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首页> 外文期刊>Journal of Biological Physics >Experimental and theoretical studies on the molecular properties of ciprofloxacin, norfloxacin, pefloxacin, sparfloxacin, and gatifloxacin in determining bioavailability
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Experimental and theoretical studies on the molecular properties of ciprofloxacin, norfloxacin, pefloxacin, sparfloxacin, and gatifloxacin in determining bioavailability

机译:在确定生物利用度时环丙沙星,诺氟沙星,培氟沙星,司巴沙星和加替沙星分子特性的实验和理论研究

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摘要

The aim of this investigation is to identify, by in silico and in vitro methods, the molecular determinants, e.g., solubility in an aqueous medium and lipophilic properties, which have an effect on the bioavailability of five selected fluoroquinolones. These properties were estimated by analysis of the electrostatic potential pattern and values of free energy of solvation as well as the partition coefficients of the studied compounds. The study is based on theoretical quantum-chemical methods and a simple experimental shake-flask technique with two immiscible phases, n-octanol and phosphate buffer. The solvation free energy values of compounds in both environments appeared to be negative. The wide range of electrostatic potential from negative to positive demonstrates the presence of dipole–dipole intermolecular interactions, while the high electron density at various sites indicates the possibility of hydrogen bond formation with solvent molecules. High partition coefficient values, obtained by summing the atomic contributions, did not take various correction factors into account and therefore were not accurate. Theoretical partition coefficient values based on more accurate algorithms, which included these correction factors (fragmental methods), yielded more accurate values. Theoretical methods are useful tools for predicting the bioavailability of fluoroquinolones.
机译:这项研究的目的是通过计算机和体外方法鉴定分子决定因素,例如在水介质中的溶解度和亲脂性,这对五个选定的氟喹诺酮类药物的生物利用度有影响。通过分析静电势模式和溶剂化自由能的值以及所研究化合物的分配系数来估计这些性质。该研究基于理论量子化学方法和一种简单的实验摇瓶技术,该技术具有两个不混溶的相,即正辛醇和磷酸盐缓冲液。在两种环境下,化合物的溶剂化自由能值似乎为负。从负到正的大范围静电势都表明存在偶极-偶极分子间的相互作用,而各个位置的高电子密度表明可能与溶剂分子形成氢键。通过将原子贡献相加而获得的高分配系数值未考虑各种校正因子,因此不准确。基于更精确算法的理论分配系数值(包括这些校正因子(分段方法))得出了更准确的值。理论方法是预测氟喹诺酮类药物生物利用度的有用工具。

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