Distribution and metabolism of iron in muscles of iron-deficient rats
- 1 March 1982
- journal article
- Published by Springer Nature in Biological Trace Element Research
- Vol. 4 (1) , 45-56
- https://doi.org/10.1007/bf02789133
Abstract
Iron-deficiency anemia leads directly to both reduced hemoglobin levels and work performance in humans and experimental animals. In an attempt to observe a direct link between work performance and insufficient iron at the cellular level, we produced severe iron deficiency in female weanling Sprague-Dawley rats following five weeks on a low-iron diet. Deficient rats were compared with normal animals to observe major changes in hematological parameters, body weight, and growth of certain organs and tissues. The overall growth of iron-deficient animals was approximately 50% of normal. The ratio of organ weight: body weight increased in heart, liver, spleen, kidney, brain, and soleus muscle in response to iron deficiency. Further, mitochondria from heart and red muscle retained their iron more effectively under the stress of iron deficiency than mitochondria from liver and spleen. Metabolism of iron in normal and depleted tissue was measured using tracer amounts of59Fe administered orally. As expected, there was greater uptake of tracer iron by iron-deficient animals. The major organ of iron accumulation was the spleen, but significant amounts of isotope were also localized in heart and brain. In all muscle tissue examined the59Fe preferentially entered the mitochondria. Enhanced mitochondrial uptake of iron prior to any detectable change in the hemoglobin level in experimental animals may be indicative of nonhemoglobin related biochemical changes and/or decrements in work capacity.Keywords
This publication has 22 references indexed in Scilit:
- Lactic Acidosis as a Result of Iron DeficiencyJournal of Clinical Investigation, 1979
- A simple specific method for the determination of the hemoglobin content of tissue homogenatesClinica Chimica Acta; International Journal of Clinical Chemistry, 1979
- Work Capacity, Heart Rate and Blood Lactate Responses to Iron TreatmentBritish Journal of Haematology, 1979
- Different yield and properties of mitochondria from skeletal muscle of normal hamstersZeitschrift für Die Gesamte Experimentelle Medizin, 1978
- Iron deficiency in the rat. Physiological and biochemical studies of muscle dysfunction.Journal of Clinical Investigation, 1976
- Determination of protein: A modification of the lowry method that gives a linear photometric responseAnalytical Biochemistry, 1972
- THE EFFECT OF IRON SUPPLEMENTATION ON THE PHYSICAL WORK CAPACITY IN THE ELDERLYActa Medica Scandinavica, 1970
- Myoglobin and cytochrome response during repair of iron deficiency in the rat.Journal of Clinical Investigation, 1965
- Iron Absorption: The Effect of an Iron-Deficient DietScience, 1964
- Biochemical and Osmotic Properties of Skeletal Muscle MitochondriaNature, 1954