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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Reversible Monolayer-Bilayer Transition in Supported Phospholipid LB Films under the Presence of Water: Morphological and Nanomechanical Behavior
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Reversible Monolayer-Bilayer Transition in Supported Phospholipid LB Films under the Presence of Water: Morphological and Nanomechanical Behavior

机译:在水存在下,在负载的磷脂Lb膜中的可逆单层双层过渡:形态学和纳米机械行为

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摘要

Mixed monolayer Langmuir-Blodgett (LB) films of 1,2-dipalmitoyl-sn-glycero-3-phosphocholine (DPPC) and cholesterol (Chol) in the 1:1 ratio have been prepared onto solid mica substrates. Upon immersion in water or in an aqueous HEPES solution (pH 7.4) the monolayer LB films were spontaneously converted into well-organized bilayers leaving free mica areas. The process has been demonstrated to be reversible upon removal of the aqueous solution, resulting in remarkably free of defects monolayers that are homogeneously distributed onto the mica. In addition, the nanomechanical properties exhibited by the as-formed bilayers have been determined by means of AFM breakthrough force studies. The bilayers formed by immersion of the monolayer in an aqueous media exhibit nanomechanical properties and stability under compression analogous to those of DPPC:Chol supported bilayers obtained by other methods previously described in the literature. Consequently, the hydration of a monolayer LB film has been revealed as an easy method to produce well-ordered bilayers that mimic the cell membrane and that could be used as model cell membranes.
机译:在1 1,2-二棕榈酰-sn-甘油-3-磷酸胆碱(DPPC)和胆固醇(CHOL)的混合单层朗缪尔 - 布洛杰特(LB)膜:1的比例已经制备在固体云母基材上。浸入水中或在含水HEPES水溶液(pH7.4)中,将单层LB膜自发地转化成良好组织的双层,离云母区无关。已经证明该方法在除去水溶液后可逆,从而显着不含偏离分布到云母上的单层缺陷。另外,通过AFM突破力研究确定了由AS形成的双层显示的纳米力学性质。通过浸入水性介质中的单层形成的双层表现出纳米力学性质和稳定性的压缩与DPPC的压缩:通过在文献中先前描述的其他方法获得的霍尔负载双层。因此,已经揭示了单层LB膜的水合作为制备模拟细胞膜的良好有序双层的易于使用的方法,并且可以用作模型细胞膜。

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