首页> 外文期刊>Molecular pharmaceutics >A novel assay reveals that weakly basic model compounds concentrate in lysosomes to an extent greater than pH-partitioning theory would predict.
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A novel assay reveals that weakly basic model compounds concentrate in lysosomes to an extent greater than pH-partitioning theory would predict.

机译:一种新的测定方法揭示了弱碱性模型化合物在溶酶体中的富集程度超过了pH分配理论所能预测的程度。

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摘要

Many weakly basic drugs incubated with cells have been shown to specifically accumulate in lysosomes. The mechanistic basis and substrate specificity for this sequestration have not been rigorously evaluated; however, conditions are favorable for a pH-partitioning type accumulation. In some circumstances, this compartmentalization can be very extensive, which can impact the therapeutic efficacy of a drug. Despite the pharmaceutical importance, direct quantitative assessments of drug accumulation in lysosomes have not been previously described. We report here a novel magnetic capture technique that allows for quick and efficient isolation of lysosomes from cultured HL-60 cells that have been preincubated with model compounds. The amount of compound associated with the isolated fraction is determined by HPLC. Extensive biochemical and morphological characterizations of isolated lysosomes, together with HPLC data, allowed for estimates to be made regarding the concentration of model compounds in lysosomes. The corresponding theoretically determined concentration values, based on pH-partitioning theory, were also calculated for comparison purposes. Interestingly, experimentally determined values were approximately 3-15 times higher than theoretically predicted values. This finding suggests that mechanisms, in addition to pH-partitioning, may play a significant role in the accumulation of drugs in lysosomes.
机译:已显示许多与细胞孵育的弱碱性药物在溶酶体中特异性蓄积。尚未严格评估这种螯合的机理基础和底物特异性;但是,条件对于pH分配型积累是有利的。在某些情况下,这种分隔可能非常广泛,这可能会影响药物的治疗功效。尽管具有药物重要性,但以前尚未描述对溶酶体中药物蓄积的直接定量评估。我们在这里报告了一种新颖的磁捕获技术,该技术可以从已与模型化合物进行预孵育的培养的HL-60细胞中快速有效地分离溶酶体。与分离的级分相关的化合物的量通过HPLC确定。分离的溶酶体的广泛的生化和形态学表征,以及HPLC数据,使得可以对溶酶体中模型化合物的浓度进行估算。出于比较目的,还基于pH分配理论计算了相应的理论上确定的浓度值。有趣的是,实验确定的值大约比理论预测值高3-15倍。这一发现表明,除了pH分配外,其他机制还可能在溶酶体中药物的积累中起重要作用。

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