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Phase Behavior of Charged Vesicles Under Symmetric and Asymmetric Solution Conditions Monitored with Fluorescence Microscopy

机译:荧光显微镜监测带电囊泡在对称和不对称溶液条件下的相行为

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摘要

Phase-separated giant unilamellar vesicles (GUVs) exhibiting coexisting liquid-ordered and liquid-disordered domains are a common biophysical tool to investigate the lipid raft hypothesis. Numerous studies, however, neglect the impact of physiological solution conditions. On that account, the current work presents the effect of high-salinity buffer and trans-membrane solution asymmetry on liquid-liquid phase separation in charged GUVs grown from dioleylphosphatidylglycerol, egg sphingomyelin, and cholesterol. The effects were studied under isothermal and varying temperature conditions.We describe equipment and experimental strategies applicable for monitoring the stability of coexisting liquid domains in charged vesicles under symmetric and asymmetric high-salinity solution conditions. This includes an approach to prepare charged multicomponent GUVs in high-salinity buffer at high temperatures. The protocol entails the option to perform a partial exchange of the external solution by a simple dilution step while minimizing the vesicle dilution. An alternative approach is presented utilizing a microfluidic device that allows for a complete external solution exchange. The solution effects on phase separation were also studied under varying temperatures. To this end, we present the basic design and utility of an in-house built temperature control chamber. Furthermore, we reflect on the assessment of the GUV phase state, pitfalls associated with it and how to circumvent them.
机译:表现出并存的液体有序和液体无序域的相分离的巨型单层囊泡(GUV)是研究脂质筏假说的常见生物物理工具。但是,许多研究忽略了生理溶液条件的影响。因此,目前的工作提出了高盐度缓冲液和跨膜溶液的不对称性对由二油基磷脂酰甘油,卵鞘磷脂和胆固醇生长的带电GUV中液-液相分离的影响。在等温和不同温度条件下研究了这些影响。我们描述了可用于监测对称和非对称高盐溶液条件下带电囊泡中共存液域稳定性的设备和实验策略。这包括在高温下在高盐度缓冲液中制备带电多组分GUV的方法。该方案需要选择通过简单的稀释步骤进行外部溶液的部分交换,同时将囊泡稀释降至最低。提出了利用微流体装置的替代方法,该装置允许完整的外部溶液交换。还研究了在不同温度下溶液对相分离的影响。为此,我们介绍了内部内置温度控制室的基本设计和实用性。此外,我们思考评估GUV相态,与之相关的陷阱以及如何规避它们。

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