4.6 Article

Chloride concentrations in human hepatic cytosol and mitochondria are a function of age

Journal

Publisher

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.bbrc.2015.02.128

Keywords

Chloride; Liver; Cytosol; Mitochondria; Dichloroacetate; GSTZ1

Funding

  1. US Public Health Service [1 RO1 GM 099871]
  2. NCI
  3. NIH [HHSN 271 201 4000 45C]
  4. NIH/NCATS Clinical and Translational Science [UL1 TR000064]

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We recently reported that, in a concentration-dependent manner, chloride protects hepatic glutathione transferase zeta 1 from inactivation by dichloroacetate, an investigational drug used in treating various acquired and congenital metabolic diseases. Despite the importance of chloride ions in normal physiology, and decades of study of chloride transport across membranes, the literature lacks information on chloride concentrations in animal tissues other than blood. In this study we measured chloride concentrations in human liver samples from male and female donors aged 1 day to 84 years (n = 97). Because glutathione transferase zeta 1 is present in cytosol and, to a lesser extent, in mitochondria, we measured chloride in these fractions by high-performance liquid chromatography analysis following conversion of the free chloride to pentafluorobenzylchloride. We found that chloride concentration decreased with age in hepatic cytosol but increased in liver mitochondria. In addition, chloride concentrations in cytosol, (105.2 +/- 62.4 mM; range: 24.7-365.7 mM) were strikingly higher than those in mitochondria (4.2 +/- 3.8 mM; range 0.9-22.2 mM). These results suggest a possible explanation for clinical observations seen in patients treated with dichloroacetate, whereby children metabolize the drug more rapidly than adults following repeated doses, and also provide information that may influence our understanding of normal liver physiology. (C) 2015 Elsevier Inc. All rights reserved.

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