Biomimetic properties and estimated in vivo distribution of chloroquine and hydroxy-chloroquine enantiomers.

Advances in physiotherapy Pub Date : 2020-01-25 eCollection Date: 2021-01-01 DOI:10.5599/admet.929
Klara L Valko, Tong Zhang
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Abstract

Chloroquine and hydroxy-chloroquine already established as anti-malarial and lupus drugs have recently gained renewed attention in the fight against the Covid-19 pandemic. Bio-mimetic HPLC methods have been used to measure the protein and phospholipid binding of the racemic mixtures of the drugs. The tissue binding and volume of distribution of the enantiomers have been estimated. The enantiomers can be separated using Chiralpak AGP HPLC columns. From the α-1-acid-glycoprotein (AGP) binding, the lung tissue binding can be estimated for the enantiomers. The drugs have a large volume of distribution, showed strong and stereoselective glycoprotein binding, medium-strong phospholipid-binding indicating only moderate phospholipidotic potential, hERG inhibition and promiscuous binding. The drug efficiency of the compounds was estimated to be greater than 2 % which indicates a high level of free biophase concentration relative to dose. The biomimetic properties of the compounds support the well-known tolerability of the drugs.

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氯喹和羟基氯喹对映体的生物模拟特性和估计体内分布。
作为抗疟疾和红斑狼疮药物的氯喹和羟基氯喹最近在抗击 Covid-19 大流行病的斗争中再次受到关注。生物模拟高效液相色谱法用于测量这两种药物外消旋混合物的蛋白质和磷脂结合力。还估算了对映体的组织结合力和分布容积。使用 Chiralpak AGP 高效液相色谱柱可分离对映体。根据α-1-酸糖蛋白(AGP)的结合力,可以估算出对映体的肺组织结合力。这些药物具有较大的分布容积,表现出较强的糖蛋白结合力和立体选择性,中等强度的磷脂结合力表明只有中等的磷脂化潜能,对 hERG 有抑制作用,并且具有杂合结合力。据估计,这些化合物的药物效率大于 2%,这表明相对于剂量而言,游离生物相的浓度较高。这些化合物的仿生特性支持了众所周知的药物耐受性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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