No evidence of an impaired nutritional status in the early stage of schistosomiasis.
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Biomedical subjects
Publications and source records attributed to A De Lorenzo.
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OBJECTIVE: To evaluate the differences in the estimate of body fat percentage (%FM) and the amount (kg) of fat free mass (FFM) by different methods in 26 moderately active adolescents very similar in age, body fatness, and training status. METHODS: Mean (SD) age was 16.7 (0.9) years, height was 177.0 (5.1) cm, and weight 68.0 (5.2) kg. %FM was assessed using dual-energy x ray absorptiometry (DXA) and two skinfold prediction equations: that of Slaughter et al (%FM Sla) and that of Deurenberg et al (%FM Deu). In the same way, FFM was measured using DXA and different impedance equations: those of Suprasongsin et al (FFM Sup), Schaefer et al (FFM Sch), Houtkooper et al (FFM Hou), and Deurenberg et al (FFM Deu). To determine the interchangeability of the different methods of measuring %FM and FFM, one way analysis of variance, standard error (SE), and coefficient of variation (CV%) ((SD/mean) x 100) were used. RESULTS: On average, no significant statistical differences were observed between the values determined for %FM: DXA value, 11.7 (5.4%); %FM Sla, 10.9 (4.0)%; %FM Deu, 11.5 (2.3)%. On the other hand, SE and CV% between each pair of the three methods used showed very large variability. With regard to the measurement or prediction of FFM, the mean value measured by DXA was significantly higher than that predicted by the equation of Sch (+7.2 kg, p < 0.001), Deu (+3.2 kg, p < 0.001), and Hou (+2.6 kg, p < 0.001), whereas it was lower than that predicted by the equation of Sup (-1.6 kg, p < 0.05). The Hou and Deu values were the only two that, on average, did not differ in a statistically significant way, although they showed the highest CV%. CONCLUSIONS: In our sample of moderately active adolescents the estimated values for %FM and FFM appear to be highly dependent on method.
Knowledge of patient fluid distribution would be useful clinically. Both single-frequency (SF) and impedance modeling approaches are proposed. The high intercorrelation between body water compartments makes determining the best approach difficult. This study was conducted to evaluate the merits of an SF approach. Mathematical simulation was performed to determine the effect of tissue change on resistance and reactance. Dilution results were reanalyzed, and resistance and parallel reactance were used to predict the intracellular water for two groups. Results indicated that the amount of intracellular and extracellular water conduction at any SF can vary with tissue change, and reactance at any SF is affected by all tissue parameters. Modeling provided a good prediction of dilution intracellular and extracellular water, but an SF method did not. Intracellular, extracellular, and total body water were equally predicted at all frequencies by SF resistance and parallel reactance. Extracellular and intracellular water are best measured through modeling, because only at the zero and infinite frequencies are the results sensitive only to extracellular and intracellular water. At all other frequencies there are other effects.
Body composition is related to age, genetic factors, and hormonal patterns throughout life, Peak bone mass seems to be an important protective factor against osteoporosis, although diet and life-style (smoking, physical activity) are able to influence bone mass. While it is well known that estrogens exert a protective action against bone loss in postmenopausal women, the role of androgens is still not clear. Twenty-five women in the early postmenopausal period (age: 52.8 +/- 5.1 years) were measured by dual-energy x-ray absorptiometry (DXA) to assess the relationship between body composition (fat mass and lean mass), bone mineral content (BMC), bone mineral density (BMD) and androgen pattern. Waist/hip ratio was used to divide the study population in three groups: gynecoid (gluteo-femural fat distribution), android abdominal fat distribution), and intermediate. In all subjects an inverse significant correlations between estradiol and fat mass was found. In the abdominal fat distribution group significant correlations between estradiol and weight (inversely correlated), androstenedione and BMD, learn mass an BMC were found. The data show the important role of androgens (androstenedione, particularly) and lean body mass on the BMD and BMC, respectively, in the early period of postmenopause.
OBJECTIVES: To compare whole body and regional (arms, legs and trunk) fat mass, fat-free mineral-free mass bone mineral content and bone mineral density, measured by DXA, in cirrhotic patients and age, sex and BMI matched healthy volunteers. DESIGN: Cross-sectional study. SETTING: Two medical research institutions. SUBJECTS: Twenty-two non ascitic cirrhotic patients and 16 age, sex and BMI matched healthy volunteers. INTERVENTIONS: The Lunar DPX whole-body X-ray densitometer with Lunar software version 3.6z (Lunar Radiation Corp., Madison WI, USA) was used. Regional analysis was performed on the arms, legs, trunk and head. RESULTS: Compared to controls, cirrhotic patients showed a significant reduction in percentage body fat. When differentiated by gender, however, the reduction in percentage body fat was evident in female cirrhotics only, particularly in the trunk. In male cirrhotic patients fat-free mineral-free mass was reduced in absolute terms in the whole body and the limbs. For both genders and in each body segment bone mineral content and density were reduced in cirrhotics compared to controls. In cirrhotic patients bone mineral density was significantly correlated to both fat-free, mineral-free mass (r = 0.85; P < 0.001) and to the Physical Activity Index (r = 0.52; P < 0.01). CONCLUSIONS: Two different patterns of soft tissue loss may be found in cirrhotic patients: in women lean tissue is maintained while fat stores are reduced, as in early starvation; in men lean tissue is reduced, as seen under conditions of stress. Moreover, factors influencing lean body mass, such as nutritional depletion and physical inactivity, may contribute to the reduction of bone density frequently observed in cirrhotic patients.
The body cell mass (BCM), defined as intracellular water (ICW), was estimated in 73 healthy men and women by total body potassium (TBK) and by bioimpedance spectroscopy (BIS). In 14 other subjects, extracellular water (ECW) and total body water (TBW) were measured by bromide dilution and deuterium oxide dilution, respectively. For all subjects, impedance spectral data were fit to the Cole model, and ECW and ICW volumes were predicted by using model electrical resistance terms RE and Rt in an equation derived from Hanai mixture theory, respectively. The BIS ECW prediction bromide dilution was r = 0.91, standard error of the estimate (SEE) 0.90 liter. The BIS TBW prediction of deuterium space was r = 0.95, SEE 1.33 liters. The BIS ICW prediction of the dilution-determined ICW was r = 0.87, SEE 1.69 liters. The BIS ICW prediction of the TBK-determined ICW for the 73 subjects was r = 0.85, SEE = 2.22 liters. These results add further support to the validity of the Hanai theory, the equation used, and the conclusion that ECW and ICW volume can be predicted by an approach based solely on fundamental principles.
Total and segmental body compositions (left arm and left leg) were measured by bioelectrical impedance analysis at 5 and 100 kHz and by dual-energy X-ray absorptiometry (DXA) in 14 healthy young males (body mass index, mean +/- SD, 23.5 +/- 2.7 kg/m2) every 20 min for a period of 100 min. During the measurements the subjects remained in the supine position on the examination table, except for the time between the last two measurements, where they got up to walk around. This study focuses on the impact of orthostatic fluid shifts on impedance ratios in body segments and the total body. After 20 min of lying supine lean tissue (DXA) was slightly but significantly lower for the total body and the left leg, but all other consecutive DXA measurements at different times did not differ. Total body impedance and leg impedance increased during the time the subjects were in the recumbent position. Impedance changes in the leg were more pronounced than in the total body, and at 5 kHz the changes were more pronounced compared to 100 kHz. After the subjects got up the impedance values again decreased. Impedance ratios (Z5/Z100) increased for both the leg and to a lesser extent for the total body during the time lying supine, but again decreased after getting up. The results of this study indicate a fluid shift from the legs to the trunk after lying supine and show that this fluid shift is mainly extracellular water. DXA measurements were not able to detect these changes, probably because the magnitude of these changes is below the detection level for lean tissue with DXA methodology. The observations have important implications in the interpretation of impedance measurements in the clinical situation when measurements are made in patients who have been reclining for some time.
The neuroactive steroids allopregnanolone (ALLO) and allotet-rahydrodeoxycorticosterone (THDOC) are the most potent endogens positive modulators of gamma-aminobutyric acid (GABA) on GABAA receptors, a receptor system presumably responsible for some behavioral responses to alcohol withdrawal. In a group of nine alcoholic subjects, the levels of plasma ALLO and THDOC were markedly lower than those of control subjects during the early withdrawal phase (day 4 and 5), when anxiety and depression scores were higher. In contrast ALLO and THDOC plasma levels did not differ from those of control subjects during the late withdrawal phase when anxiety and depression scores were low. These results suggest that the decrease of neuroactive steroid biosynthesis may contribute to the withdrawal symptoms.
In the present study, the body composition was measured in 35 Ukrainian children, 14 boys and 21 girls, aged 8-12 years, by dual-energy X-ray absorptiometry (DEXA), anthropometry, and bioelectrical impedance. The results were compared with those obtained from a sample of the same number of Italian and Dutch children of the same sex and range of age. The Ukrainian children were slightly smaller, had a lower body weight, and had a lower body fat percentage, as measured by skinfolds, as compared with the Italian and Dutch children, as well as a lower calculated fat-free mass (FFM) by impedance. Comparison between FFM as determined by different methods in the Ukrainian children showed that all assessed values differed significantly. In particular, all methods overestimated the FFM as compared with DEXA, but the differences between DEXA and the other methods were not dependent on the level of FFM as determined by DEXA. Furthermore, the difference between predicted FFM and FFM values obtained by DEXA was correlated for skinfolds and body mass index (r = 0.77, p < 0.01), but not for body mass index and impedance, or skinfolds and impedance. The mean differences were 1.8 +/- 1.5 for body mass index, 1.0 +/- 1.4 for impedance, and 3.6 +/- 1.6 for skinfolds. Some differences in the body composition have also been found between boys and girls. The boys had higher values of lean tissue (23.3 +/- 3.1 vs. 20.7 +/- 3.3; p < 0.01) and FFM (24.5 +/- 3.3 vs. 21.8 +/- 3.5; p < 0.01) as compared with the girls and slightly higher values of bone mineral content. It should be noted, however, that the differences between different groups and different methods are always small, even when they are statistically significant.
Body composition was measured in 57 healthy males by 40K measurements and by multifrequency bioelectrical impedance. Intracellular resistance (Ricf) was calculated from the impedance values using the Cole-Cole model. From total body potassium, intracellular water (ICW) was calculated. In addition, in 14 subjects, total body water (TBW) and extracellular water (ECW) was measured using deuterium oxide dilution and bromide dilution, respectively. Prediction formulas from the literature from impedance at different frequencies were used to predict TBW and ECW, and ICW was calculated as the difference of predicted TBW and ECW. Predicted and measured values of TBW, ECW and ICW did not always show the same values as measured. Generally the ICW from potassium was well correlated with calculated ICW from impedance values, correlation coefficients varying from 0.68 to 0.79, depending on the used prediction formula. From the impedance index H2/Ricf, body weight and age, ICW from potassium was predicted with stepwise multiple regression. The prediction formula was ICW = 0.37065.H2/Ricf - 0.132.age + 0.105.weight + 12.2. The prediction error was 1.9 kg and the explained variance 0.69. The residuals of this prediction formula were dependent on the level of ICW as measured by potassium. The same phenomenon was observed when ICW was calculated as the difference of predicted TBW and ECW. The results show that multifrequency impedance is able to predict ICW, however, the prediction is influenced by body water distribution.
OBJECTIVE: To validate an improved formula for the calculation of total body water (TBW) from impedance values in obese women. SUBJECTS: A sample of 37 overweight females BMI ranging from 29.5 to 44.1 kg/m2. MEASUREMENTS: The reference measurements for TBW were obtained by deuterium oxide dilution. Body height (h), hip circumference (C) as well as body impedance at 100 kHz (Z100) were also measured. RESULTS: The values obtained for h, C and Z100 were introduced in the calculations and the following developed formula for total body water was determined: TBW = 0.069 [hC2/(4 pi .Z100)]+19.671. The validity of this formula was assessed through the statistical test of Bland and Altman which we also performed for other formulas containing the weight and/or the height. CONCLUSION: We found that the accuracy of the prediction of TBW by our formula, although lower than those formulas using body weight, is higher than that which takes into account only body height. We conclude that body volume, expressed through body height and hip circumference, is a good choice of parameter in bioelectrical impedance measurements. The new approach can be useful in clinical settings for repeated monitoring of obese women, during diet-restricted treatment.
World Health Organization has suggested that American standards may be adopted for use in countries where no local reference data are available. Since no locally accepted growth standard is available in Italy, this study investigated if American growth curves for weight, height and triceps skinfold (TSF) provide reliable values for Italian children. Weight, height and TSF were measured in 1273 Italian children (boys: 656, girls: 617) ranging in age from 6 to 12 years and their percentiles were compared with that provided by NCHS for American children. Despite some minor differences, it is shown that American standards can be used safely in Italian children aged from 6 to 12 years.
No conclusive data are reported about the effects of long-term branched-chain amino-acids (BCAA) administration on metabolic and respiratory parameters during the sustained hand-grip test (SHGT). Bedside, few data are reported about the relationship between BCAA administration and body composition. Thus, BCAA (14 g/die; 50% L-Leucine, 25% L-Isoleucine, 25% L-Valine) were administered orally to 10 untrained male healthy subjects for 30 days. Before (T0) and after (T1) BCAA administration, oxygen uptake (VO2) and pulmonary ventilation (VE) were evaluated at rest ("baseline", B) and during SHGT. Body height and body weight, body mass index (BMI), fat mass (FM), fat-free mass (FFM), arm muscle area (AMA) and maximal voluntary contraction of forearm muscler (GS, grip strength) were also evaluated at T0 and T1. At T1 FFM increased significantly (T0: 62.3 +/- 7.6 kg; T1: 63.1 +/- 7.5 kg; mean +/- SD; p < 0.05), as well as GS (T0: 46.8 +/- 7.9; T1: 50.6 +/- 7.8; p < 0.01). At T0, VO2 increased significantly during the test (B: 271 +/- 36 ml/min; SHGT: 332 +/- 71 ml/min; p < 0.01), whereas at T1 no significant increase was observed (B: 271 +/- 50 ml/min; SHGT: 286 +/- 60 ml/min). We conclude that the physical fitness of BCAA treated subjects was improved, because of the decrease of O2 uptake during SHGT. Moreover, in our subjects, BCAA seemed to promote FFM-protein synthesis mostly.
"Whole body composition" was investigated in 30 people subject to alcohol-induced migraine. The control group was 30 people matched for age, sex, height and weight, who were not subject to migraine and who consumed moderate amounts of alcohol. The following were evaluated: anthropometric data, alcohol intake in grams per day, total body water, fat-free mass, fat mass, and body mass index (kg/m2). Two methods of measurement were used: skin fold thickness evaluation, and bioelectric impedance assay (BIA). BIA is a non-invasive method based on the principle that lean tissues conduct a low frequency alternating current of electricity better than do fatty tissues. Body mass index was increased in the alcohol-induced migraine patients (p less than 0.04), as was fat mass, (p less than 0.03) as evaluated by skin fold measurements. Bioelectric impedance assay demonstrated a slight total body water increase in alcohol-induced migraine patients (p less than 0.07). Possibly, if this total body water increase was reflected at the neuronal level, the bioelectric properties of the migrainous brain may be altered, thus creating a hypothetical link with the phenomenon of spreading depression.
This study was designed to investigate the effects of aging and food intake on the serum beta-carotene (BC) response curve in humans. Ten elderly (71 +/- 4 years) and 17 young (28 +/- 7 years) healthy females were given 15 mg BC with a semi-solid test meal devoid of BC and vitamin A. All the elderly and 10 young subjects (control A) received a test meal of 500 kcal while the remaining 7 young subjects (control B) were given 700 kcal. Subsequently, blood was drawn hourly for 8 h and again at 24 and 48 h. Serum carotenoids and retinoids were measured by HPLC and triglycerides (TG) and cholesterol by enzymatic methods. Small intestinal transit time was determined in the elderly and in control group A by a breath hydrogen test following ingestion of lactulose (12 g) with the test meal. The area under the absorption curve (AUC) of serum BC over the first 8 h was higher in the elderly subjects than in either control group A or B (P less than 0.001). The slopes of the BC and TG curves were significantly higher as compared to control A, but similar to control B. There was a positive correlation between the ascending slopes of the BC and TG absorption curves of all groups (P less than 0.001). The AUC of the retinyl ester serum response of the elderly group was greater than that of control A (P less than 0.001). The slope of this curve was steeper (P less than 0.01) in the elderly group as compared to control A, but was similar to control B. Intestinal transit time was similar in all groups. In young subjects, the larger test meal of control group B appeared to increase the rate of absorption of BC. These data indicate that the rate of intact BC absorption and its conversion to retinyl esters may be enhanced in old age as compared to younger subjects receiving the same amount of food. Age-related alterations of enterocytes and the intestinal lumen could account for this phenomenon.
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Ketanserin is a pure and selective antagonist of serotonin S2-receptors in blood vessels, platelets and bronchial tissue. It antagonizes serotonin-induced vasoconstriction, bronchoconstriction and platelet aggregation, and indirectly it blocks platelet release reaction. Ketanserin has little or no effect on healthy subjects. Serotonin-induced or serotonin-potentiated platelet aggregation is inhibited in blood drawn from ketanserin-treated healthy volunteers. Oral or parenteral ketanserin treatment did not cause major changes in beta-thromboglobulin (beta-TG) and platelet factor 4 (PF4) plasma concentrations, when basic values were normal. Increased microaggregate formation was found in alcoholics and heavy drinkers. It was also found that beta-TG and PF4 levels were higher in these patients than in the controls. Ketanserin treatment tended to normalize these protein levels in such patients.
Ketanserin is a pure antagonist of serotonin S2-receptors, in blood vessels, platelets and bronchial tissue. Ketanserin has been suggested as hypotensive drug in man, but it shows as well a specific activity on platelet aggregation. An increased incidence of hypertension, of unknown origin, has been found in patients with chronic alcoholism: hypotheses have been made upon an increased incretion of catecholamines and a greater sensitivity of blood vessels' receptors to their action. The data from the present study of eleven patients show that these subjects had an increased platelet activity and ketanserin administration was effective in allowing both the blood pressure levels and platelet activity to resume their normal range. This drug is thus suggested, for its pharmacological properties, as an elective medication for hypertensive patients with chronic alcoholism.