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Biomedical subjects

A Tremblay

Publications and source records attributed to A Tremblay.

At least 235 records · Page 13Linked to original sources

Overexpression of seleno-glutathione peroxidase by gene transfer enhances the resistance of T47D human breast cells to clastogenic oxidants.

The role of seleno-glutathione peroxidase (GSHPx; EC 1.11.1.9) in the cellular defense against oxidative stress was selectively investigated in novel cell models. Expression vectors designed to overexpress human GSHPx efficiently in a broad range of mammalian cells were used to transfect T47D human breast cells which contain very low levels of endogenous GSHPx. Several stable transfectants expressing GSHPx to various extents, up to 10-100 times more than parental cells, were isolated and characterized. Growth inhibition kinetics following transient exposure to increasing concentrations of H2O2, cumene hydroperoxide or menadione (an intracellular source of free radicals and reactive oxygen intermediates) showed that transfectants overexpressing GSHPx were considerably more resistant than control T47D cell derivatives to each of these oxidants. A sensitive DNA end-labeling procedure was used as a novel approach to compare relative extents of DNA strand breakage in these cells. In contrast to the extensive DNA damage induced in control transfectants by 1-h exposure to cytotoxic concentrations of menadione, the extent of DNA breakage detected in GSHPx-rich transfectants was remarkably reduced (6- to 9-fold, p less than 0.005).

Benzene Derivatives↗

Regulation of rat adrenal messenger RNA and protein levels for cytochrome P-450s and adrenodoxin by dietary sodium depletion or potassium intake.

The effect of low sodium and high potassium intake on rat adrenal zona glomerulosa (ZG) and zona fasciculata-reticularis (ZFR) were studied during a 7-day period, by analyzing mRNA and protein levels of various enzymes involved in aldosterone synthesis. In ZG significant increases in cytochrome P-450scc, P-450c21, P-450(11 beta), adrenodoxin mRNA and protein levels were observed after 2 days with either diet, and at day 7 these levels were further increased. The largest mRNA induction was observed at day 7 in sodium-depleted rats for P-450(11 beta), with a 4-fold increase, followed by 2.7- and 2.0-fold increases for P-450scc and P-450c21, respectively. A pattern similar to those of P-450scc and P-450(11 beta) was observed for adrenodoxin with a 2.1-fold increase after 7 days of Na+ restriction. In K(+)-loaded rats mRNA levels for P-450scc, P-450(11 beta), P-450c21, and adrenodoxin were also increased by 2.2-, 2.1-, 1.5-, and 1.9-fold respectively. Protein levels of these enzymes were also measured in ZG and showed increases similar to those of their respective mRNAs for both treatments. On the other hand, mRNA levels of P-450scc, P-450(11 beta), P-450c21, and adrenodoxin in ZFR were found significantly lower than in ZG, although they were slightly increased for both treated groups of rats as compared with controls. In addition, ZFR protein levels of corresponding enzymes did not fluctuate significantly under both ionic regimens. In conclusion, both low sodium and high potassium intakes act primarily on ZG. Their action on plasma aldosterone seems to be mediated by increasing both mRNA and protein and levels of steroidogenic enzymes, especially at the early step (cytochrome P-450scc) and even more at the late steps (cytochrome P-450(11 beta]. In addition, a close relationship appears to exist between the two mitochondrial P-450s and their electron donor adrenodoxin, since their mRNA and protein levels were similarly enhanced for both diets used.

Adrenal Cortex↗

Non-exercise daily energy expenditure and physical activity pattern in male endurance athletes.

The present study was performed to determine whether differences in non-exercise daily energy expenditure (Md,ne) exist between trained and untrained individuals. The data from seven cross-country skiers were compared with those from eight sedentary men. Daily energy expenditure (Md) was determined using the heart rate-oxygen consumption relationship; resting metabolic rate (Mr) was measured using indirect calorimetry. A physical activity questionnaire and ratios of Md or Md,ne to Mr were used as indices of physical activity. Md and Mr were significantly higher in the trained subjects whereas Md,ne was identical in the two groups. The ratio of Md,ne to Mr and the data from the physical activity questionnaire showed that there was no significant difference in daily energy expenditure and physical activity pattern during the non-exercise time. These results suggest that the exercise-induced increase in daily energy requirements is not compensated by a more sedentary life during the other daily activities in these trained men.

Adult↗

Further evidence for the presence of "small eaters" and "large eaters" among women.

One hundred thirty-four women, aged 36 +/- 4 (mean +/- SD) y, BMI 20 +/- 3 kg/m2, perceiving themselves as having either a low or high energy intake (EI), participated in a study to determine variations in EI. Information on EI and activity level was obtained from repeated 7-d records. The 40 subjects with the lowest EI (in kcal/kg body wt) were categorized as small eaters (SEs); the 40 subjects with the highest EI were considered to be large eaters (LEs). The absolute (in kcal) and relative (in kcal/kg body wt) EIs of the SE and LE groups were 1488 +/- 312 and 27 +/- 4 for the SE group, respectively and 2393 +/- 509 and 47 +/- 6 for the LE group, respectively. There was no significant difference in activity level or fat-free mass (FFM) between the groups. However, LEs weighed significantly less (51 vs 55 kg) and were leaner (22% body fat vs 33%) than were SEs. Individuals with similar FFM and activity level can vary significantly in EI needs.

Adult↗

Nutritional determinants of the increase in energy intake associated with a high-fat diet.

Two studies were performed to evaluate the short-term effect of a high-fat diet on spontaneous energy intake and the respective contribution of diet composition and energy density of food. Ingestion of high-fat foods was associated with a significant increase in energy intake in the two studies (P less than 0.05). In study 1 this increase was accompanied by a reduction in total weight of food consumed when compared with values obtained under low-fat-diet conditions. Moreover, the occurrence of satiety coincided with a level of carbohydrate intake corresponding to the expected daily carbohydrate oxidation when high-fat foods contained a moderate amount of carbohydrates. In study 2, where the carbohydrate content of high-fat foods was unusually low (less than or equal to 25% of their energy content), carbohydrate intake was lower than usual carbohydrate oxidation. Under the conditions of this study, energy density of foods seemed to play a significant role on the occurrence of satiety.

Adult↗

Estimation of deep abdominal adipose-tissue accumulation from simple anthropometric measurements in men.

Equations have been developed for the prediction of deep abdominal adipose-tissue (AT) accumulation from anthropometric measurements in a sample of 110 men. An equation including the waist circumference and age could predict 74% of the variance in the amount of deep abdominal AT with an SEE of 29.6 cm2 (29.2% of the mean deep abdominal AT value), whereas another equation including the sagittal diameter, the waist-to-hip ratio (WHR), and age explained 76.6% of its variance with an SEE of 28.1 cm2 (27.7%). Equations excluding age as an independent variable were also developed. These results indicate that equations in which simple anthropometric measurements are used can provide further information in the assessment of the risk of cardiovascular disease in men. However, we must remember that our ability to predict the amount of deep abdominal AT from anthropometry is limited.

Abdomen↗

Energy requirements of a postobese man reporting a low energy intake at weight maintenance.

Three experiments were performed to test the validity of the low reported energy intake of weight maintenance in a postobese man. In the first experiment the subject reported a mean energy intake of 8008 kJ/d during 16 d and he maintained a stable body weight. This finding was not reproduced in the second experiment, which consisted of a 6-d inpatient study during which the subject was confined to a whole-body calorimeter for 5 d. Indeed, he lost weight when fed a controlled energy intake of 7950 kJ/d. Moreover, this experiment showed that direct and indirect calorimetry provided comparable energy-expenditure measurements during this period. Finally, when the subject was refed a controlled energy intake of 7950 kJ/d for 21 d, body weight and fat losses were observed. Therefore, these observations do not support the validity of the low energy intake that may be reported by people predisposed to obesity.

Body Weight↗

Regional variation in adipose tissue lipoprotein lipase activity: association with plasma high density lipoprotein levels.

The associations of adipose tissue lipoprotien lipase (AT-LPL) activity with body fatness and plasma lipoprotein levels were studied in the light of the recently described regional differences in AT-LPL activity. In this regard, heparin-releasable LPL activity was measured in abdominal and femoral adipose tissues of 29 pre-menopausal women. Body fatness variables were all positively correlated with abdominal and femoral AT-LPL activities expressed per 10(6) cells. However, abdominal and femoral AT-LPL activities expressed per unit of cell surface displayed divergent association patterns with body fatness and plasma lipoprotein levels. Indeed, only abdominal AT-LPL activity remained significantly correlated with body fatness variables after adjustment for fat cell surface. Furthermore, whereas abdominal AT-LPL activity tended to be negatively correlated with plasma HDL-cholesterol levels, femoral AT-LPL activity was positively correlated with plasma HDL2-cholesterol (r = 0.40, P less than 0.05) concentration and with the HDL2-cholesterol/HDL3-cholesterol ratio (r = 0.49, P less than 0.01). These results demonstrate the importance of taking into account the regional variation in metabolic activity of adipose tissue when studying its associations with body fatness, and with plasma lipoprotein levels. The lack of association between abdominal AT-LPL activity and plasma HDL2-cholesterol levels lead us to suggest that AT-LPL activity may not be causally related with plasma HDL levels.

Adipose Tissue↗

The disappearance rate of human versus rat intermediate density lipoproteins from rat liver perfusion.

The aim of this work was to compare the disappearance rate of human and rat intermediate density lipoproteins (IDL) using the rat liver perfusion system. Human and rat IDL were produced in vitro by incubating human or rat very low density lipoproteins (VLDL) with either rat post-heparin plasma (method I) or a resolubilized isopropanol precipitate of rat post-heparin plasma (method II). With both methods, the degree of triacylglycerol lipolysis was approximately 55%. The different preparations of IDL were labelled with 125I and added to perfusates of rat livers. The disappearance rates of 125I-labelled IDL were monitored by measuring the radioactivity associated with apolipoprotein (apo) B in the perfusate during a 15-min period. Both human and rat IDL prepared with method I had an increased apoE to apoC ratio as compared with their native counterparts. Furthermore, human IDL had a significantly higher apoE to apoC ratio than rat IDL. However, when IDL were produced in the absence of exchangeable apolipoproteins (method II), no change in the apoE to apoC ratios was observed for the transformation of VLDL to IDL and the ratios were similar for human and rat IDL. Despite these differences, human IDL were always removed at a lower rate than rat IDL. The only striking difference between the two types of IDL made by method II was that the apoB100 to apoB48 ratio was considerably higher in human than in rat IDL. These results suggest that the apoB100 to apoB48 ratio is likely to be responsible for the observed differences in liver uptake between rat and human IDL.

Animals↗

Loss of abdominal fat and metabolic response to exercise training in obese women.

Numerous studies have shown that a high accumulation of abdominal fat is associated with metabolic complications and with an increased risk of coronary heart disease. The present study examined the effects of changes in body fatness and in the level of abdominal fat on metabolic variables in a sample of 13 obese premenopausal women, aged 38.8 +/- 5.3 (SD) yr. Women exercised for 90 min at approximately 55% of maximal aerobic power (VO2 max) four to five times a week for a period of 14 mo. The training program induced a significant increase in VO2 max and a mean reduction in body fat mass of 4.6 kg (P less than 0.01), with no change in fat-free mass. Measurement of adipose tissue areas by computed tomography indicated a greater loss of abdominal fat compared with midthigh adipose tissue (P less than 0.05). The training program also produced significant reductions in the insulinogenic index measured during an oral glucose tolerance test and in plasma cholesterol (Chol), low-density lipoprotein (LDL)-Chol, and apolipoprotein (apo) B levels (P less than 0.05). Training also significantly increased plasma high-density lipoprotein (HDL)-apo A-I and HDL2-Chol levels and decreased plasma HDL3-Chol concentration (P less than 0.05). Whereas no change in postheparin plasma lipoprotein lipase activity was noted, a significant decrease in postheparin plasma hepatic triglyceride lipase activity was observed after training (P less than 0.005). Metabolic responses were not correlated with changes in VO2 max but were significantly correlated with the reduction in body fat mass and/or with the loss of deep abdominal fat.(ABSTRACT TRUNCATED AT 250 WORDS)

Abdomen↗

Contribution of glucose tolerance and plasma insulin levels to the relationships between body fat distribution and plasma lipoprotein levels in women.

Numerous interrelated metabolic and morphological variables such as plasma insulin levels, glucose tolerance and abdominal obesity are associated with changes in plasma lipoprotein levels. The present study was undertaken to differentiate, using a multivariate approach, the respective contributions of plasma glucose and insulin levels, obesity and regional adipose tissue distribution to the variance in plasma lipoproteins. The study group was composed of 69 healthy premenopausal women (age 35.4 +/- 5.0 years (mean +/- s.d.); percent body fat 40.7 +/- 10.1). Indices of carbohydrate metabolism showed significant univariate correlations with triglyceride (TG) and/or cholesterol (CHOL) content of plasma VLDL, LDL and HDL (P less than 0.05). Multivariate analyses indicated that the explained variance in plasma VLDL-TG (R2 x 100 = 44 percent, P less than 0.05) and LDL-apoprotein (apo) B levels (R2 x 100 = 33.1 percent, P less than 0.08) was entirely accounted for by indices of carbohydrate metabolism and body fat distribution, whereas total body fatness added no significant contribution to these models. Multivariate analyses also revealed that the best possible regression model to predict the variation in plasma HDL2-CHOL levels only included computed tomography-derived deep abdominal adipose tissue area (P less than 0.0001). All other variables were unable to further improve the explained variance in plasma HDL2-CHOL levels. In partial correlation analyses, indices of carbohydrate metabolism and the waist-to-hip circumference ratio (WHR) remained significantly correlated with plasma VLDL-TG and LDL-apo B levels after adjustment of VLDL-TG and LDL-apo B for either insulin and glucose levels, or for the WHR (P less than 0.08). After correcting for deep abdominal fat accumulation, no significant correlation was observed between indices of carbohydrate metabolism and plasma HDL2-CHOL levels whereas deep abdominal fat showed significant correlations with HDL2-CHOL levels (P less than 0.05) after correction for indices of carbohydrate metabolism. These results suggest that both disturbances in glucose-insulin homeostasis and abdominal obesity are significantly associated with changes in plasma VLDL-TG and LDL-apo B levels and that these associations are partly independent from each other. These results also indicate that mechanisms other than disturbances in glucose homeostasis and hyperinsulinemia are responsible for the association between the level of deep abdominal fat and plasma HDL2-CHOL levels.

Abdomen↗

Regional variation in adipose tissue lipolysis in lean and obese men.

Biopsies of adipose tissue were obtained from two subcutaneous regions (abdominal and femoral) in a sample of 54 men (32 obese and 22 lean subjects). Clonidine-induced antilipolysis in femoral adipose cells was similar in both groups, whereas subcutaneous abdominal adipocytes of obese individuals showed a higher alpha 2-adrenergic response than did subcutaneous abdominal adipose cells from lean subjects. In addition, epinephrine had a biphasic effect in subcutaneous abdominal adipocytes from obese individuals, as it induced antilipolysis at low concentrations, and a net lipolytic response at higher doses. In contrast, the physiological amine promoted lipolysis in subcutaneous abdominal adipose cells of lean subjects. Epinephrine- and clonidine-induced antilipolysis of subcutaneous abdominal adipocytes was positively associated with the level of subcutaneous abdominal fat measured by computed tomography (CT). Finally, men with a high alpha 2-adrenergic response of subcutaneous abdominal fat cells were fatter than those with a low alpha 2-adrenergic component. These results suggest that, in men with a wide range of body fatness, variations in the lipolytic response of subcutaneous abdominal adipose cells to epinephrine appear to involve changes in the functional balance between alpha 2- and beta-adrenoceptors.

Adipose Tissue↗

Normalization of the metabolic profile in obese women by exercise and a low fat diet.

This study was performed to evaluate the additive effect of exercise and a low fat diet on body weight, body composition, and the metabolic profile in four obese women who were previously exercise-trained for 15 months. This study therefore included regular aerobic exercise for 15 months and a low fat diet plus exercise for an additional period of 14 months. After 15 months, mean body weight and fat losses corresponded to 6.4 and 8.4 kg, respectively. Significant reductions (P less than 0.05) in plasma insulin, cholesterol, apo B, and LDL-C were also observed. Following the second part of the study, mean cumulative body weight and fat losses were 11.0 and 11.3 kg, respectively. At this time, the subjects were still overweight, but their plasma glucose and insulin during an oral glucose tolerance test were essentially similar to values obtained in a sample of 22 nonobese women. With the exception of plasma apo B and HDL-C levels, plasma lipid and lipoprotein levels were also comparable to those observed in nonobese controls. These results thus indicate that aerobic exercise-training and a low fat diet can normalize the metabolic profile of obese women, even if their adiposity remains higher than that of lean women.

Adipose Tissue↗

Circadian rhythms of osteocalcin in equine serum. Correlation with alkaline phosphatase, calcium, phosphate and total protein levels.

The purpose of the study was to determine whether there were circadian variations in serum osteocalcin in normal horses and to determine whether it was important to regulate the time of blood sampling in clinical investigations. Osteocalcin or bone Gla-protein (BGP), alkaline phosphatase, total calcium, phosphate and total protein were studied over a 24 h period. Blood samples were taken every 60 min from nine adult Standardbred horses. There was a correlation between serum levels of alkaline phosphatase (r = 0.3, p less than 0.01), phosphate (r = 0.42, p less than 0.01) and serum osteocalcin levels. There was a very marked individual effect on serum levels of osteocalcin and alkaline phosphatase (p less than 0.01). This effect was present for phosphate levels but not significant for total calcium. The individual effect was lower and time effect was higher for serum osteocalcin if the subjects were divided into two age groups, one of horses of five years or less (n = 4) and a second group older than five years (n = 5). In both groups a circadian rhythmicity was observed. Serum osteocalcin showed a biphasic pattern. Levels were constant during daytime (light period) and underwent significant variations during the night (dark period), going through a nadir at 2000 h and through a maximum peak at 0500 h. It was concluded that in normal horses the blood osteocalcin level follows a circadian variation. Also daytime (light period) seems to be the more appropriate period for blood sampling.

Alkaline Phosphatase↗