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Biomedical subjects

P V Hegarty

Publications and source records attributed to P V Hegarty.

At least 19 recordsLinked to original sources

Effect of level of dietary protein and total or partial starvation on catalase and superoxide dismutase activity in cardiac and skeletal muscles in young rats.

In cells the level of potentially toxic superoxide radical (O2-) is controlled by superoxide dismutase (SOD); the level of hydrogen peroxide (H2O2), also potentially toxic, is controlled by catalase and glutathione peroxidase. To study the effects of altered food intake or dietary protein content on SOD and catalase in cardiac and skeletal muscles, young rats were fed ad libitum diets containing 3, 6 or 25% casein or were subjected to total or partial food restriction (resulting in similar body weight losses). Rats fed a diet containing 3 or 6% casein had much lower growth rates than those fed 25% casein, but the muscle catalase activities were similar in all three groups. Catalase activities in muscles of rats whose food intake was restricted were twice those in rats fed ad libitum. Rats fed ad libitum had higher muscle SOD activities at 41 days of age than did 25-day-old rats, irrespective of the amount of dietary protein or the rate of growth. Twenty-five-day-old rats whose food intake was totally restricted for 2 days had skeletal muscle SOD activities similar to the higher activities seen at 41 days of age in ad libitum-fed rats, but SOD activity in the heart was unchanged after food restriction. The responses of catalase and SOD in muscles differ from the responses reported for these enzymes in liver and erythrocytes when food intake or dietary protein is altered.

Analysis of Variance

Copper-zinc and manganese superoxide dismutase activities in cardiac and skeletal muscles during aging in male rats.

The activities of total superoxide dismutase (SOD) and the manganese (Mn SOD) and copper-zinc (Cu-Zn SOD) forms were determined in the supernatant fraction of heart, liver and six skeletal muscles from rats during aging. Total SOD activity increased in most muscles between 3 and 23 months of age. There was no change in activity in liver between 3 and 19 months of age. The increase in total activity in heart was due to increased Mn SOD activity, whereas increases in skeletal muscles were due to Cu-Zn SOD or to both Cu-Zn and Mn SOD. The nutritional implications during aging are discussed.

Aging

Evidence for increased peroxidative activity in muscles from streptozotocin-diabetic rats.

The ability of cardiac and skeletal muscles from diabetic rats to metabolize superoxide and hydrogen peroxide was determined by the activities of superoxide dismutase (SOD) and catalase, respectively. Male and female Sprague-Dawley rats, 43 days old, were made diabetic with a single intravenous injection of streptozotocin (70 mg/kg body weight). On the 80th day after injection the blood glucose concentration of these rats was increased fourfold, and the plasma insulin concentration was decreased four- to fivefold compared to controls. Body weights of male diabetic rats were 61% and those of female diabetic rats were 66% of their ad libitum-fed controls. The seven different skeletal muscles examined weighed less in the diabetic rats than in controls of the same age and body weight. The hearts of the diabetic rats weighed more than those of controls of the same age and body weight. Comparison to the body weight controls allowed the distinction of specific effects due to lack of insulin from effects due to retardation in muscle growth. Increased catalase activity in all muscles examined from diabetic rats (plantaris, gastrocnemius, and heart) suggested a response in catalase activity similar to that of starved rats. SOD activity was not altered in the diabetic rat skeletal muscles and erythrocytes, but was somewhat decreased in the heart.

Animals

The effect of acute dietary restriction on muscle fibre number in weanling rats.

1. Male Sprague-Dawley rats were allocated at 100 g into either an ad lib.-fed control group or a food-restricted group. The restricted group was fed for 9 d at 25% of ad lib. intake. Controls were killed at a body-weight of 100 g and 29 d of age. 2. The effects of food restriction on muscle weight, fibre number, fibre diameter, DNA, and protein were examined in three skeletal muscles, the soleus, plantaris and extensor digitorum longus (EDL). 3. Acute dietary restriction caused body- and muscle-weight loss and a decrease in both the number and cross-sectional area of muscle fibres in each of the muscles. 4. The restriction halted growth-related increases in DNA in all muscles and decreased the protein:DNA value in the plantaris and EDL. 5. These results indicate that present theories describing cellular development are not adequate to define growth potential or growth retardation of skeletal muscle.

Animals

Mineralization of different bones in streptozotocin-diabetic rats: study on the concentration of eight minerals.

Streptozotocin-induced diabetes was studied in male and female rats weighing 188 and 145 g, respectively, at the start of the experiment. After 79 days in the diabetic condition the weights and lengths of different bones were less in the diabetic rats than in two nondiabetic control groups, i.e., ad libitum fed and a group restricted in food intake to achieve the same body weight as the diabetic rats. The concentrations of calcium, phosphorus, and sodium were similar in the diabetic and nondiabetic groups, whereas the concentrations of iron and zinc were higher in the diabetic rats. Results for the concentration of potassium, magnesium, and chromium showed a less uniform pattern between groups and between males and females. It is concluded that the length and weight of bones in diabetic rats are less than nondiabetic rats of the same body weight. This results in a lower total amount of calcium, phosphorus, sodium, potassium, magnesium, and chromium. This observation was similar in all three bones studied. Therefore, prolonged streptozotocin-induced diabetes does interfere with the normal pattern of bone mineralization.

Animals

Electrocardiographic abnormalities in obese rats fed a commercially available liquid protein diet.

Male, obese and non-obese Osborne-Mendel rats were fed a commercially available liquid protein (LP) diet of poor nutritional quality in an amount proportional to that consumed by humans on this diet. Rats fed LP plus vitamins and minerals or a vitamin and mineral mixture only served as control groups. Electrocardiograms (ECG) were recorded weekly until the animals lost 45-50% of their original body weight. ECG's were normal in all groups at the start of the experiment. All rats consuming the LP diet only had arrhythmias. Intractable arrhythmias in the human have been of ventricular origin; in rats in this study various atrial disorders of an inconsistent nature were observed. Serum calcium was low in rats fed the LP diet, but normal in magnesium and potassium concentrations. Calcium, magnesium and potassium were in normal concentrations in cardiac and skeletal muscle, and in bone. Zinc and copper concentrations were low in hearts of rats fed the LP diet. The suggested role of calcium, magnesium and potassium in producing cardiac arrhythmias when subjects consume the liquid protein diet studied here as the sole source of calories is questioned.

Animals

Changes in aerobic and anaerobic metabolism in rat cardiac and skeletal muscles after total or partial dietary restrictions.

This study examined the effects of acute dietary restriction on aerobic and anaerobic metabolic capacity of skeletal and cardiac muscles. Male weanling Sprague-Dawley rats were fed a 28% casein diet to a body weight of 100 g. The control group was killed at 100 g and the experimental groups were starved to 70 g body weight by either 4-day total restriction (TR) or 9-day partial restriction (PR). The heart, soleus, extensor digitorum longus (EDL), biceps brachii, psoas and red and white portions of the gastrocnemius (GR and GW) were assayed for oxygen uptake and succinic dehydrogenase (SDH) and pyruvate kinase (PK) activity. Cytochrome c was also measured in the gastrocnemius and psoas. The decrease in muscle weight was similar to the 30% decrease in body weight with the exception of the soleus which decreased by only 10% due to either TR or PR. PK, an estimate of anaerobic capacity, appeared to increase per unit weight in all tissues after both TR and PR; however, total muscle PK remained unchanged. Total cytochrome c and SDH activity, estimate of aerobic capacity, decreased in all muscles after either treatment. The largest decreases in SDH were 38% in the soleus and 51% in the heart after TR and 50% in the GR and 48% in the GW after PR. Oxygen uptake increased in the soleus (20%) and heart (70%) but decreased in all other skeletal muscles with the greatest effect after PR (50%). This study has shown that there is a decrease in aerobic capacity during acute starvation and that total muscle anaerobic metabolic capacity remains near normal.

Aerobiosis

Effect of starvation on tissues from the young of four species, with emphasis on the number and diameter of skeletal muscular fibers.

Young rats, rabbits, guinea pigs, and hamsters were decreased in body weight by 39, 45, 34, and 35%, respectively, by a total deprivation of food for 3, 15, 4, and 4.5 days, respectively. The weight of the heart, liver, and kidneys from each of the four species (with the excepetion of the kidneys from the guinea pig) decreased significantly in the starved animals. After starvation in all four species, 0 to 15% of the original weight of the epididymal and perirenal fat pads remained. The effect of total starvation on the weight of skeletal muscles differed for the same muscle in different species and among the three muscles studied within a species. Starvation caused weight losses in the following muscles from the rat, rabbit, guinea pig, and hamster, respectively: soleus, 15, 8, 14, and 30% plantaris, 23, 54, 41 and 24%; biceps brachii, 27, 52, 42, and 29%. The significant loss of weight in the plantaris and biceps brachii muscles from rabbits and guinea pigs were caused by large decreases in the diameter of the fibers, with no change in the number of fibers. Soleus and plantaris muscles from hamsters decreased in weight by a reduction in fiber diameters but no change in the number of fibers; the weight of biceps brachii decreased by a reduction in fiber number only. A reduction in the number of fibers occurred in all muscles from starved rats; the diameter of the fibers was reduced in the plantaris and biceps brachii muscles. No structural damage to the fibers due to starvation was observed under the light microscope in any muscle from the four species.

Animals

Total fat and fatty acid composition of commercially available chocolate candies.

Forty different brands of chocolate candies were purchased in a supermarket. The wrappers were removed and coded, and the candy was re-wrapped in aluminum foil until analyzed. More than 60 percent of the samples had a polyunsaturated/saturated (P/S) ratio of less than 0.10. Although the candies examined had a higher carbohydrate than fat content, fat frequently contributed more calories in the candies containing more than 25 percent fat (15 of the 40 brands studied).

Cacao

Effects of streptozotocin-induced diabetes on the number and diameter of fibres in different skeletal muscles of the rat.

The number and diameter of fibres in three different muscles from streptozotocin-diabetic rats were compared to the same muscles from animals of two, non-diabetic, control groups. The animals of the weight control group were fed a restricted food intake so that they grew at the same rate as the diabetic animals, whereas the other group received the stock diet ad libitum. Although body weight was the same for the diabetic and the weight control rats, the muscles weighed less in the diabetic animals. This was reflected in trends to fibres with smaller diameters and to lower fibre number in the diabetic animals. These differences between diabetic and control animals became more significant when the number and diameter of fibres were used to calculate total cross sectional area. There was no damage to the fibres when examined under the light microscope. It is concluded that streptozotocin-diabetes has an adverse effect on the number and diameter of fibres in skeletal muscles.

Animals

Changes in skeletal muscle cellularity in starved and refed young rats.

1. All food was withdrawn from male weanling rats until a 40% loss of body-weight was attained. Another group of animals was treated similarly and then refed a stock diet until the original body-weight was attained. 2. The body-weight loss caused a significant reduction in the weight of the heart, kidney, liver and epididymal fat pads. Refeeding produced a return to the control weight of the heart and kidney, an increase in the weight of the liver and a deficit in the weight of the epididymal fat pads. 3. Body-weight loss caused a decrease in the weight of the three different muscles studied, and in the number and diameter of the fibres in each muscle. Refeeding restored the weight and cellularity of two of the three muscles to that of the control animals. The soleus muscle was heavier in the refed animals when compared to controls due to an increased fibre diameter. 4. It is concluded that the decrease in the number and diameter of muscle fibres during starvation in the rat can be restored on refeeding a stock diet.

Adipose Tissue

Hair zinc levels in rural Costa Rican infants and preschool children.

Correlations between hair zinc and age, sex, weight, and length were determined on 138 boys and girls aged 6 months to 4 years from a low socioeconomic region of rural Costa Rica. Zinc deficiency, as assessed by hair zinc concentrations of less than 70 microgram/g, was observed in only a few of these children. A negative correlation between hair zinc and growth parameters was obtained, which may reflect increased zinc needs during rapid growth. Females had significantly more zinc in hair than males of similar age. This study confirms previous findings that normally growing infants and preschool children have normal hair zinc levels.

Aging

The effects of vitamin E depletion and repletion on prostaglandin synthesis in semitendinosus muscle of young rabbits.

The effects of dietary vitamin E-depletion and repletion on the cyclooxygenase activity was studied in the semitendinosus muscle of rabbits. The prostaglandin (PG) cyclooxygenase system in rabbit semitendinosus muscle was characterized and found to depend on reduced glutathione and 1-epinephrine as cofactors. Skeletal muscle cyclooxygenase generates PGE2 and PGF2 alpha at a ratio approximately equal to one. Weanling New Zealand white rabbits were fed a vitamin E-deficient diet for 4 to 5 weeks. Controls received 50 mg dl-alpha-tocopherol acetate twice weekly. Vitamin E deficiency caused a significant reduction in cyclooxygenase activity but did not change the PGE2/PGF2 alpha ratio. Oral supplementation of tocopherol acetate promptly returned the cyclooxygenase activity back to the control values within 48 hours. The decreased cyclooxygenase activity explains in part the increased level of arachidonic acid in skeletal muscle phospholipid previously reported in this laboratory. The possible involvement of decreased prostaglandin endoperoxides with platelet aggregation in vitamin E deficiency is discussed.

Animals

The effects of vitamin E depletion and repletion on prostaglandin dehydrogenase activity in tissues of young rabbits.

The key enzyme controlling prostaglandin (PG) catabolism, 15-hydroxyprostaglandin dehydrogenase (PGDH), was characterized in rabbit tissues. The apparent Michaelis constant (Km) using PGE2 as substrate was found to be 5.3, 4.0, 4.0 and 7.1 microM for semitendinosus and soleus muscles, heart and kidney, respectively. The effect of dietary vitamin E depletion and repletion on the PGDH activity in these tissues was studied. Vitamin E deficiency caused an elevation of PGDH activity in rabbit skeletal muscles but not in the heart and kidney. Oral supplementation of tocopherol acetate to the deficient animals did not affect the skeletal muscle PGDH activity. A long period of refeeding (30 days) was required to suppress the elevated PGDH level to the control values. The data indicates a higher turnover of the PGs in the vitamin E-deficient rabbit skeletal muscles. The significance of such a change in connection to prostaglandin metabolism is discussed.

Animals

Comparison of morphological and biochemical parameters of growth in rat skeletal muscles.

Morphological and biochemical parameters of cellular growth of four skeletal muscles were examined in male Sprague-Dawley rats from 25 to 165 days of age. The number of muscle fibres decreased in the soleus (41%), plantaris (20%), extensor digitorum longus (25%), and biceps brachii (19%) from 25 to 165 days of age, while nuclear number increased in each muscle until approximately 81 days, with no additional change up to 165 days of age. Fusion of muscle fibres may possibly explain the apparent loss of fibres. During this period of growth, nuclear number correlated equally well with both fibre length and cross sectional area. However, transverse growth accounts for approximately 60% to the post-weanling increase in nuclear number.

Aging

Problems in the choice of a representative bone for mineral analysis: evidence from five bones of rats at two stages of development.

The concentration of calcium, phosphorus, magnesium, potassium, sodium, zinc, copper and iron, and moisture content differed among five different bones in young rats at two stages of development. The femur is considered in numerous studies of bone development to be representative of the pattern of mineralisation in all bones in the rat. The present study indicates that caution must be exercised in this generalisation, depending on the particular mineral and on the age of the rat.

Aging