Wong S S, DiMicco J A, Standaert D G, Dretchen K L
J Gen Physiol. 1977 May;69(5):655-66. doi: 10.1085/jgp.69.5.655.
The effects of liquid fluorocarbons as bathing media were determined by use of in vitro neuromuscular preparations. Rat hemidiaphragms were bathed in either oxygenated fluorocarbon (FC) emulsion or standard oxygenated Krebs solution. Contractile force in response to simple supramaximal nerve stimuli as well as to high frequency stimulation was greater, while twitch:tetanus ratio was smaller in FC emulsion. With such medium, post-tetanic potentiation of contraction was also more consistently observed. Indirectly stimulated diaphragms survived longer in FC emulsion. After cessation of oxygenation, oxygen tension (rhoO(2)) of the medium declined more rapidly with Krebs than with FC emulsion; rhoO(2) directly correlated with force of contraction. Similarly, in the chick biventer cervicis preparation, FC emulsion enhanced nerve-stimulated force of contraction; returning the preparation to standard Krebs solution reversed this phenomenon. Dose-resonse curves of muscle contraction in response to acetycholine and KCl administration were shifted upward during FC emulsion superfusion. Frequency of miniature endplate potentials was lower in FC emulsion than that observed in Krebs solution, measured from the same cell of the rat diaphragm. Resting membrane potentials were also greater in muscle cells sampled from FC emulsion-bathed preparations. These data suggest that FC emulsion is superior to standard Krebs solution as a bathing medium for in vitro neuromuscular preparations by virtue of the high solubility of oxygen in it.
通过使用体外神经肌肉制剂来确定液态碳氟化合物作为浴用介质的作用。将大鼠半膈肌置于充氧碳氟化合物(FC)乳剂或标准充氧Krebs溶液中进行灌注。在FC乳剂中,对简单的超强神经刺激以及高频刺激产生的收缩力更大,而单收缩:强直收缩的比值更小。在这种介质中,也更一致地观察到强直收缩后的收缩增强现象。间接刺激的膈肌在FC乳剂中存活时间更长。停止充氧后,介质的氧张力(ρO₂)在Krebs溶液中比在FC乳剂中下降得更快;ρO₂与收缩力直接相关。同样,在鸡颈二腹肌制剂中,FC乳剂增强了神经刺激的收缩力;将制剂放回标准Krebs溶液中可逆转这一现象。在FC乳剂灌注期间,对乙酰胆碱和氯化钾给药产生的肌肉收缩剂量 - 反应曲线向上移动。从大鼠膈肌的同一细胞测量,FC乳剂中微小终板电位的频率低于在Krebs溶液中观察到的频率。从用FC乳剂灌注的制剂中取样的肌肉细胞的静息膜电位也更高。这些数据表明,由于氧气在其中的高溶解度,FC乳剂作为体外神经肌肉制剂的浴用介质优于标准Krebs溶液。