Extension and measurements on multicomponent phospholipid vesicles by use of dual-beam optical tweezers

M. Ichikawa, Y. Shitamichi, Y. Kimura
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引用次数: 1

Abstract

A micrometer-sized giant vesicle is studied by extending from the inside by using dual-beam optical tweezers in order to measure mechanical properties such as bending rigidity and surface tension of the membrane. As a micrometer-sized vesicle is extended, its shape gradually changes from a sphere to a lemon-shape, and discretely the lemon-shape deforms into a shape of a tube beside a sphere or a lemon part. The surface tension and the bending rigidity of the lipid membrane are obtained from the measured force-extension curve. In the one-phase vesicle, it is found that the surface tension is increasing as the charged component increasing, but the bending rigidity remains almost constant. In the phase-separated vesicle, the characteristic deformation different from one in the one-phase vesicle has been observed.
双光束光镊对多组分磷脂囊泡的扩展和测量
利用双光束光镊对微米大小的巨型囊泡进行了研究,从内部向外延伸,测量了膜的弯曲刚度和表面张力等力学性能。随着微米大小的囊泡的延伸,其形状逐渐由球形变为柠檬形,而柠檬形又离散地变形为球体或柠檬部分旁边的管状。由测得的力-伸曲线得到了脂膜的表面张力和弯曲刚度。在单相囊泡中,表面张力随电荷分量的增加而增加,但弯曲刚度几乎保持不变。在相分离囊泡中,观察到不同于单相囊泡的特征变形。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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