Petrov A G, Usherwood P N
Biomolecular Layers Department, Institute of Solid State Physics, Bulgarian Academy of Sciences, Sofia.
Eur Biophys J. 1994;23(1):1-19. doi: 10.1007/BF00192201.
Physical and biophysical mechanisms of mechano-sensitivity of cell membranes are reviewed. The possible roles of the lipid matrix and of the cytoskeleton in membrane mechanoreception are discussed. Techniques for generation of static strains and dynamic curvatures of membrane patches are considered. A unified model for stress-activated and stress-inactivated ion channels under static strains is described. A review of work on stress-sensitive pores in lipid-peptide model membranes is presented. The possible role of flexoelectricity in mechano-electric transduction, e.g. in auditory receptors is discussed. Studies of flexoelectricity in model lipid membranes, lipid-peptide membranes and natural membranes containing ion channels are reviewed. Finally, possible applications in molecular electronics of mechanosensors employing some of the recognized principles of mechano-electric transduction in natural membranes are discussed.
本文综述了细胞膜机械敏感性的物理和生物物理机制。讨论了脂质基质和细胞骨架在膜机械感受中的可能作用。考虑了产生膜片静态应变和动态曲率的技术。描述了静态应变下应力激活和应力失活离子通道的统一模型。介绍了脂质肽模型膜中应力敏感孔的研究工作。讨论了挠曲电在机械电转换中的可能作用,例如在听觉感受器中的作用。综述了模型脂质膜、脂质肽膜和含离子通道的天然膜中挠曲电的研究。最后,讨论了利用天然膜中一些公认的机械电转换原理的机械传感器在分子电子学中的可能应用。