Search PubMed⌕ Search

SEARCH · Search PubMed

Results for “Body Fat Distribution”

Search indexed PubMed citations on genomics, clinical trials, systematic reviews and public health. Explore titles, authors and supplied subject terms, then open the PubMed record.

Quote a phrase for an exact phrase match. Source license links do not imply unrestricted reuse.

At least 793 records · Page 44Linked to original sources

Unusual distributions of body fat in AIDS patients: a review of adverse events reported to the Food and Drug Administration.

This report summarizes postmarketing adverse events reported to the Food and Drug Administration (FDA) that describe unusual or abnormal fat distribution in association with anti-retroviral therapies. Reports associated will protease inhibitors were compared to those associated with non-protease inhibitor antiretroviral therapies. The Spontaneous Reporting System (SRS) and Adverse Event Reporting System (AERS) of the FDA MEDWATCH post-marketing surveillance system served as the database. Four protease inhibitors (saquinavir, indinavir, nelfinavir, and ritonavir) and seven nonprotease inhibitors (zidovudine, didanosine, zalcitabine, stavudine, lamivudine, nevirapine, and delavirdine) were searched for reports relating to: weight increase, unusual fat deposition, Cushing's syndrome, or Cushingoid appearance. Each drug was searched for its "life" from time of initial approval through a uniform database cutoff of March 18, 1998. A total of 62 cases of abnormal fat accumulation were reported in association with one or several of the four approved protease inhibitors compared to three cases reported in association with the seven non-protease inhibitor based therapies. Case descriptions varied, and included abdominal fat accumulation, breast enlargement, thick necks, buffalo humps, multiple lipomatous growths, Cushingoid features, centralized fat redistribution, and mesenteric, omental, and retroperitoneal fat accumulation. Some subjects switched or stopped their antiretroviral therapy, others underwent surgery to remove the fat, and many considered their symptoms disabling. The pathophysiologic mechanism for these events remains unclear and a causal link to a specific drug or drug class is uncertain. Patients and clinicians reporting to the MEDWATCH system, however, have clearly associated the development of abnormal body fat with protease inhibitors as opposed to other antiretroviral therapies.

Acquired Immunodeficiency Syndrome↗

Relationships between IGF-I and age, gender, body mass, fat distribution, metabolic and hormonal variables in obese patients.

OBJECTIVE: To compare insulin-like growth factor-I (IGF-I) concentrations in obese and normal subjects, and evaluate the possible relationships between IGF-I concentrations and demographic, anthropometric, metabolic and hormonal variables in obese patients. SUBJECTS AND METHODS: 286 obese outpatients (OB, 234 female and 52 male; age 18-71 y, body mass index (BMI) > 27 kg/m2) were recruited. MEASUREMENTS: BMI, waist-to-hip ratio (WHR), serum basal and oral glucose tolerance test (OGTT)-stimulated glucose and insulin concentrations, IGF-I, basal growth hormone (GH), prolactin (PRL), androgens, thyrotropin (TSH), free triiodothyronine (fT3), free thyroxine (fT4), free fatty acids (FFA), triglycerides, total and high density lipoprotein (HDL)-cholesterol, 24h-urinary cortisol levels and blood pressure (BP) values were measured. IGF-I concentrations were also evaluated in a large population of 326 age-matched controls (controls, 228 women, 98 men; age 20-86 y, BMI < 25 kg/m2). RESULTS: IGF-I concentrations were lower in OB than in controls (age-adjusted mean: 21.6 vs 23.6 nmol/L, P < 0.03). However, individual IGF-I concentrations in OB were within the age-adjusted normal range. In both groups, IGF-I concentrations were gender-independent, and showed a simple negative correlation with age (r = -0.47). In OB, univariate analysis also shows that IGF-I concentrations were negatively correlated with BMI (r = -0.33), but not WHR, with both basal (r = -0.16) and OGTT-stimulated glucose levels (r = -0.17), as well as FFA levels (r = -0.19), and with both diastolic and systolic BP (both r = -0.17). In OB women, IGF-I concentrations positively correlated with PRL (r = 0.31), testosterone (r = 0.30), androstenedione (r = 0.30), and dehydroepiandrosterone-sulfate (DHEAS) concentrations (r = 0.41). No correlation was found with other variables. The multiple regression analysis showed that IGF-I concentrations were inversely and independently related to age and BMI only. CONCLUSIONS: In obesity, IGF-I concentrations are slightly reduced, but generally within the age-adjusted normal range. IGF-I concentrations in obesity show independent and negative relationships with age and BMI, but are not associated with fat distribution, insulin secretion, glucose tolerance, BP or risk indices for cardiovascular disease (CVD).

Adipose Tissue↗

Weight gain after acute deep venous thrombosis: a prospective observational study.

INTRODUCTION: The onset of acute disorders often results in a significant reduction in physical exercise, thus predisposing to further increase in body weight. Weight gain is strongly associated with an increase in metabolic and cardiovascular risk factors. The aim of this study was to assess weight changes occurring after an episode of acute deep venous thrombosis (DVT). MATERIALS AND METHODS: To compare the prevalence of overweight and obesity at baseline and 6 months after acute DVT, and to compare weight changes between patients with DVT treated in hospital or at home over a similar time frame, we evaluated 72 patients (mean age 59.8+/-15.3 years, 34 men and 38 females) with objectively diagnosed DVT. Body mass index (BMI) was recorded at baseline and at 6 months; waist circumference was recorded at 6 months to assess individual patterns of body fat distribution. RESULTS: At baseline, BMI was 27.6+/-4.6 kg/m(2). Overweight and obesity were observed in 33 (45.8%) and 19 (26.4%) patients, respectively. After 6 months, BMI was 28.7+/-5.0 kg/m(2). The prevalence of overweight and obesity was 44.4% and 32%, respectively; visceral pattern of body fat distribution was found in 64.8% of overweight or obese patients. Mean weight gain was 7.12%; inpatients (n=42) showed a higher weight gain than outpatients (n=30) (8.6% and 4.9%, respectively, p=0.046). CONCLUSIONS: We observed a significant weight gain after acute DVT. This weight gain was more marked in hospitalised patients than in outpatients. Our findings suggest that weight control should be considered in all patients with acute DVT.

Acute Disease↗

C825T polymorphism of the G protein beta3 subunit is associated with obesity but not with insulin sensitivity.

OBJECTIVE: The common C825T polymorphism of the gene that encodes the G protein beta3 subunit has been shown to influence lipolysis in human adipocytes and to be associated with hypertension, body fat distribution, and obesity. In addition, it has been shown to be associated with insulin resistance in a small group of hypertensive subjects. We investigated whether this polymorphism contributed to the variability in obesity in our population from southern Germany and whether it was associated with insulin sensitivity of lipolysis and/or glucose disposal. RESEARCH METHODS AND PROCEDURES: We determined percentage body fat, body fat distribution, glucose tolerance [oral glucose-tolerance test (OGTT)], insulin sensitivity, and serum free fatty acids using data from OGTTs (N = 774) and clamp (euglycemic hyperinsulinemic clamp, N = 216) in normal and impaired glucose tolerant subjects who were genotyped for this polymorphism. RESULTS: Compared with noncarriers of the C825T mutation, subjects with the C825T variant (prevalence approximately 32%) had higher percentage body fat (p = 0.02) and higher BMI (p = 0.03). No conclusive effect was seen on serum free fatty acids measured either during fasting or at the end of a 2-hour OGTT. Insulin sensitivity determined during the OGTT and during the clamp, both adjusted for age, gender, and percentage body fat, was not different between the genotypes (p = 0.33 and p = 0.48, respectively). DISCUSSION: We have concluded that the C825T polymorphism in the G protein beta3 subunit played an important role in the determination of obesity in this German population. However, it probably had no direct effects on insulin sensitivity of lipolysis and glucose disposal.

Adipose Tissue↗

Lower total fasting plasma adiponectin concentrations are associated with higher metabolic rates.

CONTEXT: The possible role of adiponectin, a protein uniquely produced by the adipose tissue and significantly reduced in obesity and other insulin-resistant states, in the regulation of energy expenditure (EE) is still poorly understood. OBJECTIVE: The objective of the study was to investigate the relationship between total fasting plasma adiponectin concentrations and the various components of EE measured in a metabolic chamber in Pima Indians and to test whether body fat distribution may have a role in this association. DESIGN: This was a cross-sectional study. SETTING: The study was an inpatient clinical research unit. PARTICIPANTS: Sixty nondiabetic Pima Indians (45 males and 15 females), aged 18-45 yr, spanning a wide range of adiposity (body mass index 19.6-46.2 kg/m(2)) participated in the study. MAIN OUTCOME MEASURES: Total fasting plasma adiponectin concentrations, EE (24-h respiratory chamber), insulin sensitivity (euglycemic-hyperisulinemic clamp), body composition (dual-energy x-ray absorptiometry), and body fat distribution (waist to thigh ratio) were the main outcome measures. RESULTS: Total fasting plasma adiponectin concentrations are negatively associated with sleep EE adjusted for sex, age, fat-free mass, and fat mass. This correlation is still significant, although attenuated, after inclusion of insulin-stimulated glucose disposal among the regressors and further attenuated when adjusted also for waist to thigh ratio. CONCLUSIONS: The decrease in total fasting plasma adiponectin concentrations that accompanies fat accumulation may be a mechanism to prevent further weight gain by decreasing insulin sensitivity and increasing energy expenditure.

Adiponectin↗

Treatment of obese female and male SHHF/Mcc-fa(cp) rats with antihypertensive drugs, nifedipine and enalapril: effects on body weight, fat distribution, insulin resistance and systolic pressure.

Little is known about the effects of common antihypertensive drugs in obese, insulin-resistant females. Nine-month-old obese female SHHF/Mcc-fa(cp) rats that received either nifedipine, a calcium channel antagonist, or enalapril, an angiotensin-converting-enzyme inhibitor, for three months were compared with untreated SHHF/Mcc-fa(cp) rats (controls). After one month, nifedipine significantly decreased body weight in obese females compared to either enalapril or controls. After three months of treatment, total, abdominal, and subcutaneous fat masses were decreased in obese females given nifedipine compared to either enalapril or controls. Enalapril treatment was associated with a redistribution of fat mass from abdominal to subcutaneous depots. Nifedipine reduced plasma triglyceride and fasting glucose levels and improved insulin response to an oral glucose load in obese females, whereas enalapril did not appear to affect glycemic control. Systolic pressure was not significantly decreased until after two months of treatment with nifedipine or three months of treatment with enalapril in obese females and may have coincided with improvement in insulin-resistance. Similarly, plasma atrial natriuretic peptide concentrations were significantly lower in obese females given nifedipine. To determine how obese males responded to a calcium channel antagonist, six-month-old obese male SHHF/Mcc-fa(cp) rats were treated for three months with either nifedipine or placebo (controls). Nifedipine-treated obese males showed a mild but significant decrease in weight gain that was due to a decrease in fat deposition in both subcutaneous and abdominal depots and systolic blood pressure was significantly reduced after one month of treatment. Nifedipine did not affect other plasma biochemical parameters in obese males. In conclusion, nifedipine improved systolic pressure and glycemic control in obese female SHHF/Mcc-fa(cp) rats, effects that may be associated with a marked loss in body weight and fat mass and improved lipid metabolism. Nifedipine-treated obese males exhibited only a diminished weight gain that was not associated with changes in diabetic characteristics.

Animals↗

Influence of dietary and genetic factors on metabolic status in obese and lean postmenopausal women.

This preliminary study addressed the possible associations between dietary, genetic and hormonal factors that are involved in the development of menopausal obesity and its metabolic consequences. We performed anthropometrical, hormonal and biochemical measurements and used a nutritional questionnaire on 43 postmenopausal women who were non-HRT-users (14 obese and 29 non-obese subjects, mean age +/- SD of 52.8 +/- 4.6 years, mean body mass 74.6 +/- 4.6 kg). All of the women also had fat mass assessed by DPX-Lunar. From the 24-h dietary recall, the nutrient intake in daily food rations was calculated using a computer program (Nutritionist IV, San Bruno, CA, USA) based on our own database. Restriction fragment length polymorphism of the estrogen-receptor-alpha gene was determined with the PvuII restriction enzyme. Obese women widely under-reported their daily food intake. The analysis of body fat distribution showed that the total body weight and the percentage of total fat mass were significantly increased in the obese group (p = 0.001). We observed significantly higher leptin (20.56 +/- 11.9 vs. 9.02 +/- 2.8 ng/ml) and total cholesterol (but lower cholesterol HDL), triglycerides levels in the obese subjects (261.89 +/- 48.8 vs. 248.23 +/- 55.9; 52.17 +/- 13.6 vs. 60.92 +/- 13.04; 142.82 +/- 61.02 vs. 106.61 +/- 27.7 mg/dl). Except for diastolic blood pressure, clinical variables were not significantly different between subjects with and without the PvuII ERalpha polymorphism. Allele frequencies of the ERalpha polymorphism did not differ from those previously reported (P-0.48, p-0.52) in our study. In this preliminary study we failed to find dietary and genetic factors involved in the pathogenesis of menopausal obesity. However, our results provide support for the notion that the perimenopausal increase in visceral fat is a significant factor involved in the increased cardiovascular risk in postmenopausal women.

Blood Glucose↗

ACTH and cortisol response to combined corticotropin releasing hormone-arginine vasopressin stimulation in obese males and its relationship to body weight, fat distribution and parameters of the metabolic syndrome.

OBJECTIVES: To investigate the activity of the hypothalamic-pituitary-adrenal (HPA) axis in male obesity and its relationship with several prominent parameters of the metabolic syndrome. DESIGN: A cross-sectional clinical study of the activity of the HPA axis in groups of obese males and normal-weight controls. SUBJECTS: Seventeen obese non-diabetic males with a body mass index (BMI) >28 and eight normal-weight controls were examined. MEASUREMENTS: Fat free mass (FFM) and fat mass (FM) were measured by bioelectrical impedance, and the waist-to-hip circumference ratio (WHR) was calculated in all subjects. Baseline samples were taken for sex hormone and lipid determination, and an oral glucose tolerance test (OGTT) was performed for glucose and insulin determination. The activity of the HPA axis was determined by the combined administration of human corticotropin releasing hormone (CRH) (100 microg) and arginine vasopressin (AVP) (0.3 IU). RESULTS: As expected, FFM and FM and the WHR were higher in obese men than in controls, as were fasting insulin and stimulated (as area under the curve (AUC)) glucose and insulin concentrations. Baseline adrenocorticotropin (ACTH) and cortisol concentrations were similar in both groups, but stimulated (as AUC), ACTH was higher (P < 0.05) in obese subjects than in controls, whereas no significant difference in cortisolAUC was present. Since the main differences between obese subjects and controls were present during the early 30 min of the test, the correlation coefficients between total and incremental ACTH(AUC 0-30 min) and CortisolAUC 0-30 min and all other variables were analyzed. A significant correlation coefficient was present between them and all anthropometric parameters, fasting insulin and insulinAUC, but not with androgens and gonadotrophins. In addition, a significant correlation was present between total and incremental ACTH(AUC 0-30 min) and triglyceride concentrations. However, after adjusting for BMI or FM values, all correlation coefficients became non-significant, except the one between incremental ACTH(AUC 0-30 min) and insulinAUC (P < 0.05). CONCLUSION: These findings indicate that obese men may also have an altered pituitary response to combined CRH/AVP stimulation, which appears to be predominantly related to body size and total body fat. ACTH hyperresponsiveness after CRH/AVP stimulation also appears to be related to hyperinsulinaemia, but underlying mechanisms of this relationship remain to be elucidated.

Adipose Tissue↗

[Central fat deposits contribute to atherosclerosis and insulin resistance and peripheral fat deposits protect against atherosclerosis and insulin resistance in postmenopausal women--secondary publication].

An analysis of 290 postmenopausal women, subdivided into four distinct body fat distribution groups, showed that peripheral fat mass (PFM) confers insulin-sensitizing and anti-atherogenic effects. PFM contributes to circulating adiponectin, an adipocyte-derived hormone with insulin-sensitizing, anti-inflammatory, and anti-atherogenic effects. In generally obese women, the secretion of adiponectin by PFM provides effective anti-atherogenic protection. In postmenopausal women, body fat distribution has more critical implications for metabolic and cardiovascular risk than overall obesity per se.

Absorptiometry, Photon↗

Testosterone levels in obese male patients with obstructive sleep apnea syndrome: relation to oxygen desaturation, body weight, fat distribution and the metabolic parameters.

To investigate the impact of obstructive sleep apnea syndrome (OSAS) on testosterone levels and on the main parameters of the metabolic syndrome in abdominally obese men, 15 male subjects with abdominal obesity phenotype and polysomnographic diagnosis of OSAS (OB-OSAS) and 15 controls matched for age and anthropometric parameters (OB) were investigated. Anthropometry, SHBG, sex hormones and several parameters of the metabolic syndrome were measured. Only subjects with an Epworth Sleepiness Score greater than 10 underwent a polysomnographic study with calculation of the number of desaturation rates per sleeping hour (ODI), the minimal oxygen saturation during each desaturation episode (minSaO2) and the mean minimal arterial oxygen saturation for the whole night period (MminSaO2). Both total and free testosterone levels were lower in OB-OSAS than in OB patients. A negative correlation between polysomnographic parameters (ODI, minSaO2 and MminSaO2) and testosterone levels was found. The relationship between total and free testosterone and ODI persisted after adjusting for body mass index (BMI) and waist (W) values. Triglyceride and uric acid levels were significantly higher in OB-OSAS than in OB patients. A negative correlation between testosterone and acid uric level and a positive correlation between testosterone and HDL-cholesterol level was found, regardless of BMI and W circumference, particularly in the OB-OSAS group. Our study suggests that, in patients with obesity and OSAS, the severity of hypoxia during sleeping hours may be an additional factor in reducing testosterone levels, regardless of BMI and abdominal fatness. This may contribute in worsening metabolic abnormalities which, in men with OSAS, exceed those expected on the basis of degree of obesity and pattern of fat distribution.

Adipose Tissue↗

Incidence of NIDDM and impaired glucose tolerance in hypertensive subjects. The San Antonio Heart Study.

Hypertension often occurs in association with NIDDM and IGT. We examined the association of hypertension at baseline to the 8-yr incidence of NIDDM and IGT in 1471 subjects who participated in the San Antonio Heart Study. Subjects who were hypertensive at baseline had a higher incidence of NIDDM (8.9 vs. 4.9%, P = 0.041) and IGT (25.2 vs. 10.0%, P < 0.001) than subjects who were normotensive at baseline. After adjusting for age, sex, ethnicity, obesity, body fat distribution, fasting glucose, and insulin, this excess was eliminated for NIDDM, but not for IGT. Specifically, the adjusted OR for NIDDM in hypertensive versus normotensive patients was 0.73 (95% Cl 0.34-1.58), whereas the adjusted OR for IGT was 1.87 (95% Cl 1.08-3.22). The excess risk of NIDDM in hypertensive patients can be explained by their greater age, obesity, more unfavorable body fat distribution, and hyperinsulinemia, whereas the excess risk of IGT is independent of these factors.

Adult↗

Visceral fat accumulation as a risk factor for prostate cancer.

OBJECTIVE: No clear association between obesity or body fat distribution and prostate cancer has been shown. We investigated the relation between visceral fat accumulation as measured by computed tomography (CT) and the occurrence of prostate cancer. RESEARCH METHODS AND PROCEDURES: We compared body fat distribution assessed by a direct method (CT) in 63 prostate cancer cases with 63 age-matched healthy community controls. A CT scan at the level of the fourth lumbar vertebra was performed in all participants. RESULTS: Patients presented a significantly higher mean total abdominal fat area (509.2 +/- 226.1 vs. 334.3 +/- 132.9 cm2, p < 0.001), mostly because of a higher mean visceral fat area (VF; 324.7 +/- 145.6 vs. 177.4 +/- 88.4 cm2, p < 0.001) and a significantly higher mean ratio between visceral and subcutaneous fat areas (V/S ratio; 1.8 +/- 0.4 vs. 1.2 +/- 0.4, p < 0.001). A significantly higher risk of prostate cancer was found for participants with higher VF (odds ratio = 4.6; 95% confidence interval = 2.6 to 8.2 per SD increase) and V/S ratio (odds ratio = 6.0; 95% confidence interval = 2.3 to 11.0 per SD increase). DISCUSSION: These results suggest a role for visceral obesity, quantified by CT, as a risk factor for prostate cancer. The action of the adipocytokines secreted by visceral fat cells, steroid hormone disturbances, and increased levels of insulin or other hormones noted in visceral obesity may explain this association.

Adipose Tissue↗

The waist-to-hip ratio corrected for body mass index is related to serum triglycerides and high-density lipoprotein cholesterol but not to parameters of glucose metabolism in healthy premenopausal women.

Android obesity is associated with metabolic disorders, but the causality of this relationship remains unclear. We investigated the association of body mass index (BMI) and waist-to-hip ratio (WHR) with hormones, glucose tolerance, insulin sensitivity, serum lipoproteins, and the serum activity of hepatic enzymes in 40 healthy premenopausal women (BMI 19.2-46.1, mean 32.6 +/- 1.3 kg/m2; WHR 0.68-1.01, mean 0.82 +/- 0.02). BMI correlated with WHR (r = 0.52, P < 0.01). After correction for WHR, BMI was negatively correlated with high-density lipoprotein cholesterol and positively with total and very low density lipoprotein triglycerides, insulin sensitivity, blood glucose, serum insulin and glucagon. After adjustment for BMI, WHR was significantly associated with high-density lipoprotein cholesterol, total and very low density lipoprotein triglycerides, and the serum activities of hepatic enzymes but not with insulin sensitivity, blood glucose, serum insulin, or glucagon. According to these results, body fat distribution assessed by WHR is related to hypertriglyceridemia and alterations in hepatic function such as a fatty liver. WHR is not primarily related to glucose metabolism in healthy premenopausal women without preexisting metabolic disorders such as glucose intolerance. Therefore the observable association between android obesity and manifest impairment in glucose metabolism may develop secondarily during persisting hyperinsulinemia, which itself is primarily related to obesity. Thus an android body fat distribution may rather be an accompanying feature than a predictor of impaired glucose tolerance and insulin resistance.

Adult↗

Lipoprotein (a) in childhood: correlations with family history of cardiovascular disease.

The association between lipoprotein (a) [Lp(a)] and cardiovascular diseases is well known. Lp(a) is an independent risk factor for the development of atherosclerosis. Little information concerning Lp(a) during childhood is available. The aim of the present investigation was to determine the Lp(a) concentration in a cohort of children aged between 4 and 15 yr and to correlate Lp(a) with: a) overweight status; b) body fat distribution; c) family history of vascular diseases in their parents and grandparents. Six hundred and eighty-nine children (350 males, 339 females), were enrolled in the study. BMI as index of being overweight was calculated; the waist-to-hip ratio (WHR) and the waist-to-thigh ratio (WTR) were calculated to obtain two anthropometric indexes for the pattern of body fat distribution. The areas of visceral (VAT) and subcutaneous adipose tissue (SAT) were evaluated by MRI at the L4-L5 level in only 30 overweight subjects. The serum of Lp(a), total cholesterol (TC), HDL-cholesterol, LDL-cholesterol and triglycerides were evaluated in the whole population. Moreover, the same biochemical study was performed in 70 children's parents randomly chosen. A structured questionnaire was administered to the children's parents to investigate the presence of cardiovascular disease (CVD) in family stories. Our data show no Lp(a) serum differences between children according to sex, age and body composition. The strong correlation between the children's and the parents' Lp(a) concentrations and the occurrence of CVD in their grandparents suggests that Lp(a) represents an important independent early risk factor for the development of CVD in adulthood. Measurements of Lp(a) in childhood may help to evaluate this risk in subjects with family history of cardiovascular diseases.

Adolescent↗

Impact of dialysis modality on body composition in patients with end-stage renal disease.

Loss of muscle mass and altered body fat distribution (i.e. increased central fat stores in the presence of normal peripheral fat stores) have been reported in patients on hemodialysis (HD), when compared to normal volunteers. Whether treatment of end-stage renal disease (ESRD) with continuous ambulatory peritoneal dialysis (CAPD) would alter body composition in a different manner than HD is unknown. To answer this question, two groups (n = 11 each) of male patients with ESRD (matched for age, residual renal function, body weight and body height as well as physical activity) were studied. Muscle mass and body fat distribution were assessed using computed tomography. Mid-thigh muscle area, peripheral and central fat stores were similar between the two groups of dialysis patients. In both patient groups muscle mass and fat stores were independent of duration of dialysis, age, daily protein intake and residual renal function. In CAPD-patients mid-thigh muscle area was correlated with plasma albumin (r = 0.56, p < 0.05), while serum cholesterol level was correlated with mediastinal fat area (r = 0.81, p < 0.01). The present results indicate that both treatment modalities of ESRD (HD vs CAPD) result in similar changes of body composition. Despite continuous glucose loading in CAPD-patients, neither central nor peripheral fat stores are increased in these subjects compared with HD treated patients.

Adipose Tissue↗

Younger, premenopausal women with major depressive disorder have more abdominal fat and increased serum levels of prothrombotic factors: implications for greater cardiovascular risk.

Major depressive disorder (MDD) is one of the most common psychiatric illnesses in the adult population. It is often associated with an increased risk of cardiovascular disease. We measured body fat distribution as well as plasminogen activator inhibitor-1 (PAI-1) concentration and factor VIII (fVIII) activity at 8:00 am and 8:00 pm in 45 premenopausal women with MDD vs 28 healthy controls (age, 37 +/- 6.8 vs 35 +/- 6.5; weight [kg], 75.3 +/- 17.2 vs 67.9 +/- 10.2; mean +/- SD] participating in a prospective study of bone turnover, the POWER Study. At the time of evaluation, women with MDD were mildly depressed and mostly in clinical remission on antidepressants. After adjusting for body weight, women with MDD had greater waist circumference and abdominal fat as well as significantly higher evening (8:00 pm) PAI-1 and fVIII levels than controls. Even when age-, race-, and body mass index-matched subsets were compared, the MDD group continued to exhibit statistically higher PAI-1 and fVIII levels. The observed alterations in body fat distribution (increased abdominal fat) and prothrombotic factors (increased PAI-1 and fVIII) may be in part responsible for the increased risk of cardiovascular disease reported in association with major depression.

Abdomen↗

Effect of Abdominal Lipectomy on Lipid Profile, Glucose Handling and Blood Pressure in Patients with Truncal Obesity.

BACKGROUND: Previous studies have found that people with apple (android)-shaped body fat distribution are at risk of developing cardiovascular disease, impaired glucose tolerance and hypertension. METHODS: To investigate the effects of lipectomy, we measured lipid and lipoprotein levels, indices associated with glucose tolerance and blood-pressure. The tests were performed pre-operatively and 3 and 12 months post-operatively in 34 subjects (obese lipectomy patients with android-shaped body fat distribution) and 23 controls (obese breast reduction patients). RESULTS: In subjects, total cholesterol, LDL and blood pressure were significantly lower at 3 months follow-up, but returned to pre-operative levels at 12 months follow-up. Plasma insulin decreased significantly at 3 months follow-up, and continued to decrease at 12 months follow-up. Triglycerides, HDL, fasting blood sugar, glycosylated hemoglobin and C-peptide did not change at 3 and 12 months follow-up. There were no changes in controls. CONCLUSIONS: Lipectomy in patients with truncal obesity may reduce plasma insulin levels, but had no lasting effect on plasma lipids.

Journal Article↗