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隔离介质对线粒体功能保存的影响。

Influence of isolation media on the preservation of mitochondrial functions.

作者信息

Siess E A

出版信息

Hoppe Seylers Z Physiol Chem. 1983 Mar;364(3):279-89. doi: 10.1515/bchm2.1983.364.1.279.

Abstract
  1. In the present study the influence of sucrose and mannitol-based isolation media on the degree of functional preservation of rat liver mitochondria has been investigated. Apparently intact mitochondria conventionally prepared with a 0.3M sucrose medium displayed significantly lower rates of state-3 respiration, pyruvate carboxylation, ATP hydrolysis and thiol group production than mitochondria prepared from the same livers with mannitol. 2) Extracts from the latter, furthermore, showed a significantly higher activity of succinate dehydrogenase activity, whereas no difference in glutamate dehydrogenase activity was demonstrable. 3) The low activities apparent with the sucrose medium could be brought to the level of the mannitol medium by the addition of potassium phosphate (4mM). A similar effect was exerted by K2SO4, whereas KCl and the respective sodium salts were significantly less effective. 4) Sucrose-prepared mitochondria display decreased contents of metabolites such as ATP, glutamate, citrate and malate. 5) Comparative studies with a variety of carbohydrates indicated that isolation media based on disaccharides are inferior to those based on monosaccharides in the preparation of functionally intact mitochondria from rat liver. 6) The results reported herein appear to be of general interest as sucrose-prepared mitochondria have been employed in the past in a great number of studies and are still widely used at present.
摘要
  1. 在本研究中,已对基于蔗糖和甘露醇的分离培养基对大鼠肝脏线粒体功能保存程度的影响进行了研究。用0.3M蔗糖培养基常规制备的明显完整的线粒体,其状态3呼吸、丙酮酸羧化、ATP水解和硫醇基团产生的速率显著低于用甘露醇从相同肝脏制备的线粒体。2) 此外,后者的提取物显示琥珀酸脱氢酶活性显著更高,而谷氨酸脱氢酶活性没有差异。3) 通过添加磷酸钾(4mM),蔗糖培养基中明显较低的活性可以提高到甘露醇培养基的水平。硫酸钾也有类似作用,而氯化钾和相应的钠盐效果明显较差。4) 用蔗糖制备的线粒体显示出ATP、谷氨酸、柠檬酸和苹果酸等代谢物含量降低。5) 用多种碳水化合物进行的比较研究表明,在从大鼠肝脏制备功能完整的线粒体方面,基于二糖的分离培养基不如基于单糖的培养基。6) 本文报道的结果似乎具有普遍意义,因为过去在大量研究中使用了用蔗糖制备的线粒体,并且目前仍被广泛使用。

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