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首页> 外文期刊>Chemistry and Physics of Lipids >Using small-angle neutron scattering to detect nanoscopic lipid domains (Review)
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Using small-angle neutron scattering to detect nanoscopic lipid domains (Review)

机译:使用小角度中子散射检测纳米脂质域(综述)

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摘要

The cell plasma membrane is a complex system, which is thought to be capable of exhibiting non-random lateral organization. Studies of live cells and model membranes have yielded mechanisms responsible for the formation, growth, and maintenance of nanoscopic heterogeneities, although the existence and mechanisms that give rise to these heterogeneities remain controversial. Small-angle neutron scattering (SANS) is a tool ideally suited to interrogate lateral heterogeneity in model membranes, primarily due to its unique spatial resolution (i.e., ~5-100 nm) and its ability to resolve structure with minimal perturbation to the membrane. In this review we examine several methods used to analyze the SANS signal arising from freely suspended unilamellar vesicles containing lateral heterogeneity. Specifically, we discuss an analytical model for a single, round domain on a spherical vesicle. We then discuss a numerical method that uses Monte Carlo simulation to describe systems with multiple domains and/or more complicated morphologies. Also discussed are several model-independent approaches that are sensitive to membrane heterogeneity. The review concludes with several recent applications of SANS to the study of membrane raft mixtures.
机译:细胞质膜是一个复杂的系统,被认为能够表现出非随机的横向组织。对活细胞和模型膜的研究产生了负责纳米异质性形成,生长和维持的机制,尽管引起这些异质性的存在和机制仍存在争议。小角度中子散射(SANS)是一种理想的工具,可用于探究模型膜的横向异质性,这主要是由于其独特的空间分辨率(即〜5-100 nm)以及分辨结构而对膜的扰动最小的能力。在这篇综述中,我们研究了几种用于分析由含有侧向异质性的自由悬浮单层囊泡引起的SANS信号的方法。具体来说,我们讨论了球形囊泡上单个圆形域的分析模型。然后,我们讨论一种使用蒙特卡洛模拟来描述具有多个域和/或更复杂的形态的系统的数值方法。还讨论了对膜异质性敏感的几种独立于模型的方法。综述以SANS在膜筏混合物研究中的几种最新应用作为总结。

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