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The effect of pantothenic acid on the diet of growing chicks on energy utilization and body composition.

Two experiments were conducted to investigate the effects of varying levels of pantothenic acid on the efficiency of energy utilization and changes in body composition of the growing chick. The results indicate that a pantothenic acid deficiency does not interfere with the chick's ability to obtain metabolizable energy from the diet. The data do show that the efficiency of energy utilization and body composition were markedly affected when chicks were fed diets deficient in pantothenic acid. In both experiments, protein, fat and energy stores were significantly reduced when pantothenic acid-deficient diets were fed. Increased estimates of heat increment per gram of diet were observed when levels of pantothenic acid below the N.R.C. (1971) recommended level of 10 mg. per kg of diet were fed.

Animal Feed

[Body composition during the first two years of life: analysis with the potassium 40 method (author's transl)].

The potassium 40 method was used to determine the total amount of potassium in 51 premature babies, 52 newborns, and 24 infants. The mean body composition was calculated from the total amount of potassium and the body surface for various age groups via the method presented. Changes in body composition during the first two years of life and its significance for energy exchange were discussed.

Age Factors

Effect of adrenalectomy on weight gain and body composition of yellow obese mice (Ay/a).

It has been reported that the adrenal gland is essential to the development of obesity if Ay/a Yellow obese mice (Hausberger and Hausberger 1960). Since the actual body composition data to support this report has not been published, we attempted to duplicate this observation by adrenalectomy of the Yellow mice before the onset of obesity. Two groups of Yellow mice (Ay/a) and normal mice (a/a) were either sham operated or adrenalectomized at two months of age and at four months of age. Body weight was monitored until body gain had stopped. At that time the animals were sacrified and checked for completeness of adrenal removal. Body composition of dry matter, fat, protein, and ash was determined. Adrenalectomy caused a reduction of body fat of 33% and 30% in both the a/a Control and the Ay/a Yellow mice, respectively. The adrenalectomized Yellow mice were still fatter than adrenalectomized Controls (25.3% fat vs. 10.6% fat). Yellow and control adrenalectomized mice showed similar depression in growth rate. These data suggest that while the adrenal gland is essential for complete expression of the genetic potential for fat deposition, it may not be necessary for partial expression indicating a secondary role in the development of obesity in the Ay/a Yellow mouse.

Adrenal Glands

Gross body composition changes in patients with cancer of the uterine cervix treated with irradiation.

Gross body composition studies done on a group of 11 women with cervical cancer before and after completion of radiotherapy revealed moderate compositional changes. There was after irradiation a tendency towards weight loss, connected with some increase of relative total body water content and also its extracellular fraction. The weight loss was due to a decrease of body fat and cell mass, whereas extracellular spaces tended to increase. There was a tendency towards a drop in plasma sodium concentration and an increase of its total content in extracellular water. A significant drop of the potassium serum concentration was observed.

Adult

Effects of Lactiplantibacillus plantarum KABP051 Probiotic on Body Composition, Microbiome and Mood in Healthy Overweight Adults.

Obesity and mental health disorders are among the greatest public health challenges of the 21st century. Interestingly, an altered microbiome profile has been associated with both conditions. The aim of this randomized, double-blind, placebo-controlled clinical trial was to evaluate the effects of dietary supplementation with a specific probiotic strain (Lactiplantibacillus plantarum KABP051) on body composition and gut microbiome balance, together with measures of mood state, in a population of healthy overweight subjects. Sixty healthy, moderately stressed, nondepressed and overweight or obese volunteers were supplemented for 12 weeks with probiotic (L. plantarum KABP051; 1 billion colony forming units/day) or placebo (microcrystalline cellulose). The KABP051 group experienced significantly greater improvements compared with placebo on body composition measurements, including a reduction in body weight and waist circumference, which decreased in 1.97 &#xb1; 0.77 (mean &#xb1; SE) kg and 2.15 &#xb1; 0.81 (mean &#xb1; SE) cm versus placebo at the end of the intervention (both P < .05, mixed model for repeated measures [MMRM] and post-hoc analysis). Microbiome composition improved in KABP051 group, with significant increase in the relative abundance of Lactiplantibacillus spp. versus placebo. Body fat percentage, profile of mood states fatigue, and confusion sub-scores showed a global trend toward improvement compared with placebo, with the change at 12 weeks being significant in the three measurements in post-hoc analysis (P = .015, P = .014, and P = .016, respectively). No serious adverse events were registered during the intervention period. These results suggest that a specific strain of probiotic bacteria (L. plantarum KABP051) may have both metabolic and psychobiotic effects and may be beneficial for enhancing weight loss and body composition, improving energy (less fatigue) and mood levels while embarking on a healthy lifestyle regimen. ClinicalTrials.gov identifier: NCT06808061.

Humans

Body composition and adipose tissue cellularity before and after jejuno-ileostomy in severely obese subjects.

In severe obesity with adipose tissue hyperplasia it is difficult to achieve and sustain weight decrease by conventional therapy. Fifteen severely obese patients (mean body weight 135 kg) with hyperplastic obesity had a jejuno-ileostomy according to Payne to induce weight reduction by controlled malabsorption. Body composition, adipose tissue cellularity, and glucose tolerance were studied before and after the operation when the patients had reached a new stable weight (WS) a mean 21 months after surgery. Preoperative fat cell number was unchanged at follow-up in contrast to all other variables of body composition. Reductions in fat cell size were evenly distributed in different major subcutaneous regions. Body potassium was determined immediately after operation and at 6 months intervals until WS. The postoperative decrease stopped at 6 months, thus differing from the decrease in body weight. Significant positive correlations between the postoperative decrease in body weight or body fat, and preoperative body weight, body fat and body cell mass were analysed by multiple stepwise regression. Preoperative body weight and body fat were shown to predict postoperative weight loss at a leve of P less than 0.005. A positive correlation between body fat decrease and fat cell number could be explained hypothetically by an increased caloric demand in hyperplastic obesity.

Adipose Tissue

[Changes in body composition during various reducing diets].

A method of measuring body density is presented which allows much greater precision in calculating the fat content of the human body than the usual methods of under-water weighing. Using this method, body fat was determined for three groups: normal weight, moderately overweight, and obese subjects. In spite of vast amounts of energy stored in the obese patient, no advantages for the pre- or post-surgical phase result. The explanation for this paradoxical situation is seen in two factors: 1. The cardiovascular system is not capable of delivering more energy because mobilisation of fat depends on corresponding oxygen intake. 2. Aside from this, a metabolic limiting factor exists in the mobilisation of protein reserves for the production of glucose, which leads to a considerable protein loss the first few weeks of a period of abstinence. In posttraumatic or post-operative situations, this protein mobilisation is particularly strong, especially when connected with a high metabolic intake. The high nitrogen loss and/or the high metabolic rate, is illustrated on the basis of severe skull and brain traumas. The differences between absolute fasting and a 200kcal-protein formula diet were experimentally investigated. The nitrogen loss under the protein diet was decisively less. An anabolic phase even reappeared after three weeks of the diet. The 200kcal-diet therefore represents a means of pre-operative weight reduction without protein loss. The alterations in body composition are almost exclusively the results of reduction in excess fat. This is demonstrated by means of clinical examples.

Body Composition

Metabolic rate and body composition in rats nutritionally deprived before or after weaning.

In order to manipulate cell size and cell number, rats were subjected to nutrient restriction either prenatally and until weaning at 3 weeks (group I), or from 3 until 10 weeks (group II). Body weights of group I rats were 30% of normal at the height of deprivation at 3 weeks. By 16 weeks of age maximum weights were reached, which remained subnormal in the majority; by 26 weeks only one of six had attained a normal weight. Body weights of group II were 27% of normal at the height of deprivation at 10 weeks; subsequently, only one of six did not recover. The weight, protein, and DNA content of liver, kidney, and heart were significantly decreased. The combined weight and protein content of the three organs was 30% of normal in group I and 25% of normal in group II; the DNA content of the three organs was 57% and 38% of normal in group I and group II, respectively. The greater deficit in weight than DNA content, and the mean protein/DNA ratios reflect a decrease in cell size (or increase in the cell density) of the three organs, which was greater in group I (60%) than group II (71%). Muscle cell density was increased in group I, but not in group II. At 16 weeks of age all parameters were similar in the two experimental groups (ranging from 68% to 82% or normal). Organ weight, protein, and DNA content remained deficient only in group I; these values were 74%, 70%, and 77% of normal, respectively, at 32 weeks. The deficit was proportionate to the deficit in body weight. The basal metabolic rate was measured 17-20 hr after food removal (BMR) on the day the animals were killed. In group I and II correlations between the BMR and four parameters of body composition were linear during a 4-period at the height of deprivation. Comparison of means from the regressions showed no difference between group I and II, or between these groups and normal controls with regard to the BMR per body weight, organ weight, and organ protein. The BMR per mg DNA was lower in group I and II than in normal control rats (P less than 0.05). The BMR of normal rats age 3-32 weeks showed a curvilinear correlation with body weight (BWt), BMR = 1.24 BWt0.583; organ weight (OWt), BMR = 4.30 OWt0.766; and organ protein (OPr), BMR = 4.30 OPr0.604. By contrast, the regression on DNA was linear (BMR = 7.97 + 0.449), although marked changes in body composition occurred between 3 and 32 weeks.

Animals

Effects of proteins and their corresponding amino acid mixtures on nitrogen balance and body composition in the growing rat.

The efficiencies of nitrogen utilization from intact proteins (casein, gluten, soybean, egg albumin) were compared to that of the respective synthetic amino acid mixtures. Food intake, growth, NER (nitrogen efficiency ratio), (Nitrogen retained/Nitrogen intake) X 100, BV (biological value), TD (true digestibility), liver weight and body composition were estimated on growing rats. Rats fed amino acid mixtures simulating casein, egg albumin and soybean consumed more food and showed more rapid growth than rats fed the intact proteins. Differences in nitrogen utilization and body composition were occasionally observed between the respective intact protein and amino acid mixtures but were in most cases not significant. It is concluded that nutrition with intact proteins cannot be assumed to be equivalent to nutrition with the corresponding amino acid mixture. However, general differences between the two types of feeding regimens were not obvious since the results were influenced by factors such as the amino acid composition of the protein and the amino acid mixture as well as the methodology used for nutritional evaluation. (Nitrogen retained/Nitrogen intake) X 100 and BV but not NER of an amino acid mixture formulated according to a commercial elementary diet was found to be low compared to casein.

Amino Acids

The effects of castration on body composition, adipose tissue cellularity and lipid and carbohydrate metabolism in adult male rats.

Gonadal hormones affect body composition, food intake, weight gain and serum lipids in numerous species including man. In this study, mature male Sprague-Dawley rats were castrated or sham-operated at 16 weeks of age. During the 6-week observation period with weekly records of food intake and weight gain, these parameters were significantly lower in the castrated group. The decrease in food intake in this group could not account for the difference in body weight between the groups, indicating a lower feed utilisation in the castrates. At sacrifice accessory reproductive organs, the levator ani muscle, thymus and adrenals were dissected for determination of organ weight and histology, revealing significant reductions in the accessory reproductive organs and levator ani of the castrates. The thymus was significantly heavier in the castrated animals. No differences were found in the adrenals. Two of the sham-operated animals had signs of accidental functional castration. The proportion of body cell mass and total lipid of the carcass was the same in both groups. Significant reductions in adipocyte weights were found in the epididymal depots of the castrated rats. Blood samples taken at sacrifice in pentobarbital anaesthesia were analysed for glucose, insulin, triglycerides, cholesterol, FFA, glycerol and protein. Statistically significant reductions in triglycerides and protein were recorded in the castrated animals without any significant changes in the other parameters studied. The results are discussed with reference to the age of castration and the importance of the reduced food intake in castrated animals.

Adipose Tissue

The effects of single infusion of hypertonic sodium bicarbonate on body composition in neonates with acidosis.

Acid-base equilibrium and plasma and red blood cell water and solute were evaluated in a group of asphyxiated, acidotic neonates prior to and following infusion of hypertonic NaHCO3. The dose was calculated to correct the deficit of base in a bicarbonate space of 400 ml/kg and was given at a rate of 0.3 mM NaHCO3/kg/minute. All of the infants with RDS and two of the five with other forms of asphyxia received ventilatory assistance during the infusion. The quantity of base infused was sufficient to alter acid-base balance and shift whole blood and red blood cell pH values toward normal. The changes in body composition 3 minutes following the infusion indicate that the osmotic load imposed by the hypertonic NaHCO3 caused a shift of solute-free water into the interstitial and intravascular fluids. During the period from 3 to 30 minutes following the infusion there was redistribution of extracellular water and solute so that plasma volume and [Na]PL decreased. Since there was no evidence of an intracellular shift of solute, we hypothesize that the changes in body composition between 3 and 30 minutes postinfusion were in part the consequence of gradual penetration of transcellular fluids by Na. Osmotic inactivation of ECF Na by sequestration with connective tissue polyelectrolytes may also play a role. These studies' do not provide an answer to the clinical problem of whether the beneficial effects of prompt correction metabolic acidosis outweigh the potenially harmful effect of the osmotic alterations that accompany rapid infusion of hypertonic NaHCO3.

Acid-Base Equilibrium

Responses to intensive training and methandrostenelone administration: II. Hormonal, organ weights, muscle weights and body composition.

The hormonal levels of the gonadotropins, the weight of selected organs and of the triceps surae as well as body composition were determined in Sprague Dawley rats at 3 and 6 weeks after intensive training with or without a methandrostenelone (Dianabol) supplement (0.35 mg/kg/day). The controls were sedentary rats of similar age and weight at the start of the experiment. The dianabol treated rats in the sedentary and exercise groups had a depression of plasma LH levels. There were no differences in body weight, specific gravity, lean body weight, fat or %fat between the two trained groups. Dianabol had no apparent effect on the measured parameters other than a depression of LH.

Analysis of Variance

Effects of Blood Flow Restriction Training at Different Levels of Arterial Occlusion Pressure on Body Composition and Athletic Performance in Youth Soccer Players: A Randomized Controlled Trial.

This study aimed to investigate the effects of low-load blood flow restriction training (BFRT) performed at different levels of arterial occlusion pressure (AOP) on body composition, maximal strength, and athletic performance in youth soccer players. Twenty-four male youth soccer players were randomly assigned to 40% AOP group, 60% AOP group, or control group. Participants in the BFRT groups performed lower-limb resistance training at 30% of one-repetition maximum (1RM) under the corresponding pressure conditions, whereas the control group trained without BFR. Training was conducted three times per week for six weeks. Body composition, back squat 1RM, countermovement jump (CMJ), T-test, and 30-m sprint performance were assessed before and after the intervention. Results showed that lower-limb muscle mass increased significantly in both the 40% AOP group (mean change = 0.55 kg, 95% CI: 0.13 to 0.97 kg, P = 0.010) and the 60% AOP group (mean change = 0.83 kg, 95% CI: 0.37 to 1.29 kg, P < 0.001), with the 60% AOP group showing significantly greater gains than the control group (between-group difference = 1.48 kg, 95% CI: 0.40 to 2.56 kg, P = 0.008). Back squat 1RM improved significantly in both the 40% AOP group (mean change = 6.50 kg, 95% CI: 3.90 to 9.10 kg, P < 0.001) and the 60% AOP group (mean change = 9.25 kg, 95% CI: 6.75 to 11.75 kg, P < 0.001), with the 60% AOP group demonstrating superior strength gains compared with the 40% AOP group (between-group difference = 2.94 kg, 95% CI: 0.20 to 5.68 kg, P = 0.048). CMJ height and T-test performance improved significantly in both the 40% AOP group (CMJ: mean change = 2.07 cm, 95% CI: 0.80 to 3.34 cm, P = 0.002; T-test: mean change = -0.23 s, 95% CI: -0.35 to -0.11 s, P = 0.001) and the 60% AOP group (CMJ: mean change = 2.65 cm, 95% CI: 1.00 to 4.30 cm, P = 0.003; T-test: mean change = -0.26 s, 95% CI: -0.38 to -0.14 s, P < 0.001), with no significant differences between the two BFRT groups (all P > 0.05). No significant changes were observed in 30-m sprint performance across groups (all P > 0.05). This study showed that six weeks of low-load (30% 1RM) blood flow restriction training performed at both 40% and 60% AOP was associated with improvements in lower-limb muscle mass, squat strength, and selected aspects of athletic performance in youth soccer players, compared with low-load training without BFR. While both pressure levels elicited comparable improvements in CMJ and agility performance, training at 60% AOP was associated with greater adaptations in lower-limb muscle mass and squat strength, with no additional benefits observed for 30-m sprint performance.

Humans

Changes in body composition and efficiency of food utilization for growth in young adult female rats before, during and after a period of food restriction.

Changes in body composition were studied in three groups of young adult female rats; the treatments were (1) ad libitum food intake to obtain normal growth, (2) restricted food intake to cause body weight loss, and (3) restricted followed by ad libitum food intake to obtain recovery of lost body weight. In each of the three groups of rats the percentage body water was linearly and negatively correlated with the percentage body fat, the weight of body water was linearly and positively correlated with the weight of body protein, and the ratio of the weight of body protein to water was relatively constant at 1:3.20 +/- 0.02 (mean +/- standard error). The percentage body water in the fat-free body was linearly and negatively correlated with fat-free body weight during normal growth between 109 and 334 g body weight but positively correlated during body weight loss and recovery. During recovery of body weight rats laid down more fat and less protein than during normal growth through the same body weight range and the percentage of digestible energy retained as body tissue was increased.

Animals

In vivo determination of body composition by tritium dilution in the rat.

Total body water was determined in vivo by tritium dilution in thirty-two male and female rats. Body water obtained by tritium dilution and body fat calculated from this value correlated significantly with body water and fat obtained by analysis (r 0.985, 0.855 respectively). There was no significant difference between values for fat assessed by the direct and indirect methods.

Animals

Studies on the body composition, fat distribution and fat cell size and number of 'Ad', a new obese mutant mouse.

1. Studies have been performed on the body composition, the fat distribution, the fat cell size, and the 'observable' fat cell number of a new obese mutant, the Adipose (Ad) mouse. The serum glucose and insulin concentrations have also been investigated. All studies were undertaken with animals aged 6 months. 2. The obese animals weighed over 50% more than the lean, but there was no difference in the body or tail lengths. 3. The obese animals had an increase in the weight of the liver, but the increase was only proportional to the increase in the total body-weight. 4. The carcasses of the obese mice contained more water as well as more fat than those of the lean. In the males the fat content was 3.9 times greater, while in the females it was increased by 5.5 times. 5. The nitrogen content of the defatted dry carcass was the same in both lean and obese animals but the total body protein was higher in the obese. 6. Fat was dissected from four major depots, gonadal, abdominal, hind subcutaneous and interscapular subcutaneous (including brown adipose tissue), and each was substantially larger in the obese animals. This indicated that the additional fat of the Ad mouse was not localized to any particular site. 7. In Ad males there was no over-all increase in the observed number of adipocytes, all the extra fat being accommodated by an increase in fat cell size (3.8 times). However, in Ad females there was a 3.3 fold increase in the number of observable fat cells as well as a 2.2-fold increase in fat cell size. 8. Non-fasted obese animals were not hyperglycaemic, but there was a 5.3-fold increase in the concentration of serum insulin. Hyperinsulinemia in the presence of normoglycaemia suggested that the obese animals were insulin resistant.

Adipose Tissue

On the body composition of obese children and in particular, sexual, age, and regional differences of skinfold thickness.

Recently in Japan, it has been observed that the physical dimensions of schoolboys and schoolgirls, specifically stature and body weight, are increasing year by year, and that spurts in increase in dimensions tend to happen earlier. The phenomena of accelerated growth are resulting in more obesity and leanness in childhood. Skinfold thickness, body density, body fat and lean body mass estimated from body density, creatinine excretion in the 24-hour urine, and muscular volume calculated from creatinine excretion were studied in obese children and normal children of 10 and 11 years of age, and the difference in the skinfold thickness by sec, age, and district in school children in five districts in southern Kyushu (1,002 boys and 931 girls) were examined. Reference was then made to the skinfold thickness of some of experienced and new sumo wrestlers of the Japan Professional Sumo Association whose nutrition intake is high and who show high ratios of diabetes mellitus and cardiac diseases. The results of the present study were also compared with the results of skinfold thickness measurements of children in Ghana and Kenya and those of the skinfold thickness and body composition measurements of Czechoslovakian children.

Age Factors

Body composition in chronic undernutrition.

Anthropometric (height, weight, and skinfolds), biochemical (serum proteins, albumin, and cholesterol), metabolic (nitrogen balance and creatinine excretion), hematological (plasma volume, hemoglobin, hematocrit, bone marrow hemosiderin, percent transferrin saturation, vitamin B12, and folic acid) variables and body water compartments (total and extracellular) have been measured in 49 adult male subjects who exhibited a wide range of nutritional states from normal to severely undernourished. Changes in body composition associated with moderate degrees of nutritional compromise were related principally to decreases in body cell mass (-15%). Body fat was normal. With severe nutritional involvement, both fat depots (-29%) and body cell mass (-29%) were significantly diminished. Muscle cell mass was more affected than other cells in the body (-41%). These data could indicate that in the group with moderate compromise, energy reserves (and hence energy balance) were maintained but dietary protein deficiencies were not compensated for. Both calorie and protein deficiencies were evident in the subjects with severe undernutrition. Multiple regression equations (r greater than 0.8) were developed that allow prediction of muscle cell mass, fat-free weight, and body cell mass from simple anthropometry and serum albumin levels. Decreases in serum albumin concentration were best related to deficits in muscle mass (r = 0.77).

Adolescent