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D Richard

Publications and source records attributed to D Richard.

At least 145 records · Page 8Linked to original sources

Energy balance and facultative diet-induced thermogenesis in mice fed a high-fat diet.

The present study was aimed at studying energy balance in mice fed a high-fat diet. Albino mice were divided into three groups. One group had free access to the stock diet, whereas the two other groups consumed a high-fat diet. One of the high-fat fed groups was fed ad libitum, whereas the other was offered a restricted amount of the same diet so that its energy intake was comparable to the group of mice given the stock diet. Energy balance measurements, which included indirect calorimetry and carcass analysis, were performed. Brown adipose tissue (BAT) properties were also investigated. The results show that gains in both body weight and fat were higher in mice that had free access to high-fat diet than in mice fed the stock diet. In animals given a restricted amount of the high-fat diet, fat gain increased, whereas protein gain was reduced in comparison with animals fed the stock diet. Unrestricted access to the high-fat diet led to an increase in both energy intake and energy gain. As revealed by both slaughter and indirect calorimetry techniques energy expenditure was, in high-fat fed mice, 40% higher than in animals fed either stock or a restricted amount of high-fat diet. Nadolol was shown to suppress a large part of the elevated metabolic rate seen in mice fed an unrestricted high-fat diet. In those mice, BAT mitochondrial GDP binding was also increased. In summary, the present results confirm that adaptive diet-induced thermogenesis (DIT) develops in mice made hyperphagic by an energy-dense palatable diet.(ABSTRACT TRUNCATED AT 250 WORDS)

Adipose Tissue, Brown↗

Lipoprotein lipase in white and brown adipose tissues of exercised rats fed a high-fat diet.

The combined effects of a high-fat-supplemented diet and exercise training on serum lipids as well as on lipoprotein lipase activity in white and brown adipose tissues of the rat were evaluated. Male Wistar rats were fed ad libitum either a stock diet or the stock diet supplemented with food items rich in fat. Half of each dietary group was submitted to daily treadmill running for 35 days. Food intake and final body weight were raised by the high-fat-supplemented diet and lowered by exercise training. Postprandial serum triglycerides were not affected by diet or exercise, whereas the latter decreased total cholesterol in the high-fat group only (14%, P less than 0.01). Total lipoprotein lipase activity in white adipose tissue was elevated (120%, P less than 0.01) by high-fat feeding, and this increase was greatly reduced by concomitant exercise training. In brown adipose tissue, however, the large elevation (104%, P less than 0.01) in enzyme activity brought by the high-fat diet was unaltered by concomitant training. Thus a high-fat-supplemented diet increased lipoprotein lipase activity in both an energy-storing and a heat-producing tissue, and exercise training was able to counteract this effect in white, but not in brown, adipose tissue. These findings support the notion that the regulation of lipoprotein lipase is tissue specific.

Adipose Tissue↗

Lipoprotein lipase in adipose tissues of rats running during cold exposure.

This study evaluated the individual and combined effects of exercise training and intermittent cold exposure of similar energy cost on serum lipids and lipoprotein lipase (LPL) activity on epididymal white (WAT) and interscapular brown (BAT) adipose tissues of the rat. The animals were subjected daily to 2 h of treadmill running at 24 degrees C or for the same period of time at -5 degrees C, with or without exercise, for 28 days. Exercise training lowered serum triglycerides (P less than 0.01), whereas serum cholesterol was reduced by cold exposure (P less than 0.05). Cholesterol lowering occurred in the lipoproteins of lower densities. WAT weight was diminished by both treatments. Exercise training had an overall lowering effect on WAT total LPL activity (P less than 0.05), whereas cold exposure did not affect enzyme activity significantly. Exercise and intermittent cold interacted on BAT weight. Cold increased total BAT LPL activity (P less than 0.03), whereas simultaneous exercise in the cold greatly diminished this effect. Serum insulin levels were not affected by either treatment. Thus, in WAT, intermittent exposure to cold did not have any lasting effect on LPL activity, whereas exercise training decreased the latter. In contrast, exercise did not influence LPL in BAT of rats not exposed to cold but prevented the stimulation of enzyme activity induced by repeated cold exposure. These results support the notion that the regulation of LPL is tissue specific.

Adipose Tissue↗

Exercise stress testing.

Exercise stress testing is used widely to evaluate the presence and extent of anatomic disease and the prognosis when significant disease has been defined. Indications for diagnostic testing include elevated blood pressure, palpitations, and chest pain. Functional testing is used to assess progression of cardiac disease, cardiac status following therapy, and physical capacity. Exercise testing must be applied to an appropriately selected group of patients. The indications, contraindications, types, results, and complications of exercise testing are presented.

Coronary Disease↗

The usefulness of surrogate markers anti-HBc and ALT for post-transfusion non-A, non-B hepatitis prevention.

Non-A, non-B hepatitis represents an important problem for public health throughout the world. For several years, Transfusion Centers have been looking into improvements for more efficiently preventing post-transfusion non-A, non-B hepatitis. The viruses involved in such a pathology have not yet been isolated and no specific marker is available for direct screening and prevention. Surrogate markers, alanine aminotransferase and anti-HBc antibody have been evaluated by different teams, however, for this purpose. Fifty or 60% of transfusion-related non-A, non-B hepatitis could be prevented thanks to these markers, but such a strategy would induce a high loss of blood products. Therefore, a compromise must be found between quality objectives and economical costs, generated by this procedure. The social and financial costs of chronic hepatitis for the public health would be balanced by costs involved in such a screening policy and therefore Transfusion Centers should probably initiate this quality improvement using one or both tests in the near future.

Alanine Transaminase↗

Detraining of exercise-trained rats: effects on energetic efficiency and brown adipose tissue thermogenesis.

Complete energy balance measurements were made in exercise-trained (treadmill running) rats subjected to 27 d of exercise detraining. The 20% difference in body-weight that existed at the end of the training period between sedentary and trained rats was negated by detraining. Detrained rats had twice the body-weight gain of their untrained controls. An elevation (12%) in metabolizable energy (ME) intake (relative to body-weight) was observed in detrained rats while their gross energetic efficiency was augmented by 60%. Energy expenditure, excluding the estimated costs of fat and protein storage, was similar for detrained and untrained rats. Complementing the latter was the finding that thermogenesis in brown adipose tissue, a known energy buffering process, was also similar. Elevated ME intake (relative to body-weight) largely contributed to the increased energetic efficiency of detrained rats.

Adipose Tissue, Brown↗

Exercise during intermittent cold exposure prevents acclimation to cold rats.

1. Energy balance and brown adipose tissue growth were examined in four groups of male Wistar rats: (i) sedentary, living at 24 degrees C (warm), (ii) exercise-trained, 2 h daily, living at 24 degrees C, (iii) living at 24 degrees C but exposed to -5 degrees C, 2 h daily and (iv) living at 24 degrees C but exercise-trained while being exposed to -5 degrees C, 2 h daily. 2. Cold exposure during exercise training appeared to have little additional influence on body composition following 28 days of treatment; body mass gain, in addition to protein and fat gains, of exercised cold-exposed rats were similar to the gains observed in exercised warm-exposed control animals. However, in sedentary cold-exposed rats protein, fat and body mass gains were significantly lower than the gains measured in sedentary rats not exposed to cold. 3. Metabolizable energy intake, expressed mass-independently, was similar in sedentary warm-exposed rats and both groups of animals that were exercise-trained. Metabolizable energy intake was increased almost 15% in sedentary cold-exposed rats. 4. Energy expenditure (mass independent), excluding the net cost of exercise training, was not different in sedentary warm-exposed and exercised rats; energy expenditure was almost 20% higher in sedentary cold-exposed rats. 5. Total protein and deoxyribonucleic acid (DNA) contents of brown adipose tissue were more than doubled in sedentary rats exposed to cold; protein and DNA levels were similar among the other three groups of rats. 6. Treadmill running during daily, 2 h exposure at -5 degrees C appears to prevent the cold acclimation responses that occur in sedentary rats receiving similar cold exposure.

Acclimatization↗

Effect of warm or cold exposure on GDP binding and uncoupling protein in rat brown fat.

The effects of acute and chronic exposure to different environmental temperatures on the total tissue cytochrome oxidase activity, level of mitochondrial GDP binding, and specific mitochondrial concentration of uncoupling protein have been investigated in rat brown adipose tissue, a radioimmunoassay being used to measure uncoupling protein. Acclimation at different temperatures for 3 wk produced parallel changes in GDP binding, the concentration of uncoupling protein, and the activity of cytochrome oxidase, each parameter rising with decreasing temperature between thermoneutrality (29 degrees C) and 4 degrees C. Acute exposure of warm-acclimated (29 degrees C) rats to the cold (4 degrees C) led to a rapid increase in GDP binding without any alteration in the amount of uncoupling protein. The increase in binding was accompanied by an increase in the rate of acetate-induced swelling of the mitochondria. The concentration of uncoupling protein in warm-acclimated rats was significantly raised only after 48 h exposure to cold. When cold-acclimated rats were exposed acutely to the warm, there was a rapid decrease in GDP binding without any alteration in the amount of uncoupling protein. It is concluded that after alterations in environmental temperature the concentration of uncoupling protein in brown adipose tissue mitochondria changes much more slowly than GDP binding and that binding can therefore be dissociated from the amount of the protein.

Acclimatization↗

Unaltered regulatory thermogenic response to dietary signals in exercise-trained rats.

Thermogenic response to ingestion of high-fat diet was investigated in four groups of male rats, two groups being exercise trained and two remaining sedentary. One sedentary and one trained group each received a high-fat dietary supplement in addition to the stock diet. After 35 days, body energy and protein and fat contents were determined. Results indicate that exercise reduced metabolizable energy (ME) intake by 9 and 18% in stock- and high-fat-fed trained rats, respectively. Compared with stock-fed rats, ME intake was elevated 31 and 18% in sedentary and trained high-fat-fed rats, respectively. Exercise also affected energy gains; trained rats deposited almost 60% less energy than controls. Exercise largely decreased both fat and protein contents of rats, whereas the high-fat supplement enhanced fat deposition. Energy expenditure, excluding exercise cost, was calculated on a mass-independent basis and was revealed to be similar in appropriately matched (diet) trained and sedentary rats. High-fat feeding induced increases in expenditure assumed to be due to enhanced brown adipose tissue (BAT) regulatory diet-induced thermogenesis. Conversely, exercise did not affect further the regulatory thermogenic response of BAT to stimuli originating from high-fat diet. Excluding physical activity, energy expenditure components in sum (expressed mass independently), in high-fat- and stock-fed rats, appear unaltered by exercise training.

Adipose Tissue, Brown↗

Effects of exercise training on energy balance of ovariectomized rats.

The purpose of the present study was to investigate both the respective and interactive roles of exercise training and ovarian hormones on the regulation of energy balance. Female rats were divided into sedentary and exercise-trained groups. Each group thus formed was further divided into a sham-operated group, an ovariectomized group, or ovariectomized estradiol-treated group. Rats were exercise trained on a rodent motor-driven treadmill. After 33 days of treatment, rats were killed and the energy contents of carcasses, feces, and food were determined. Brown adipose tissue (BAT) thermogenesis was assessed through mitochondrial GDP binding. The results show that ovariectomy led to increases in food intake, body weight, and protein gains, whereas estradiol treatment abolished these effects. The results also show that exercise training reduced fat gain. Exercise training interacted with ovariectomy on energy gain; in sedentary rats ovariectomy enhanced the energy gain, an effect that disappeared in exercise-trained rats. However, exercise training was found to alter neither body weight and protein gains nor energy intake. Ovariectomy did not affect energy expenditure when the results are expressed in relative terms (kJ.kg body wt-0.67.day-1). Similarly, exercise training did not modify energy expenditure (kJ.kg body wt-0.67.day-1) once the cost of the training program was subtracted. BAT mitochondrial GDP binding was not affected by any of the experimental treatments. The present results therefore suggest that neither ovariectomy nor exercise training affect energy expenditure through regulatory forms of BAT-mediated thermogenesis.

Adipose Tissue, Brown↗

[Exploratory hierarchy and surgical indications for carotid surgery in patients with coronary disease].

The major cause of death from carotid artery surgery (1.2% in 1984 in this series) is still coronary disease and myocardial infarct. A series of 50 patients were randomly selected for detailed study of post-operative cardiologic complications and the following sequelae were noted: mortality = 1 myocardial infarct; morbidity = 1 myocardial infarct, 3 documented anginal pains, 8 repolarization disorders, 4 benign ventricular arrhythmias. Analysis of these complications and a literature review demonstrated: the high frequency of combined carotid artery and coronary artery stenosis even in asymptomatic patients (25 to 40% of cases); the elevated percentage of complications in patients with symptomatic coronary disease (mortality risk multiplied by ten), hypertension or arterial disease; the low effect of age taken alone as risk factor. Pre-operative explorations to detect angina, particularly when latent and asymptomatic, should include a questionnaire, strict patient clinical examination and detailed reading of electrocardiogram tracings. An effort test should be performed as a function of results and patients' medical history and when positive should lead to coronarography in patients under 70 in good general condition, and when doubt persists after the effort tests. The indication for surgical treatment is dependent on results of these explorations: Carotid artery surgery (stenosis with high cerebral risk) should be performed under pre- and post-operative myocardial protection in patients with coronary artery disease who are too old or inoperable for cardiac reasons. Simultaneous myocardial and cerebral revascularization in the presence of severe lesions and at equivalent risk of progression. First intention carotid artery surgery for bilateral stable lesions with subsequent simultaneous myocardial and cerebral revascularization. First intention carotid artery surgery in case of cerebral ischemia with coronary artery shunt surgery at a later stage. Improved exploration of patients and close cooperation between cardiologists, anaesthetists and surgeons should allow patients at high risk to be operated upon under improved conditions of safety.

Aged↗

Effect of caging singly or in groups of different sizes on the thermogenic activity of interscapular brown adipose tissue in mice.

The effects on the thermogenic activity of brown adipose tissue of caging mice singly or in groups of different sizes has been investigated. At 23 degrees C the total cytochrome oxidase activity and the level of mitochondrial GDP binding were higher in mice caged singly than in mice caged in groups of three or six. At 4 degrees C GDP binding and cytochrome oxidase activity were lower in mice caged in groups of two, three or six than in mice caged singly. The mitochondrial concentration of uncoupling protein was not clearly affected by the number of mice in each cage.

Adipose Tissue, Brown↗