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J R Neville

Publications and source records attributed to J R Neville.

16 recordsLinked to original sources

Influence of dietary iron deficiency on hemoglobin, myoglobin, their respective reductases, and skeletal muscle mitochondrial respiration.

Male weanling rats were fed a control diet (46 ppm iron) or an iron-deficient diet (11 ppm iron) for 7 wk to determine the influence of iron deficiency on heme proteins and skeletal muscle mitochondrial respiration. At the end of 7 wk, the hemoglobin in the blood of the iron deficient rats was 35% less and skeletal muscle myoglobin was 20 to 37% less than in the control animals. The concentration of myoglobin in the heart was not appreciably diminished by iron deficiency. Cytochrome c concentration was 20% less in the heart and 35% less in the mixed-fiber gastrocnemius in the iron-deficient animals. Iron deficiency did not influence the activity of metmyoglobin reductase in either heart or skeletal muscle. There was about 30% more methemoglobin reductase activity in the red blood cells of the iron-deficient animals, which resulted in methemoglobin levels that were so low as to be virtually unmeasurable. In the iron-deficient rats, skeletal muscle mitochondrial respiration with either pyruvate-malate or palmitylcarnitine as substrate was 17 to 20% less than in the control animals. This study demonstrates that dietary iron deficiency of sufficient severity to reduce blood Hb and skeletal muscle myoglobin or cytochrome c also results in an impaired skeletal muscle oxidative capacity. The study also illustrates the preferential utilization of iron, not only between tissues, but within tissues, and tissue specific adaptive responses to iron deficiency.

Animals

Altered haem--haem interaction and tissue-oxygen supply: a theoretical analysis.

On the basis of its assumed invariance, the haem--haem interaction or shape of the oxyhaemoglobin dissociation curve is frequently ignored when considering the potential effect of haemoglobin-oxygen affinity (as characterized by the P50) on oxygen transport. This report reviews some experimental evidence with respect to this assumption and demonstrates the potential effect of altered haem--haem interaction on tissue-oxygen supply as distinguished from the effect of P50 or position change. Theoretically, haem--haem interaction values in the range that has been reported for apparently healthy human subjects can substantially modify oxygen transport to tissues, in some cases equalling or exceeding the effect from a similar range of P50 values. It is not presently clear to what extent this range may represent true variation as opposed to random technical error, but the possible implications for oxygen transport indicate that a more systematic evaluation of the problem is desirable.

Heme

Theoretical analysis of altitude tolerance and hemoglobin function.

The potential effect of changes in the position and shape of the oxyhemoglobin dissociation curve (ODC) in modifying altitude tolerance is quantitatively analyzed and discussed. The most frequently used criteria for oxygen affinity, the position or P50 of the ODC (oxygen pressure at 50% saturation) is shown to have slight influence on tissue oxygenation in terms of arteriovenous oxygen difference under steady-state, hypoxic-hypoxia conditions. Conversely, changes in the shape of the curve, also expressed as the cooperativity or heme-heme interaction, could substantially modify oxygen transport under these conditions. Published observations are reviewed which suggest that hemoglobin cooperativity is not normally invariant.

Altitude