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Precise and millidegree stable temperature control for fluorescence imaging: Application to phase transitions in lipid membranes

机译:精确和毫微稳定的荧光成像温度控制:在脂质膜的相变中的应用

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摘要

We present the design of a custom temperature-controlled chamber suitable for water or oil immersion fluorescence microscopy and its application to phase behavior in lipid bilayer vesicles. The apparatus is self-contained and portable, suitable for multiuser microscopy facilities. It offers a higher temperature resolution and stability than any comparable commercial apparatus, on the order of millidegrees. We demonstrate the utility of the system in the study of miscibility transitions in model membranes. The temperature-dependent phase behavior of model membrane systems that display liquid-ordered (Lo) phase coexistence with the liquid-disordered (Ld) phase is relevant to understanding the existence of heterogeneities in biological cell plasma membranes, ubiquitously termed “lipid rafts.”
机译:我们提出了适用于水或油浸荧光显微镜的定制温度控制室的设计,并将其应用于脂质双层囊泡的相行为。该设备是独立的且便携式的,适用于多用户显微镜设施。它提供了比任何同类商用设备更高的温度分辨率和稳定性,大约为毫度。我们证明了该系统在模型膜的混溶性转变研究中的实用性。显示液序(Lo)相与液序(Ld)相共存的模型膜系统的温度相关相行为与理解生物细胞质膜中普遍存在的异质性有关,这种膜被普遍称为“脂质筏”。

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