Literature DB >> 4322719

The effects of iron deficiency on the hepatocyte: a biochemical and ultrastructural study.

P R Dallman, J R Goodman.   

Abstract

Effects of iron deficiency on the hepatocyte were studied quantitatively in the rat by combining ultrastructural and biochemical techniques. After 3-8 wk of an iron-deficient diet, the percentage of cytoplasm occupied by mitochondria increased progressively compared with complete diet values. The increment resulted primarily from an enlargement of individual mitochondria rather than from an increased mitochondrial number. Many mitochondria were completely divided by a double membrane, often at a point of constriction. After 2 days of iron administration, mitochondria were of heterogeneous size, shape, and electron opacity. After 5 days, essentially all mitochondria had become normal in configuration. The rate of reversal of the morphological abnormality was more rapid than would be anticipated if it coincided with known rates of renewal of mitochondrial DNA or protein. The concentrations of mitochondrial cytochromes were more rapidly depressed as a result of iron deprivation than those of microsomal cytochromes. Cytochromes c and a were decreased after 3 and 8 wk of exposure to the deficient regimen. Cytochrome P 450 was not decreased after a 3 wk exposure to the deficient diet and responded normally to phenobarbital treatment with a fourfold increase in total hepatic content; its concentration was depressed only after 8 wk of exposure to the deficient diet. There was no reduction in cytochrome b(5) concentration.

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Year:  1971        PMID: 4322719      PMCID: PMC2108232          DOI: 10.1083/jcb.48.1.79

Source DB:  PubMed          Journal:  J Cell Biol        ISSN: 0021-9525            Impact factor:   10.539


  32 in total

1.  FOCAL DEGRADATION AS A BIOLOGICAL PROCESS.

Authors:  H SWIFT; Z HRUBAN
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2.  A METHOD FOR THE SIMULTANEOUS QUANTITATIVE ESTIMATION OF CYTOCHROMES A, B, C1, AND C IN MITOCHONDRIA.

Authors:  J N WILLIAMS
Journal:  Arch Biochem Biophys       Date:  1964-09       Impact factor: 4.013

3.  Iron enzymes in iron deficiency. I. Cytochrome c.

Authors:  E BEUTLER
Journal:  Am J Med Sci       Date:  1957-11       Impact factor: 2.378

4.  Studies on copper metabolism. XX. Enzyme activities and iron metabolism in copper and iron deficiencies.

Authors:  G E CARTWRIGHT; C J GUBLER; M M WINTROBE
Journal:  J Biol Chem       Date:  1957-01       Impact factor: 5.157

5.  Structural and functional abnormalities in mitochondria isolated from ischemic dog myocardium.

Authors:  R B Jennings; P B Herdson; H M Sommers
Journal:  Lab Invest       Date:  1969-06       Impact factor: 5.662

6.  Cardiac hypertrophy in rats with iron and copper deficiency: quantitative contribution of mitochondrial enlargement.

Authors:  J R Goodman; J B Warshaw; P R Dallman
Journal:  Pediatr Res       Date:  1970-05       Impact factor: 3.756

7.  Energized configurations of heart mitochondria in situ.

Authors:  R A Harris; C H Williams; M Caldwell; D E Green; E Valdivia
Journal:  Science       Date:  1969-08-15       Impact factor: 47.728

8.  Effect of exercise and training on mitochondria of rat skeletal muscle.

Authors:  P D Gollnick; D W King
Journal:  Am J Physiol       Date:  1969-06

9.  Ultrastructural bases for metabolically linked mechanical activity in mitochondria. I. Reversible ultrastructural changes with change in metabolic steady state in isolated liver mitochondria.

Authors:  C R Hackenbrock
Journal:  J Cell Biol       Date:  1966-08       Impact factor: 10.539

10.  A quantitative stereological description of the ultrastructure of normal rat liver parenchymal cells.

Authors:  A V Loud
Journal:  J Cell Biol       Date:  1968-04       Impact factor: 10.539

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  14 in total

1.  Morphological abnormalities in lymphocyte mitochondria associated with iron-deficiency anaemia.

Authors:  J H Jarvis; A Jacobs
Journal:  J Clin Pathol       Date:  1974-12       Impact factor: 3.411

2.  The structure of spleen in experimentally induced iron deficiency anemia.

Authors:  R Rodvien; M Tavassoli; W H Crosby
Journal:  Am J Pathol       Date:  1974-05       Impact factor: 4.307

3.  Effect of cuprizone feeding on hepatic superoxide dismutase and cytochrome oxidase activities in mice.

Authors:  A K De; M Subramanian
Journal:  Experientia       Date:  1982-07-15

4.  The effects of iron deficiency on rat liver enzymes.

Authors:  R Bailey-Wood; L M Blayney; J R Muir; A Jacobs
Journal:  Br J Exp Pathol       Date:  1975-06

5.  Iron deficiency and iron excess damage mitochondria and mitochondrial DNA in rats.

Authors:  Patrick B Walter; Mitchell D Knutson; Andres Paler-Martinez; Sonia Lee; Yu Xu; Fernando E Viteri; Bruce N Ames
Journal:  Proc Natl Acad Sci U S A       Date:  2002-02-19       Impact factor: 11.205

6.  Ultrastructural and biochemical aspects of liver mitochondria during recovery from ethanol-induced alterations. Experimental evidence of mitochondrial division.

Authors:  O R Koch; L L Roatta de Conti; L P Bolaños; A O Stoppani
Journal:  Am J Pathol       Date:  1978-02       Impact factor: 4.307

Review 7.  Imbalance between thyroid hormones and the dopaminergic system might be central to the pathophysiology of restless legs syndrome: a hypothesis.

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Review 8.  Interactions between hepatic iron and lipid metabolism with possible relevance to steatohepatitis.

Authors:  Umbreen Ahmed; Patricia S Latham; Phillip S Oates
Journal:  World J Gastroenterol       Date:  2012-09-14       Impact factor: 5.742

9.  Different degrees of moderate iron deficiency modulate lipid metabolism of rats.

Authors:  G I Stangl; M Kirchgessner
Journal:  Lipids       Date:  1998-09       Impact factor: 1.880

10.  Protein-energy malnutrition in infant non-human primates (Macaca nemestrina). I. Correlation of biochemical changes with fine structural alterations in the liver.

Authors:  C O Enwonwu; B S Worthington; K L Jacobson
Journal:  Br J Exp Pathol       Date:  1977-02
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