Slack E N, Bursell E
Biochim Biophys Acta. 1976 Dec 6;449(3):491-9. doi: 10.1016/0005-2728(76)90158-4.
Procedures for the isolation of mitochondria from dipteran flight muscle have been investigated in an attempt to determine the extent and to identify the causes of deterioration associated with isolation. In the light of the results obtained isolation procedures have been improved by minimising mechanical damage, avoiding the development of anoxic conditions, and by the use of an isolation medium of a more physiological nature, containing the potassium salt of an organic anion as the principal osmoeffector, phosphate as the principal buffer, and low concentrations of free Mg2+. The oxidative capacity of mitochondria isolated by the improved method is adequate to support the in vivo requirements of the flight system.
为了确定与分离相关的线粒体退化程度并找出其原因,人们对从双翅目飞行肌中分离线粒体的方法进行了研究。根据所获得的结果,通过尽量减少机械损伤、避免缺氧条件的产生,以及使用更具生理特性的分离介质(其中含有有机阴离子的钾盐作为主要渗透效应剂、磷酸盐作为主要缓冲剂以及低浓度的游离Mg2+),对分离方法进行了改进。采用改进方法分离得到的线粒体的氧化能力足以满足飞行系统在体内的需求。