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聚电解质带电脂质体复合物中多隔室聚集体的直接证据。

Direct evidence of multicompartment aggregates in polyelectrolyte-charged liposome complexes.

作者信息

Bordi F, Cametti C, Sennato S, Diociaiuti M

机构信息

Dipartimento di Fisica, Università di Roma La Sapienza, Rome, Italy.

出版信息

Biophys J. 2006 Aug 15;91(4):1513-20. doi: 10.1529/biophysj.106.085142. Epub 2006 May 26.

Abstract

By means of the combined use of dynamic light scattering and transmission electron microscopy measurements, we provide a direct evidence for the existence of an equilibrium cluster phase in the polyion-induced liposome aggregation, where the liposomes maintain their integrity, with the ability of preserving the aqueous core content from the external medium. We prepared single liposomes containing, in their interior, different CsCl electrolyte solutions at different concentrations (0.1 and 0.01 M, respectively). During the polyion-induced complexation of a mixture of these two differently loaded liposomes, reversible aggregates form, whose multicompartmental structure reveals the simultaneous presence of nonfused liposomes. Clusters composed by mesoscopic-sized vesicles and realized by charged lipids coupled to oppositely charged polyions are playing an increasingly important role as model systems in a variety of phenomena in soft matter and for their potential use in biomedical applications as drug delivery systems. Aggregates of liposomes such as those described in this article, where the electrostatic interactions are the primary driving forces promoting aggregation, may represent a new and interesting class of colloids which give rise to a rich phenomenology with several unusual colloidal behaviors that deserve to be further investigated.

摘要

通过结合使用动态光散射和透射电子显微镜测量,我们为聚离子诱导的脂质体聚集过程中平衡簇相的存在提供了直接证据,在该过程中脂质体保持其完整性,并能够将水相核心内容物与外部介质隔离开来。我们制备了内部含有不同浓度(分别为0.1和0.01 M)的不同CsCl电解质溶液的单脂质体。在这两种不同负载的脂质体混合物的聚离子诱导络合过程中,形成了可逆聚集体,其多隔室结构揭示了未融合脂质体的同时存在。由介观尺寸囊泡组成并通过与带相反电荷的聚离子偶联的带电脂质实现的簇,作为软物质中各种现象的模型系统以及因其在生物医学应用中作为药物递送系统的潜在用途,正发挥着越来越重要的作用。本文所述的脂质体聚集体,其中静电相互作用是促进聚集的主要驱动力,可能代表了一类新的有趣胶体,它们产生了丰富的现象学,具有几种不寻常的胶体行为,值得进一步研究。

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