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2H-四唑-2-乙酸、酯类及酰胺类的合成与抗炎活性

Synthesis and antiinflammatory activity of 2H-tetrazol-2-acetic acids, esters and amides.

作者信息

Kumar P, Knaus E E

机构信息

Faculty of Pharmacy and Pharmaceutical Sciences, University of Alberta, Edmonton, Canada.

出版信息

Drug Des Deliv. 1990 Sep;6(3):169-75.

PMID:2076178
Abstract

A series of 5-(pyridyl)-2H-tetrazol-2-acetic acids (16-21), esters (10-15), and amides (22-27) was synthesized in order to investigate the effect of 5-substituents (R1 = 2-, 3- or 4-pyridyl) and alpha-substituents (R2 = H, Me) on anti-inflammatory activity. The point of attachment of the R1-pyridyl substituent influenced potency. The relative potencies in the acetic acid ester, acetic acid and acetamide classes of compounds were 2- and 4- greater than 3-pyr, 2- and 3- greater than 4-pyr, and 4- greater than 2- and 3-pyr, respectively. In the acetic acid ester and acetamide classes, compounds having a R2 hydrogen substituent were generally more potent than corresponding methyl substituted compounds, whereas, in the acetic acid class the reverse applied. The relative order of anti-inflammatory potency was generally amide greater than ester greater than acid. 2-[5-(4-Pyridyl)-2H-tetrazol-2-yl]acetamide (26) was the most effective antiinflammatory agent in the series, reducing inflammation by 53% at 3 and 5 hr after a 25 mg/kg po dose.

摘要

为了研究5-取代基(R1 = 2-、3-或4-吡啶基)和α-取代基(R2 = H、Me)对抗炎活性的影响,合成了一系列5-(吡啶基)-2H-四唑-2-乙酸(16 - 21)、酯(10 - 15)和酰胺(22 - 27)。R1-吡啶基取代基的连接点影响活性。在乙酸酯、乙酸和乙酰胺类化合物中,其相对活性分别为:2-和4-吡啶基取代的大于3-吡啶基取代的,2-和3-吡啶基取代的大于4-吡啶基取代的,4-吡啶基取代的大于2-和3-吡啶基取代的。在乙酸酯和乙酰胺类中,具有R2氢取代基的化合物通常比相应的甲基取代化合物活性更强,而在乙酸类中情况则相反。抗炎活性的相对顺序一般为酰胺大于酯大于酸。2-[5-(4-吡啶基)-2H-四唑-2-基]乙酰胺(26)是该系列中最有效的抗炎剂,口服25 mg/kg剂量后3小时和5小时炎症减轻53%。

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