani G, Turco G, Giovannoni M P, Miceli M, Pirisino R, Perretti M

机构信息

Dipartimento di Scienze Farmaceutiche, Università di Firenze, Italy.

出版信息

J Pharm Sci. 1991 Apr;80(4):341-8. doi: 10.1002/jps.2600800412.

Abstract

Several 4-nitro- and 4-amino-5-acyl-6-aryl-3(2H)pyridazinones were prepared and their in vitro and ex vivo antiaggregatory properties were evaluated. 4-Nitro derivatives 3 generally showed good activity in vitro towards arachidonic acid (AA)-induced human blood platelet aggregation. The 4-amino compound 4a, which has weak in vitro activity, exhibited antiplatelet activity, particularly on adenosine dephosphate (ADP)-induced aggregation ex vivo in rabbit. Moreover, the same compound was shown to be active in platelet-activating factors (PAF)-induced rat paw hyperalgesia and to be endowed with low acute oral toxicity. The 4-amino derivatives 4a-m and the other pyridazinones 5-9 administered orally to rats were also found to be more potent antiinflammatory agents than acetyl salicylic acid (ASA). Compounds 3a and 4a, tested in vitro on lipopolysaccharide (LPS)-stimulated rat peritoneal macrophages, were seen to be active in the inhibition of prostaglandin E2 (PGE2) production and interleukin-1 activity. Structure-activity relationship studies in the series of antiaggregating pyridazinones 3 have shown the primary importance of the nitro and acetyl substituents at positions 4 and 5, respectively. Hydrophobic substituents at position 2 were also required for better activity.

摘要

制备了几种4-硝基-和4-氨基-5-酰基-6-芳基-3(2H)哒嗪酮,并评估了它们的体外和体内抗聚集特性。4-硝基衍生物3通常在体外对花生四烯酸(AA)诱导的人血小板聚集表现出良好的活性。体外活性较弱的4-氨基化合物4a在体内对兔体内由二磷酸腺苷(ADP)诱导的聚集表现出抗血小板活性。此外,该化合物在血小板活化因子(PAF)诱导的大鼠爪部痛觉过敏中具有活性,且急性口服毒性较低。给大鼠口服4-氨基衍生物4a-m和其他哒嗪酮5-9,发现它们也是比乙酰水杨酸(ASA)更有效的抗炎剂。在体外对脂多糖(LPS)刺激的大鼠腹腔巨噬细胞进行测试时,化合物3a和化合物4a在抑制前列腺素E2(PGE2)生成和白细胞介素-1活性方面具有活性。在抗聚集哒嗪酮系列3中的构效关系研究表明,4位和5位上的硝基和乙酰基取代基分别具有首要重要性。2位上的疏水取代基对于获得更好的活性也是必需的。

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