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蛙心室肌中荧光素钠的扩散分布图。

Diffusion profiles of Na+-fluorescein in frog ventricular muscle.

作者信息

Salama G, Morad M

出版信息

Biophys J. 1983 Aug;43(2):225-9. doi: 10.1016/S0006-3495(83)84342-2.

Abstract

Frog ventricular muscle strips were placed in a single sucrose-gap chamber to measure the interdiffusion of solutes across the sucrose-Ringer's solution partition. Steady-state diffusion profiles of fluorescein sodium developed along the axis of the muscle in the physiological node by continuously perfusing the sucrose pool with 210-mM sucrose plus fluorescein (5-10 mM). Fluorescein was found to diffuse freely through the extracellular space of the ventricular muscle without binding to the tissue. The fluorescence of Na+-fluorescein in the muscle (measured at 530 +/- 30 nm) varied linearly with the dye concentration in the sucrose perfusate. The diffusion profiles of dye in the test node depended on the tightness or snaring of the muscle strip by the latex diaphragms, the diameter of the muscle strip, and changes in hydrostatic pressure between the sucrose and Ringer's solution pools. Fluorescein concentration in the cross section of test node closest to the latex partition (sucrose-Ringer's solution interface) ranged between 4-13% of the dye concentration in the sucrose pool. These values are more than five times smaller than those estimated theoretically, assuming free diffusion. The experimental findings indicate that the presence of a physical barrier, such as a rubber diaphragm, limits free interdiffusion of solutes across the sucrose gap. The presence of such a barrier thus prevents large concentration gradients from occurring in the extracellular spaces along the physiological node.

摘要

将青蛙心室肌条置于单个蔗糖间隙室中,以测量溶质在蔗糖 - 林格氏液分隔物间的相互扩散。通过用210 mM蔗糖加荧光素(5 - 10 mM)持续灌注蔗糖池,在生理节段中沿肌肉轴形成了荧光素钠的稳态扩散分布图。发现荧光素可在心室肌的细胞外空间自由扩散,且不与组织结合。肌肉中Na⁺ - 荧光素的荧光(在530 ± 30 nm处测量)与蔗糖灌注液中的染料浓度呈线性变化。测试节段中染料的扩散分布图取决于乳胶隔膜对肌条的束缚程度或勒紧程度、肌条的直径以及蔗糖池和林格氏液池之间静水压力的变化。最靠近乳胶分隔物(蔗糖 - 林格氏液界面)的测试节段横截面中的荧光素浓度范围为蔗糖池中染料浓度的4% - 13%。假设自由扩散,这些值比理论估计值小超过五倍。实验结果表明,诸如橡胶隔膜之类的物理屏障的存在限制了溶质在蔗糖间隙间的自由相互扩散。因此,这种屏障的存在可防止沿生理节段的细胞外空间出现大的浓度梯度。

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