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A model for self-sustained potential oscillation of lipid bilayer membranes induced by the gel-liquid crystal phase transitions.

机译:凝胶-液晶相变诱导脂质双层膜自持电位振荡的模型。

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摘要

To clarify the mechanism of self-sustained oscillation of the electric potential between the two solutions divided by a lipid bilayer membrane, a microscopic model of the membrane system is presented. It is assumed, on the basis of the observed results (Yoshikawa, K., T. Omachi, T. Ishii, Y. Kuroda, and K. liyama. 1985. Biochem. Biophys. Res. Commun. 133:740-744; Ishii, T., Y. Kuroda, T. Omochi, and K. Yoshikawa. 1986. Langmuir. 2:319-321; Toko, K., N. Nagashima, S. liyama, K. Yamafuji, and T. Kunitake. Chem. Lett. 1986:1375-1378), that the gel-liquid crystal phase transition of the membrane drives the potential oscillation. It is studied, by using the model, how and under what condition the repetitive phase transition may occur and induce the potential oscillation. The transitions are driven by the repetitive adsorption and desorption of proton by the membrane surface, actions that are induced the periodic reversal of the direction of protonic current. The essential conditions for the periodic reversal are (a) at least one kind of cations such as Na+ or K+ are included in the system except for proton, and the variation of their permeability across the membrane due to the phase transition is noticeably larger than that of proton permeability; and (b) the phase transition has a hysteresis. When these conditions are fulfilled, the self-sustained potential oscillation may be brought about by adjusting temperature, pH, and the cation concentration in the solutions on both sides of the membrane. Application of electric current across the membrane also induces or modifies the potential oscillation. Periodic, quasiperiodic, and chaotic oscillations appear especially, depending on the value of frequency of the applied alternating current.
机译:为了阐明脂质溶液双层膜分隔的两种溶液之间电势的自持振荡机制,提出了膜系统的微观模型。根据观察到的结果进行推测(Yoshikawa,K.,T.Omachi,T.Ishii,Y.Kuroda,和K.liyama.1985.Biochem.Biophys.Res.Commun.133:740-744; B.H.L。 Ishii,T.,黑田东彦,T。Omochi和K. Yoshikawa。1986. Langmuir。2:319-321; Toko,K.,N. Nashimashima,S. liyama,K. Yamafuji和T. Kunitake。 Chem。Lett。1986:1375-1378),膜的凝胶-液晶相变驱动电位振荡。通过使用该模型,研究了重复相变如何以及在何种条件下可能发生并引起潜在的振荡。过渡是由膜表面对质子的反复吸附和解吸驱动的,这些作用引起质子电流方向的周期性反转。周期性反转的必要条件是:(a)除质子外,系统中至少包含一种阳离子,例如Na +或K +,并且由于相变而导致的跨膜渗透性的变化明显大于质子。质子渗透性(b)相变具有滞后性。当满足这些条件时,可以通过调节膜两侧的溶液中的温度,pH值和阳离子浓度来实现自持电位振荡。跨膜施加电流也会引起或改变电位振荡。周期,准周期和混沌振荡尤其会出现,具体取决于所施加交流电的频率值。

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