Soveral G, Macey R I, Moura T F
Instituto de Tecnologia Químca e Biológica (ITQB), Universidade Nova de Lisboa, Oeiras, Portugal.
J Membr Biol. 1997 Aug 1;158(3):209-17. doi: 10.1007/s002329900258.
The mechanical properties of brush border membrane vesicles, BBMV, from rabbit kidney proximal tubule cells, were studied by measuring the initial and final equilibrium volumes of vesicles subjected to different osmotic shocks, using cellobiose as the impermeant solute in the preparation buffer. An elevated intracellular hydrostatic pressure was inferred from osmotic balance requirements in dilute solutions. For vesicles prepared in 18 and 85 mosM solutions, these pressures are close to 17 mosM (290 mm Hg). The corresponding membrane surface tension is 6.0 x 10(-5) N cm-1 while the membrane surface area is expanded by at least 2.2%. When these vesicles are exposed to very dilute solutions the internal hydrostatic pressure rises to an estimated 84 mosM (1444 mm Hg) just prior to lysis. The corresponding maximal surface tension (pre-lysis) is 18.7 x 10(-5) N cm-1, and the maximal expansion of membrane area is 6.8%. The calculated area compressibility elastic modulus was 2.8 x 10(-3) N cm-1.
利用纤维二糖作为制备缓冲液中的非渗透性溶质,通过测量受到不同渗透压冲击的刷状缘膜囊泡(BBMV)(来自兔肾近端小管细胞)的初始和最终平衡体积,研究了其机械性能。根据稀溶液中的渗透平衡要求推断出细胞内静水压力升高。对于在18和85毫渗摩尔溶液中制备的囊泡,这些压力接近17毫渗摩尔(290毫米汞柱)。相应的膜表面张力为6.0×10⁻⁵牛/厘米,而膜表面积至少扩大了2.2%。当这些囊泡暴露于非常稀的溶液中时,在裂解前内部静水压力升至估计的84毫渗摩尔(1444毫米汞柱)。相应的最大表面张力(裂解前)为18.7×10⁻⁵牛/厘米,膜面积的最大扩张为6.8%。计算出的面积压缩弹性模量为2.8×10⁻³牛/厘米。