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电化学测量细胞膜中单细胞内胆固醇翻转。

Electrochemical Measurement of Cholesterol Flip-Flop in Plasma Membrane at Single Cells.

机构信息

School of Pharmacy and Key Laboratory of Targeted Intervention of Cardiovascular Disease, Collaborative Innovation Center for Cardiovascular Disease Translational Medicine, Nanjing Medical University, Nanjing, Jiangsu 211126, China.

Department of Pharmacy, Fudan University Shanghai Cancer Center, 270 Dong'an Road, Shanghai 200032, China.

出版信息

Anal Chem. 2020 Aug 18;92(16):10961-10965. doi: 10.1021/acs.analchem.0c01991. Epub 2020 Aug 2.

Abstract

Here, a microelectrode approach is established to measure the flip-flop rate of cholesterol in plasma membranes at single living cells. The initial validation is performed in a modeled phospholipid bilayer positioned at an interconnecting hole between two compartments, in which cholesterol in one compartment diffuses into the other one through a flip-flop movement in the bilayer and is then detected by a cholesterol oxidase-modified microelectrode. As compared with the time (140 ± 28 s) for free cholesterol transport in absence of the bilayer, a prolonged time (702 ± 42 s) is needed to observe the current increase in the presence of the bilayer. The difference in the time (562 s) gives the estimated flip-flop time of cholesterol in the bilayer. The position of the microelectrode in contact with a living cell and the injection of cholesterol inside the cell are further applied to measure the cholesterol flip-flop in the plasma membrane. The average time (1183 ± 146 s) is obtained to observe an additional current increase at the microelectrode, which reflects the cholesterol flip-flop rate in plasma membranes in single living cells. All these results support the establishment of this microelectrode approach for the study of the cholesterol flip-flop process in lipid membranes.

摘要

在这里,建立了一种微电极方法来测量在单个活细胞的质膜中胆固醇的翻转速率。在位于两个隔室之间的互连孔中的模型化磷脂双层中进行初始验证,其中胆固醇在一个隔室中通过双层中的翻转运动扩散到另一个隔室中,然后通过胆固醇氧化酶修饰的微电极检测到。与没有双层时自由胆固醇转运的时间(140±28s)相比,在存在双层的情况下观察到电流增加需要更长的时间(702±42s)。时间差(562s)给出了双层中胆固醇翻转的估计时间。进一步将微电极与活细胞接触的位置以及将胆固醇注入细胞内的位置应用于测量质膜中的胆固醇翻转。在微电极处观察到附加电流增加的平均时间(1183±146s)反映了单个活细胞中质膜中胆固醇翻转的速率。所有这些结果都支持建立这种微电极方法来研究脂质膜中的胆固醇翻转过程。

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