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泊洛沙姆与脂质体的相互作用:等温滴定量热法研究。

Interaction of poloxamers with liposomes: an isothermal titration calorimetry study.

机构信息

Department of Chemistry, Institute for Biophysical Dynamics, The University of Chicago, Chicago, Illinois 60637, USA.

出版信息

J Phys Chem B. 2009 Nov 26;113(47):15522-31. doi: 10.1021/jp906331m.

Abstract

The interaction between lipid bilayers and poloxamers has recently attracted much attention, and contradicting effects of poloxamers have been revealed on the integrity of lipid membranes; poloxamers are reported to be either effective sealants or permeabilizers of cell membranes depending on the cell type. To elucidate poloxamer-membrane interactions, we study the roles played by the lipid bilayer phase structure, poloxamer concentration, and temperature using isothermal titration calorimetry (ITC). Our results indicate that the lipid bilayer phase structure plays a critical role in its interaction with poloxamers. Poloxamers are found to partition only into fluid-phase, not gel-phase, membranes. Moreover, the partitioning of poloxamers into fluid-phase liposomes increases with temperature, owing to the enhancement in both the membrane fluidity and the hydrophobicity of the poloxamer at elevated temperatures. Our ITC results also point to a saturation concentration of poloxamers, below which poloxamers can partition into a lipid bilayer without disrupting liposomes and above which they instead disintegrate liposomes into micelles. To address the long-standing question as to whether poloxamers migrate through the lipid bilayer after their adsorption onto preformed liposomes, two ITC protocols are used to cross-validate the distribution of poloxamers over the two leaflets in the bilayer. We find that on a short timescale (approximately 200 min) poloxamers partition into the outer leaflet of the fluid-phase lipid bilayer without much interactions with the inner leaflet. However, on a longer timescale (38 h), they are found to migrate through the bilayer and eventually establish an even distribution in both the inner and outer leaflets of the membrane.

摘要

近年来,脂质双层与泊洛沙姆之间的相互作用引起了广泛关注,泊洛沙姆对脂质膜的完整性表现出相互矛盾的影响;根据细胞类型的不同,泊洛沙姆被报道为细胞膜的有效密封剂或渗透剂。为了阐明泊洛沙姆-膜相互作用,我们使用等温滴定量热法(ITC)研究了脂质双层相结构、泊洛沙姆浓度和温度的作用。我们的结果表明,脂质双层相结构在其与泊洛沙姆的相互作用中起着关键作用。泊洛沙姆仅分配到流体相而不是凝胶相的膜中。此外,由于高温下膜流动性和泊洛沙姆疏水性的增强,泊洛沙姆分配到流体相脂质体中的比例随温度升高而增加。我们的 ITC 结果还表明泊洛沙姆存在饱和浓度,低于该浓度时,泊洛沙姆可以分配到脂质双层中而不会破坏脂质体,高于该浓度时,泊洛沙姆会将脂质体分解成胶束。为了解决泊洛沙姆在吸附到预先形成的脂质体后是否穿过脂质双层的长期存在的问题,我们使用两种 ITC 方案来交叉验证泊洛沙姆在双层中两个叶层上的分布。我们发现,在短时间尺度(约 200 分钟)内,泊洛沙姆分配到流体相脂质双层的外层,而与内层的相互作用很小。然而,在较长时间尺度(38 小时)内,它们被发现穿过双层并最终在膜的内层和外层中均匀分布。

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