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将氯丙嗪掺入双层脂质体中以防止微粒体代谢和肝脏吸收。

Incorporation of chlorpromazine into bilayer liposomes for protection against microsomal metabolism and liver absorption.

作者信息

Schwendener R A

机构信息

Institute of Pathology, University Hospital, Zürich, Switzerland.

出版信息

Eur J Drug Metab Pharmacokinet. 1988 Apr-Jun;13(2):135-41. doi: 10.1007/BF03191315.

Abstract

Chlorpromazine (CPZ) was incorporated into bilayer liposomes carrying negative charges either from phosphatidic acid (PA) or from phosphatidyl inositol (PI). CPZ incorporation was dependent on the amount of negatively charged lipid present in the liposomes. At a concentration of 0.6 mol parts phosphatidic acid as referred to egg phosphatidyl choline (EPC) as matrix lipid, 80 micrograms CPZ/mg EPC were stably incorporated. At the saturation concentration a 1:1 molar complex between the phenothiazine drug and the negatively charged lipid is formed. This lipophilic complex retains the CPZ molecules firmly within the lipid bilayer. In vitro release of CPZ into the medium surrounding the liposomes was found to be a very slow process with release half-times of 30 to 99 hours depending on liposome composition. Microsomal metabolism of liposomally incorporated CPZ was slowed and reduced by 50% as determined by the formation of CPZ-sulfoxide. In single pass liver perfusion experiments it was shown that CPZ absorption is significantly reduced when CPZ is incorporated into liposomes. It is suggested that this protective effect of the liposomes might influence the pharmacological effects of CPZ and reduce its hepatotoxic properties.

摘要

氯丙嗪(CPZ)被包封于带有负电荷的双层脂质体中,这些负电荷来源于磷脂酸(PA)或磷脂酰肌醇(PI)。CPZ的包封取决于脂质体中带负电荷脂质的量。以鸡蛋卵磷脂(EPC)作为基质脂质,当磷脂酸浓度为0.6摩尔份时,每毫克EPC可稳定包封80微克CPZ。在饱和浓度下,吩噻嗪药物与带负电荷的脂质形成1:1摩尔复合物。这种亲脂性复合物将CPZ分子牢固地保留在脂质双层内。发现CPZ向脂质体周围介质中的体外释放是一个非常缓慢的过程,释放半衰期为30至99小时,具体取决于脂质体组成。通过CPZ-亚砜的形成测定,脂质体包封的CPZ的微粒体代谢减慢且降低了50%。在单次通过肝脏灌注实验中表明,当CPZ被包封于脂质体中时,CPZ的吸收显著降低。有人认为脂质体的这种保护作用可能会影响CPZ的药理作用并降低其肝毒性。

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