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Nano-meter-sized domain formation in lipid membranes observed by small angle neutron scattering

机译:小角度中子散射在脂质膜中形成纳米级畴

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摘要

Using a contrast matching technique of small angle neutron scattering ( SANS), we have investigated a phase separation to liquid-disordered and liquid-ordered phases on ternary small unilamellar vesicles (SUVs) composed of deuterated-saturated, hydrogenated-unsaturated phosphatidylcholine lipids and cholesterol, where the equilibrium size of these domains is constrained to less than 10 nm by the system size. Below a miscibility temperature, we observed characteristic scattering profiles with a maximum, indicating the formation of nano-meter-sized domains on the SUVs. The observed profiles can be described by a multi-domain model rather than a mono-domain model. The nano-meter-sized domain is agitated by thermal fluctuations and eventually ruptured, which may result in the multi-domain state. The kinetically trapped nano-meter-sized domains grow to a mono-domain state by decreasing temperature. Furthermore, between the miscibility and disorder-order transition temperature of saturated lipid, the integrated SANS intensity increased slightly, indicating the formation of nano-meter-sized heterogeneity prior to the domain nucleation.
机译:使用小角中子散射(SANS)的对比匹配技术,我们研究了由氘化饱和,氢化不饱和磷脂酰胆碱脂质和胆固醇组成的三元小单层囊泡(SUV)上的液相分离和液相排序相分离,其中这些域的平衡尺寸受系统尺寸限制为小于10 nm。在混溶温度以下,我们观察到最大的特征散射曲线,表明在SUV上形成了纳米尺寸的畴。可以通过多域模型而不是单域模型来描述观察到的轮廓。纳米尺寸的畴因热波动而搅动并最终破裂,这可能导致形成多畴状态。动力学俘获的纳米尺寸的畴通过降低温度而生长到单畴状态。此外,在饱和脂质的可混溶性和无序有序转变温度之间,SANS的积分强度略有增加,表明在域成核之前形成了纳米级的异质性。

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