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Chemoselectively surface funtionalizable tethered bilayer lipid membrane for versatile membrane mimetic systems fabrication

机译:化学选择性表面可官能化的束缚双层脂质膜,用于通用膜模拟系统的制造

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摘要

A chemoselectively surface functionalizable tethered bilayer lipid membrane (tBLM) was developed via liposome immobilization, rupture and fusion processes. Briefly, introduction of triphenylphosphine (TP)-PEG-lipid into a liposome allows it to immobilize onto an azide surface through amide bond formation via Staudinger ligation. Subsequent rupture of the immobilized liposome followed by a second liposome fusion leads to the tBLM formation, which contains TP for further chemically selective modifications on its surface. The membrane fluidity and continuity of the tBLM were confirmed by confocal fluorescence microscopy. The tBLM was covalently functionalized with biomolecules such as azide-containing glycan and biotin in chemically selective fashion and under biocompatible condition, and thus provides a straightforward approach for multifunctional membrane mimetic system fabrication. In addition, the tBLM with incorporated transmembrane protein was demonstrated with an endothelial membrane protein thrombomodulin and its protein C activity was confirmed. The tBLM is very versatile as it can be adapted easily to different types of supporter for a variety of biological and biomedical research areas and applications.
机译:通过脂质体固定,断裂和融合过程,开发了一种化学选择性表面可官能化的拴系双层脂质膜(tBLM)。简而言之,将三苯基膦(TP)-PEG-脂质引入脂质体可使其通过施陶丁格连接通过酰胺键形成而固定在叠氮化物表面上。固定化脂质体的随后破裂,然后进行第二次脂质体融合,导致tBLM形成,该tBLM含有TP,用于在其表面进行进一步的化学选择性修饰。共聚焦荧光显微镜证实了tBLM的膜流动性和连续性。 tBLM与生物分子(如含叠氮化物的聚糖和生物素)以化学选择性方式并在生物相容性条件下共价官能化,因此为多功能膜模拟系统的制造提供了直接的方法。另外,证明了具有掺入的跨膜蛋白的tBLM与内皮膜蛋白血栓调节蛋白,并证实了其蛋白C活性。 tBLM用途广泛,因为它可以轻松适应各种生物学和生物医学研究领域和应用的不同类型的支持者。

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