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首页> 外文期刊>Chemical and Pharmaceutical Bulletin >Thermodynamics of Partitioning of Phenothiazine Drugs between Phosphatidylcholine Bilayer Vesicles and Water Studied by Second-Derivative Spectrophotometry.
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Thermodynamics of Partitioning of Phenothiazine Drugs between Phosphatidylcholine Bilayer Vesicles and Water Studied by Second-Derivative Spectrophotometry.

机译:通过二阶导数分光光度法研究了吩噻嗪类药物在磷脂酰胆碱双层囊泡和水之间的分配热力学。

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摘要

The partition coefficients (K(p)s) of phenothiazine drugs (trifluoperazine, triflupromazine, chlorpromazine and promazine) between phosphatidylcholine (PC) small unilamellar vesicles (SUV) and water were determined over the temperature range of 10-40 degrees C by a second-derivative spectrophotometric method. The second derivative spectra of each drug solution containing various amounts of SUV showed distinct derivative isosbestic points confirming the entire elimination of the residual background signal effects of the SUV. The K(p) values were calculated from the derivative intensity change of the drugs induced by the addition of SUV to the drug buffer solutions (pH 7.4) and obtained with the R.S.D. below 10% (n=3). The van't Hoff analysis of the temperature dependence of K(p) values revealed negative DeltaH(w-->l) and positive DeltaS(w-->l), suggesting an enthalpy/entropy driven mechanism for the phenothiazine partitioning. The negative DeltaH(w-->l) implies that the electrostatic interaction, positively charged alkyl amino groups of phenothiazine drugs with negatively charged phosphate groups on the surface of PC SUV, partly contributes to the partitioning. The existence of halogen atom(s) on the phenothiazine ring at position C-2 enhanced the K(p) value (Hl) value (Hl) increase is considered to be enhancement of disorder in the hydrophobic acyl chain regions of PC SUV membranes derived from the phenothiazine ring insertion and thus depends on the bulkiness of the substituent. The enthalpy-entropy correlation analysis yielding a good linear relationship also suggests that the phenothiazine drugs studied have identically an enthalpy-entropy compensation mechanism for the partitioning.
机译:在10-40℃的温度范围内,每秒测定吩噻嗪药物(氟哌嗪,氟丙嗪,氯丙嗪和丙嗪)在磷脂酰胆碱(PC)小单层囊泡(SUV)和水之间的分配系数(K(p)s)。导数分光光度法。每种药物溶液中含有不同量的SUV的二阶导数光谱显示出明显的衍生同构点,从而确认了SUV的残留本底信号效应的全部消除。 K(p)值是通过在药物缓冲液(pH 7.4)中加入SUV诱导的药物的导数强度变化计算得出的,并通过R.S.D.低于10%(n = 3)。对K(p)值的温度依赖性进行的范霍夫分析表明,负DeltaH(w-> l)和正DeltaS(w-> l),表明吩噻嗪分配的焓/熵驱动机制。负DeltaH(w-> l)表示静电相互作用,吩噻嗪药物的带正电的烷基氨基与PC SUV表面带负电的磷酸基团部分地起作用。在吩噻嗪环C-2位置上存在一个或多个卤素原子可提高K(p)值(H l)值的增加(H l)的增加被认为是疾病的增强。 PC SUV膜的疏水性酰基链区域源自吩噻嗪环插入,因此取决于取代基的体积。焓-熵相关分析产生良好的线性关系,也表明所研究的吩噻嗪药物具有相同的分配熵-熵补偿机制。

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