Guerrieri Ferruccio, Pellecchia Giovanna, Lopriore Barbara, Papa Sergio, Esterina Liquori Giuseppa, Ferri Domenico, Moro Loredana, Marra Ersilia, Greco Margherita
Department of Medical Biochemistry and Biology, University of Bari, Bari, Italy.
Eur J Biochem. 2002 Jul;269(13):3304-12. doi: 10.1046/j.1432-1033.2002.03010.x.
Mitochondrial bioenergetic impairment has been found in the organelles isolated from rat liver during the prereplicative phase of liver regeneration. To gain insight into the mechanism underlying this impairment, we investigated mitochondrial ultrastructure and membrane permeability properties in the course of liver regeneration after partial hepatectomy, with special interest to the role played by Ca2+ in this process. The results show that during the first day after partial hepatectomy, significant changes in the ultrastructure of mitochondria in situ occur. Mitochondrial swelling and release from mitochondria of both glutamate dehydrogenase and aspartate aminotransferase isoenzymes with an increase in the mitochondrial Ca2+ content were also observed. Cyclosporin-A proved to be able to prevent the changes in mitochondrial membrane permeability properties. At 24 h after partial hepatectomy, despite alteration in mitochondrial membrane permeability properties, no release of cytochrome c was found. The ultrastructure of mitochondria, the membrane permeability properties and the Ca2+ content returned to normal values during the replicative phase of liver regeneration. These results suggest that, during the prereplicative phase of liver regeneration, the changes in mitochondrial ultrastructure observed in liver specimens were correlated with Ca2+-induced permeability transition in mitochondria.
在肝再生的复制前期,从大鼠肝脏分离出的细胞器中发现了线粒体生物能量损伤。为深入了解这种损伤的潜在机制,我们研究了部分肝切除术后肝再生过程中线粒体的超微结构和膜通透性特性,特别关注Ca2+在此过程中所起的作用。结果表明,部分肝切除术后第一天,原位线粒体的超微结构发生了显著变化。还观察到线粒体肿胀以及谷氨酸脱氢酶和天冬氨酸转氨酶同工酶从线粒体中释放,同时线粒体Ca2+含量增加。事实证明,环孢素A能够预防线粒体膜通透性特性的变化。部分肝切除术后24小时,尽管线粒体膜通透性特性发生改变,但未发现细胞色素c释放。在肝再生的复制期,线粒体的超微结构、膜通透性特性和Ca2+含量恢复到正常水平。这些结果表明,在肝再生的复制前期,肝脏标本中观察到的线粒体超微结构变化与Ca2+诱导的线粒体通透性转变相关。