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致癌物苯并[a]芘从颗粒物向脂质双层的转运:肺部滞留的颗粒吸附多环芳烃归宿的模型

Transport of a carcinogen, benzo[a]pyrene, from particulates to lipid bilayers: a model for the fate of particle-adsorbed polynuclear aromatic hydrocarbons which are retained in the lungs.

作者信息

Lakowicz J R, Bevan D R, Riemer S C

出版信息

Biochim Biophys Acta. 1980 May 7;629(2):243-58. doi: 10.1016/0304-4165(80)90098-7.

Abstract

Fluorescence spectroscopic methods were used to investigate the effects of adsorption of benzo[a]pyrene to particulate matter on its rate of uptake into model membranes composed of dipalmitoyl L-alpha-phosphatidylcholine. From these experiments we conclude the following: 1. Adsorption of benzo[a]pyrene to four types of asbestos (anthophyllite, crocidolite, chrysotile, and amosite) and a variety of non-fibrous particles (hematite, silica, titanium dioxide, porous glass and talc) results in increased rates of membrane uptake when compared with aqueous suspensions of benzo[a]pyrene microcrystals. Benzo[a]pyrene was not released from carbon black. 2. Asbestos-adsorbed benzo[a]pyrene was transferred to the membranes most rapidly. 3. Adsorption of benzo[a]pyrene to the surface of the particles is necessary for its enhanced transport into membranes. That is, simple mixtures of benzo[a]pyrene microcrystals and particulates do not show enhanced transport. 4. Particle-enhanced transport of benzo[a]pyrene is not correlated with the effects of the particles on vesicle integrity, binding of vesicles to the particles, or the concentrations of either particles or vesicles. The rate limiting step for transport of benzo[a]pyrene into vesicles appears to be its rate of desorption from the surface of the particle. Following desorption, membrane uptake of benzo[a]pyrene is rapid.

摘要

采用荧光光谱法研究了苯并[a]芘吸附在颗粒物上对其进入由二棕榈酰-L-α-磷脂酰胆碱组成的模型膜的摄取速率的影响。从这些实验中我们得出以下结论:1. 与苯并[a]芘微晶的水悬浮液相比,苯并[a]芘吸附在四种石棉(直闪石、青石棉、温石棉和铁石棉)以及多种非纤维颗粒(赤铁矿、二氧化硅、二氧化钛、多孔玻璃和滑石)上会导致膜摄取速率增加。苯并[a]芘不会从炭黑上释放出来。2. 石棉吸附的苯并[a]芘转移到膜上的速度最快。3. 苯并[a]芘吸附在颗粒表面是其增强转运到膜中的必要条件。也就是说,苯并[a]芘微晶和颗粒的简单混合物不会显示出增强的转运。4. 颗粒增强的苯并[a]芘转运与颗粒对囊泡完整性、囊泡与颗粒的结合或颗粒或囊泡浓度的影响无关。苯并[a]芘转运到囊泡中的限速步骤似乎是其从颗粒表面的解吸速率。解吸后,苯并[a]芘对膜的摄取很快。

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