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Thermal Stability of Synthetic Lipid Bicelles Encompassed by Siloxane Surfaces as Organic-Inorganic Hybrid Nanodiscs

机译:硅氧烷表面作为有机-无机杂化纳米圆盘所包含的合成脂质Bicells的热稳定性。

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摘要

We examined the thermal stability of organic-inorganic hybrid bicelles, which are lipid bilayer nanodiscs encompassed by siloxane surfaces. The hybrid bicelles were formed with a binary lipid mixture consisting of a long-chain alkoxysilane lipid and a short-chain phospholipid. It was clarified that the hybrid bicelles maintained a discoid assembly in water beyond the temperature of the gel to liquid-crystalline phase transition of the face-forming long-chain lipid, at which conventional phospholipid bicelles are transformed spontaneously to vesicles.
机译:我们检查了有机-无机杂化双细胞的热稳定性,它们是被硅氧烷表面包围的脂质双层纳米圆盘。用由长链烷氧基硅烷脂质和短链磷脂组成的二元脂质混合物形成杂化双细胞。已阐明,杂化双细胞在水中保持盘状组装体的温度超过了从凝胶到形成表面的长链脂质的液晶相变的温度,在该温度下常规磷脂双细胞自发转化为囊泡。

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