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Development and Characterization of the Solvent-Assisted Active Loading Technology (SALT) for Liposomal Loading of Poorly Water-Soluble Compounds

机译:水溶性弱化合物脂质体加载的溶剂辅助主动加载技术(SALT)的开发与表征

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摘要

A large proportion of pharmaceutical compounds exhibit poor water solubility, impacting their delivery. These compounds can be passively encapsulated in the lipid bilayer of liposomes to improve their water solubility, but the loading capacity and stability are poor, leading to burst drug leakage. The solvent-assisted active loading technology (SALT) was developed to promote active loading of poorly soluble drugs in the liposomal core to improve the encapsulation efficiency and formulation stability. By adding a small volume (~5 vol%) of a water miscible solvent to the liposomal loading mixture, we achieved complete, rapid loading of a range of poorly soluble compounds and attained a high drug-to-lipid ratio with stable drug retention. This led to improvements in the circulation half-life, tolerability, and efficacy profiles. In this mini-review, we summarize our results from three studies demonstrating that SALT is a robust and versatile platform to improve active loading of poorly water-soluble compounds. We have validated SALT as a tool for improving drug solubility, liposomal loading efficiency and retention, stability, palatability, and pharmacokinetics (PK), while retaining the ability of the compounds to exert pharmacological effects.
机译:很大比例的药物化合物显示出差的水溶性,影响其递送。这些化合物可以被被动地包封在脂质体的脂质双层中以改善其水溶性,但是其负载能力和稳定性差,导致药物突然泄漏。开发了溶剂辅助的主动装载技术(SALT),以促进脂质体核心中难溶药物的主动装载,从而提高了包封效率和制剂稳定性。通过向脂质体上样混合物中加入少量(约5 vol%)的水混溶性溶剂,我们实现了对一系列难溶性化合物的完整,快速上样,并获得了高的药物与脂质比率以及稳定的药物保留能力。这导致循环半衰期,耐受性和功效曲线的改善。在此小型审查中,我们总结了三项研究的结果,这些结果表明SALT是改善水溶性差的化合物的活性负载的强大而通用的平台。我们已经验证了SALT作为改善药物溶解度,脂质体负载效率和保留,稳定性,适口性和药代动力学(PK)的工具,同时保留了这些化合物发挥药理作用的能力。

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