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Advances in immobilized artificial membrane (IAM) chromatography for novel drug discovery

机译:固定化人工膜(IAM)色谱在新药研发中的进展

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Introduction: The development of immobilized artificial membrane (IAM) chromatography has unfolded new perspectives for the use of chromatographic techniques in drug discovery, combining simulation of the environment of cell membranes with rapid measurements.Areas Covered: The present review describes the characteristics of phosphatidylcholine-based stationary phases and analyses the molecular factors governing IAM retention in comparison to n-octanol-water and liposomes partitioning systems as well as to reversed phase chromatography. Other biomimetic stationary phases are also briefly discussed. The potential of IAM chromatography to model permeability through the main physiological barriers and drug membrane interactions is outlined. Further applications to calculate complex pharmacokinetic properties, related to tissue binding, and to screen drug candidates for phospholipidosis, as well as to estimate cell accumulation/retention are surveyed.Expert opinion: The ambivalent nature of IAM chromatography, as a border case between passive diffusion and binding, defines its multiple potential applications. However, despite its successful performance in many permeability and drug-membrane interactions studies, IAM chromatography is still used as a supportive and not a stand-alone technique. Further studies looking at IAM chromatography in different biological processes are still required if this technique is to have a more focused and consistent application in drug discovery.
机译:简介:固定化人工膜(IAM)色谱的发展为色谱技术在药物发现中的应用开辟了新的视角,将细胞膜环境的模拟与快速测量相结合。涵盖的领域:本综述描述了磷脂酰胆碱的特征基于固定相,并与正辛醇-水和脂质体分配系统以及反相色谱法相比,分析了控制IAM保留的分子因素。还简要讨论了其他仿生固定相。概述了IAM色谱通过主要生理屏障和药物膜相互作用模拟通透性的潜力。专家意见:IAM色谱的矛盾性质,作为被动扩散之间的边界案例,进一步研究了计算与组织结合有关的复杂药代动力学性质,以及筛选磷脂代谢候选药物以及估计细胞蓄积/保留的应用。和绑定,定义了其多种潜在应用。然而,尽管IAM色谱在许多渗透性和药物-膜相互作用研究中取得了成功,但仍被用作支持技术,而不是独立技术。如果该技术要在药物发现中有更集中和一致的应用,仍然需要对不同生物过程中IAM色谱法进行进一步研究。

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