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首页> 外文期刊>Colloids and Surfaces, B. Biointerfaces >Calcein permeation across phosphatidylcholine bilayer membrane: Effects of membrane fluidity, liposome size, and immobilization
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Calcein permeation across phosphatidylcholine bilayer membrane: Effects of membrane fluidity, liposome size, and immobilization

机译:钙黄绿素透过磷脂酰胆碱双层膜的渗透:膜流动性,脂质体大小和固定化的影响

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The permeation of calcein across the phospholipid bilayer membrane is a key phenomenon in the detection system using liposomes as a sensor unit. The behavior of the calcein release from the liposome was analyzed by a first-order kinetic to obtain the permeability coefficient, P-s [cm/s]. The P-s value for the neutral liposome, prepared by zwitterionic 1-palmitoyl-2-oleoyl-sn-glycero-3-phosphocholine (POPC), was found to depend on both the diameter of liposome and the temperature. The membrane fluidity of the POPC liposome, evaluated by the hydrophobic probe, 1-(4-trimethyl-aminophenyl)-6-diphenyl-1,3,5-hexatriene, was also dependent on the liposome diameter and the temperature. The P, values for various neutral liposomes under gel phase or liquid-crystalline phase were correlated with their membrane fluidity, although some data were a little scattered, possibly due to the lamellarity. It is therefore considered that the membrane fluidity dominates the permeability of calcein across the neutral phospholipid membrane. Based on the above results, the P, value for liposomes immobilized on the solid surface is discussed.
机译:钙黄绿素透过磷脂双层膜的渗透是使用脂质体作为传感器单元的检测系统中的关键现象。通过一级动力学分析钙黄绿素从脂质体释放的行为,以获得渗透系数P-s [cm / s]。发现由两性离子的1-棕榈酰基-2-油酰基-sn-甘油-3-磷酸胆碱(POPC)制得的中性脂质体的P-s值取决于脂质体的直径和温度。通过疏水探针1-(4-三甲基-氨基苯基)-6-二苯基-1,3,5-己三烯评估的POPC脂质体的膜流动性也取决于脂质体的直径和温度。凝胶相或液晶相下各种中性脂质体的P值与它们的膜流动性相关,尽管一些数据可能是由于层状性而有些分散。因此,认为膜的流动性主导钙黄绿素跨中性磷脂膜的渗透性。基于以上结果,讨论了固定在固体表面上的脂质体的P i值。

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