单萘二甲酰亚胺和双萘二甲酰亚胺脂质体封装的深入研究†。

Abdullahi Magaji Dauda, Thomas Swift, Richard Telford, Hend A. A. Abd El-wahab, Chhanda Charan Danta, Klaus Pors and Amalia Ruiz
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引用次数: 0

摘要

装载米托萘非的脂质体是克服该药物临床试验中观察到的神经毒性的一种很有前景的策略。本研究探讨了负载米托那非或二聚体类似物对不同脂质体配方及其体外疗效的影响。我们采用不同的负载方法(即双层或核心负载)和不同磷脂成分来改变双层的刚性,从而操纵脂质体的理化性质。我们的研究结果表明,与低米托那非单体EE%相比,米托那非二聚体类似物在装入刚性或柔性双分子层时对脂质体的包封效率(EE%)相当。采用 pH 梯度核心装载法可以更有效地将单体装入脂质体。DOSY NMR 和分光荧光测定法研究揭示了囊泡结构以及单体或二聚体在双分子层或脂质体核心中排列的主要差异。使用 MDA-MB-231 和 RT-112 细胞对配方进行的体外评估显示,柔性脂质双分子层可加快药物释放,这与光谱研究结果有很好的相关性。这项研究首次发现,脂质双分子层的特性和负载方法会影响脂质体载体中负载的单萘二甲酰亚胺和双萘二甲酰亚胺的封装功效、胶体特性、光活性和稳定性,这些都是影响制剂在生物环境中性能的重要因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Insight into the liposomal encapsulation of mono and bis-naphthalimides†

Insight into the liposomal encapsulation of mono and bis-naphthalimides†

Mitonafide-loaded liposomes are a promising strategy to overcome the neurotoxicity observed in clinical trials for this drug. This study investigates the influence of loaded mitonafide or a dimer analogue on different liposomal formulations and their therapeutic efficacy in vitro. Physicochemical properties of the liposomes were manipulated using different loading methods (namely bilayer or core loading) and varying the rigidity of the bilayer using distinct phospholipid compositions. Our results demonstrated that the mitonafide dimer analogue had a comparable encapsulation efficiency (EE%) into the liposomes when loaded into rigid or flexible bilayers in contrast to the low mitonafide monomer EE%. A pH gradient core loading method resulted in a more efficient mechanism to load the monomer into the liposomes. DOSY NMR and spectrofluorometric studies revealed key differences in the structure of the vesicles and the arrangement of the monomer or the dimer in the bilayer or the core of the liposomes. The in vitro assessment of the formulations using MDA-MB-231 and RT-112 cells revealed that a flexible lipid bilayer allows a faster drug release, which correlated well with the spectroscopy studies. This study investigated for the first time that the characteristics of the lipid bilayer and the loading method influence the encapsulation efficacy, colloidal properties, photoactivity and stability of mono and bis-naphthalimides loaded in a liposomal carrier, essential factors that will impact the performance of the formulation in a biological scenario.

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