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从兔肌肉中脱落的巨大肌膜囊泡的抗张强度和扩张弹性。

Tensile strength and dilatational elasticity of giant sarcolemmal vesicles shed from rabbit muscle.

作者信息

Nichol J A, Hutter O F

机构信息

Institute of Physiology, University of Glasgow, UK.

出版信息

J Physiol. 1996 May 15;493 ( Pt 1)(Pt 1):187-98. doi: 10.1113/jphysiol.1996.sp021374.

Abstract
  1. Mechanical properties of the surface membrane of skeletal muscle were determined on sarcolemmal vesicles (mean diameter, 71 microns) shed by rabbit psoas muscle swelling in 140 mM KC1 containing collagenase. 2. Vesicles were stressed by partial aspiration into parallel bore pipettes. The isotropic membrane tension so created caused an increase in membrane area which expresses itself in an elongation of the vesicle projection into the pipette. 3. For individual vesicles, a linear relationship between membrane tension and membrane area increase was found up to the point when the vesicle burst, i.e. sarcolemmal vesicles behaved as perfectly elastic structures. 4. The maximum tension sarcolemmal vesicles could sustain before bursting was 12.4 +/- 0.2 mN m-1 (median +/- 95% confidence interval), and the corresponding fractional increase in membrane area was 0.026 +/- 0.005 (median +/- 95% confidence interval). The elastic modulus of area expansion was 490 +/- 88 mN m-1 (mean +/- S.D.). 5. In conformity with cited comparable work on red blood cells and artificial lipid vesicles, the strength and area elasticity of the skeletal muscle membrane are considered properties of the fluid lipid matrix of the membrane and of the degree to which the bilayer is perturbed by lipid-protein interaction.
摘要
  1. 在含有胶原酶的140 mM氯化钾溶液中,对因肿胀而从兔腰大肌脱落的肌膜小泡(平均直径71微米)测定骨骼肌表面膜的力学性能。2. 通过向平行孔吸管中部分抽吸来对小泡施加压力。由此产生的各向同性膜张力导致膜面积增加,这表现为小泡向吸管内突出部分的伸长。3. 对于单个小泡,在小泡破裂之前,发现膜张力与膜面积增加之间存在线性关系,即肌膜小泡表现为完美的弹性结构。4. 肌膜小泡破裂前能承受的最大张力为12.4±0.2 mN m-1(中位数±95%置信区间),相应的膜面积分数增加为0.026±0.005(中位数±95%置信区间)。面积膨胀弹性模量为490±88 mN m-1(平均值±标准差)。5. 与引用的关于红细胞和人工脂质小泡的类似研究一致,骨骼肌膜的强度和面积弹性被认为是膜的流体脂质基质的特性以及双层膜受脂质-蛋白质相互作用干扰程度的特性。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb36/1158960/154eefe71e0f/jphysiol00289-0191-a.jpg

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