STUDY OF THE SWELLING OF THE PHOSPHOLIPID BILAYER, DEPENDING ON THE ANGLE BETWEEN THE INCLINATION OF THE DIPOLE FRAGMENTS AND THE PLANE OF THE LAMELLA

M. Stepanyan
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Abstract

Using computer simulations and simultaneous X-ray diffraction at large and small angles, the dependence of the swelling coefficient of the phospholipid bilayer on the angle between the inclination of dipole fragments and the plane of the lamella was investigated. It was shown that in this case the balance between electrostatic, repulsive and van der Waals attraction forces is a particular importance. As the dipole angle increases, the repulsive forces of the electrostatic dipole-dipole interaction increase, resulting the increase of the bilayer thickness as a function of the number of –CH-groups in the phospholipid. At a certain angle the bilayer is destroyed. It is also shown that at certain small angles the bilayer takes a minimum thickness. In this case a phase transformation takes place and the system enters the “gel”-phase.
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磷脂双层膨胀的研究,取决于偶极子碎片的倾斜度和片层平面之间的角度
利用计算机模拟和大、小角度同时进行的x射线衍射,研究了磷脂双分子层膨胀系数与偶极子碎片倾斜角与片层平面夹角的关系。结果表明,在这种情况下,静电、斥力和范德华引力之间的平衡是特别重要的。随着偶极角的增大,静电偶极-偶极相互作用的斥力增大,导致双层厚度随磷脂中- ch基团数量的增加而增加。在一定角度双层结构被破坏。还表明,在某些小角度下,双层膜的厚度最小。在这种情况下,发生相变,系统进入“凝胶”相。
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