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米索前列醇的化学与合成进展

Chemistry and synthetic development of misoprostol.

作者信息

Collins P W, Pappo R, Dajani E Z

出版信息

Dig Dis Sci. 1985 Nov;30(11 Suppl):114S-117S. doi: 10.1007/BF01309395.

Abstract

Misoprostol is a synthetic prostaglandin which is related structurally to naturally occurring prostaglandin E1 (PGE1). PGE1 has long been recognized as an effective inhibitor of gastric acid secretion when administered intravenously. However, three major problems have prevented the use of natural PGE1 as a therapeutic treatment for peptic ulcer disease. Each of these problems, lack of oral activity, side-effects, and short duration of action, has been overcome by the chemical development of misoprostol from PGE1. The major structural alteration of PGE1 was the relocation of the 15-hydroxy group to the adjacent 16-position. This important modification significantly reduced typical prostaglandin side-effects such as diarrhea, yet retained full antisecretory potency and also provided a degree of oral activity. The second modification was the addition of a methyl group to carbon-16 to prevent metabolic oxidation of the hydroxy group. This structural change greatly increased both oral potency and duration of action and completed the synthetic development of misoprostol. Misoprostol is chemically unstable at room temperature, as is PGE1. This problem has been solved by pharmaceutical formulation studies which led to a stable and solid dosage form.

摘要

米索前列醇是一种合成前列腺素,其结构与天然存在的前列腺素E1(PGE1)相关。长期以来,PGE1静脉给药时一直被认为是胃酸分泌的有效抑制剂。然而,有三个主要问题阻碍了天然PGE1用于消化性溃疡疾病的治疗。米索前列醇从PGE1经化学研发克服了这些问题中的每一个,即缺乏口服活性、副作用和作用持续时间短。PGE1的主要结构改变是15-羟基移位至相邻的16位。这一重要修饰显著减少了典型的前列腺素副作用,如腹泻,但保留了全部的抗分泌效力,还具备了一定程度的口服活性。第二个修饰是在碳-16位添加一个甲基以防止羟基的代谢氧化。这一结构变化极大地提高了口服效力和作用持续时间,并完成了米索前列醇的合成研发。米索前列醇在室温下化学性质不稳定,PGE1也是如此。这一问题已通过药物制剂研究得以解决,该研究产生了一种稳定的固体剂型。

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