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用胆固醇测量脂质双层的弯曲模量。

Measuring the bending modulus of lipid bilayers with cholesterol.

作者信息

Nagle John F

机构信息

Department of Physics, Carnegie Mellon University, Pittsburgh, Pennsylvania 15213, USA.

出版信息

Phys Rev E. 2021 Oct;104(4-1):044405. doi: 10.1103/PhysRevE.104.044405.

Abstract

The effect of cholesterol on the bending modulus of DOPC lipid bilayers has become a controversial topic that has implications for methods of measuring the bending modulus. Recent results using neutron spin echo and nuclear magnetic resonance relaxation methods that involve linear transport properties have conflicted with earlier results from purely equilibrium experiments that do not involve linear transport properties. A general discussion indicates how one can be misled by data obtained by methods that involve linear transport properties. It is then shown specifically how the recent neutron spin echo results can be interpreted to agree with the earlier purely equilibrium experimental results, thereby resolving that conflict. Regarding the nuclear magnetic resonance relaxation method, it is noted that current interpretation of the data is unclear regarding the identity of the modulus that is involved, and an alternative interpretation is explored that does not disagree with the results of the equilibrium experiments.

摘要

胆固醇对二油酰磷脂酰胆碱(DOPC)脂质双层弯曲模量的影响已成为一个有争议的话题,这对弯曲模量的测量方法有影响。最近使用涉及线性输运性质的中子自旋回波和核磁共振弛豫方法得到的结果,与早期不涉及线性输运性质的纯平衡实验结果相冲突。一般性讨论表明,涉及线性输运性质的方法所获得的数据如何会误导人。然后具体展示了如何解释最近的中子自旋回波结果,使其与早期的纯平衡实验结果一致,从而解决该冲突。关于核磁共振弛豫方法,指出目前对数据的解释在涉及的模量的特性方面尚不清楚,并探讨了一种与平衡实验结果不矛盾的替代解释。

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