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暴露于哇巴因和无钾林格液后完整肌纤维肌原纤维中的钾、钠、水及唐南电位变化

Potassium, sodium, water, and Donnan potential changes in the myofibrils of intact muscle fibres after exposure to ouabain and K-free Ringer.

作者信息

Fong C N, Hinke J A

机构信息

Department of Anatomy, Faculty of Health Sciences, University of Ottawa, Ont., Canada.

出版信息

Can J Physiol Pharmacol. 1988 Aug;66(8):1057-65. doi: 10.1139/y88-173.

Abstract

Frog sartorius muscles were superfused for 40 min with solutions of K-free Ringer, normal Ringer containing ouabain, or K-free Ringer containing ouabain. Changes in myoplasmic K and Na were measured with ion-selective microelectrodes; changes in total fibre K and Na were measured by means of atomic absorption spectroscopy; and changes in total fibre water content were obtained from wet and dry weights. Application of a two-compartment model permitted one to calculate (i) the K, Na, and water changes in the myofibrils and in the surrounding myoplasm (extramyofibrillar space); (ii) the changes in the transmyofibrillar Donnan potential (ED); and (iii) the changes in the ratio of the apparent association constants (kNa/kK) of the myofilament charge sites to Na and K. In the resting fibres, the K, Na, and water content of the myofibrils were calculated to be 82, 87, and 80% of total fibre content, respectively; ED was calculated as -4.5 mV; kNa/kK was calculated as 1.4. After a 40-min ouabain treatment, 12 mmol (per kg fibre water) of intrafibre K exchanged with 7.5 mmol of extrafibre Na, 6.4 mmol of myofibrillar K exchanged with an equal amount of extramyofibrillar Na, ED increased to -8.3 mV, and kNa/kK remained relatively constant. After a 40-min K-free treatment, the fibres gained 5.5 mmol of Na without any change in fibre K or water, the myofibrils shifted 9.3% of their water into the extramyofibrillar space instead of exchanging K for Na, ED increased to -10.7 mV, and kNa/kK decreased to 0.47.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

用无钾任氏液、含哇巴因的正常任氏液或含哇巴因的无钾任氏液对青蛙缝匠肌进行40分钟的灌流。用离子选择性微电极测量肌浆中钾和钠的变化;用原子吸收光谱法测量纤维总钾和钠的变化;从湿重和干重得出纤维总含水量的变化。应用双室模型可以计算:(i)肌原纤维和周围肌浆(肌原纤维外空间)中钾、钠和水的变化;(ii)跨肌原纤维唐南电位(ED)的变化;(iii)肌丝电荷位点与钠和钾的表观缔合常数之比(kNa/kK)的变化。在静息纤维中,肌原纤维的钾、钠和水含量分别计算为纤维总含量的82%、87%和80%;ED计算为-4.5 mV;kNa/kK计算为1.4。经过40分钟的哇巴因处理后,12 mmol(每千克纤维水)的纤维内钾与7.5 mmol的纤维外钠交换,6.4 mmol的肌原纤维钾与等量的肌原纤维外钠交换,ED增加到-8.3 mV,kNa/kK保持相对恒定。经过40分钟的无钾处理后,纤维获得5.5 mmol的钠,纤维钾或水无任何变化,肌原纤维将其9.3%的水转移到肌原纤维外空间,而不是钾与钠交换,ED增加到-10.7 mV,kNa/kK降低到0.47。(摘要截短于250字)

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