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Quantitative structure-property relationship modeling for the prediction of hydrophilic drug entrapment in liposomes for lung targeted delivery

机译:定量结构 - 性质关系建模对肺靶向递送脂质体中亲水药物涂层的预测

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Targeted delivery to lung tissues plays a vital role in the delivery of drugs to asthma patients since biological barriers such as the trachea, bronchi, bronchioles, and alveoli can often restrict the passage of a drug across them. Various cysteinyl leukotriene receptors such as LTC4, LTD4, and LTE4 present at lung sites (especially in the bronchi) release leukotrienes that contribute to bronchoconstriction, leading to asthma and other lung disorders. Therefore, leukotriene receptor antagonists such as Montelukast sodium (a hydrophilic and potent LTC4 antagonist) are preferred in the treatment of asthma. A database of phospholipids used in liposomal formulations for the hydrophilic drug was screened with the development of a quantitative structure-property relationship (QSPR) model in mind. Furthermore, using partial least squares and principal component analysis methods, the best set of descriptors (SlogP_VSA2, TPSA, vsa_other, PEOE_VSA_PPOS) out of 115 were selected with respect to % drug entrapment. Based on the best descriptors, phosphatidylcholine was selected as an independent variable along with cholesterol for implementation of the factorial design in the preparation of liposomal batches. The optimized batch showed 84% entrapment efficiency, which was further studied by considering critical attributes in a process analytical technique (PAT) study. The optimized batch was lyophilized and showed 76% drug release when tested by dialysis method. The ex vivo drug diffusion across bronchial smooth muscle cells showed 11% diffusion (over 90 min) attributed to the binding of a maximum amount of the drug to the cysteinyl leukotriene receptors. The developed liposomal formulation achieved the desired objective of targeted delivery by application of QSPR and PAT methodologies.
机译:针对肺组织的靶向递送在哮喘患者中,在哮喘患者中发挥至关重要的作用,因为诸如气管,支气管,支气管和肺泡等生物屏障通常可以限制药物对它们的通过。各种Cysteinyl白硫基受体如LID4,LTD4,以及LING位点(特别是在支气管)的LTE4释放白三烯,导致哮喘和其他肺疾病。因此,在治疗哮喘的情况下,优选白三烯受体拮抗剂如蒙特洛斯特钠(亲水和有效LTC4拮抗剂)。筛选用于亲水药物脂质体配方的磷脂数据库,随着定量结构性质关系(QSPR)模型的筛选。此外,使用局部最小二乘和主成分分析方法,选择相对于%药物夹紧选择115个中最佳的描述符(SLOGP_VSA2,TPSA,VSA_OFE,PEOE_VSA_PPO)。基于最佳描述符,选择磷脂酰胆碱作为独立变量以及胆固醇,用于在制备脂质体批次方面的阶乘设计。优化的批量显示出84%的夹带效率,通过考虑过程分析技术(PAT)研究中的关键属性进一步研究。当通过透析方法测试时,优化的批次被冻干并显示出76%的药物释放。在支气管平滑肌细胞上的前体内药物扩散显示出11%的扩散(超过90分钟),其归因于最大量的药物与半胱氨酸基白酮受体的结合。发育的脂质体制物通过施用QSPR和PAT方法实现了靶向递送的所需目的。

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