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Psoas muscle attenuation measurement with computed tomography indicates intramuscular fat accumulation in patients with the HIV-lipodystrophy syndrome.

The human immunodeficiency virus (HIV)-lipodystrophy syndrome is characterized by abnormalities of lipid metabolism, glucose homeostasis, and fat distribution. Overaccumulation of intramuscular lipid may contribute to insulin resistance in this population. We examined 63 men: HIV positive with lipodystrophy (n = 22), HIV positive without lipodystrophy (n = 20), and age- and body mass index-matched HIV-negative controls (n = 21). Single-slice computed tomography was used to determine psoas muscle attenuation and visceral fat area. Plasma free fatty acids (FFA), lipid profile, and markers of glucose homeostasis were measured. Muscle attenuation was significantly decreased in subjects with lipodystrophy [median (interquartile range), 55.0 (51.0-58.3)] compared with subjects without lipodystrophy [57.0 (55.0-59.0); P = 0.05] and HIV-negative controls [59.5 (57.3-64.8); P < 0.01]. Among HIV-infected subjects, muscle attenuation correlated significantly with FFA (r = -0.38; P = 0.02), visceral fat (r = -0.49; P = 0.002), glucose (r = -0.38; P = 0.02) and insulin (r = -0.60; P = 0.0001) response to a 75-g oral glucose tolerance test. In forward stepwise regression analysis with psoas attenuation as the dependent variable, visceral fat (P = 0.02) and FFA (P < 0.05), but neither body mass index, subcutaneous fat, nor antiretroviral use, were strong independent predictors of muscle attenuation (r2 = 0.39 for model). Muscle attenuation (P = 0.02) and visceral fat (P = 0.02), but not BMI, subcutaneous fat, FFA, or antiretroviral use, were strong independent predictors of insulin response (area under the curve) to glucose challenge (r2 = 0.47 for model). These data demonstrate that decreased psoas muscle attenuation due to intramuscular fat accumulation may contribute significantly to hyperinsulinemia and insulin resistance in HIV-lipodystrophy patients. Further studies are needed to assess the mechanisms and consequences of intramuscular lipid accumulation in HIV-infected patients.

Absorptiometry, Photon↗

Lipodystrophy in HIV-infected pediatric patients receiving protease inhibitors.

BACKGROUND: In adults with HIV infection, lipodystrophy syndrome may develop, characterized by peripheral wasting in the extremities, central obesity, hyperlipidemia, and insulin resistance. This syndrome occurs in HIV-positive pediatric patients who take protease inhibitors (PIs). However, the full characteristics of the syndrome in this population is not fully understood. OBJECTIVE: To evaluate the association between the use of PIs and the occurrence of lipodystrophy in HIV-infected children. METHODS: Pediatric patients attending an outpatient HIV clinic between 1994 and 2000 were prospectively enrolled. All patients were between 1 and 17 years of age and had received a PI for at least 1 month. The medical records were reviewed monthly for 3 months before PI therapy was started and then monthly for 36 months. At each evaluation, serum total cholesterol, high-density lipoprotein-cholesterol, low-density lipoprotein-cholesterol, triglycerides, and blood glucose concentrations were recorded, as well as physician-documented physical examination findings including subcutaneous fat in the arms, face, and legs, and abdominal girth. Baseline clinical and laboratory data were compared with follow-up data using a paired t-test. RESULTS: Twenty-one pediatric patients received a PI. Of these, 2 developed lipodystrophy, one at 15 months and one at 18 months after PI therapy was started. Neither child had had lipodystrophy before therapy. Twelve children who were taking ritonavir or nelfinavir, including 1 who developed lipodystrophy, developed abnormally high total cholesterol and triglyceride blood concentrations. All patients receiving indinavir also experienced a substantial increase in their triglyceride concentrations at follow-up evaluations, but no significant increases in total cholesterol occurred. Blood glucose concentrations were not significantly different between baseline and follow-up examinations in our patients. CONCLUSIONS: Lipodystrophy may occur in some HIV-infected children receiving PIs, and dyslipidemias may also develop in some patients taking these drugs.

Adolescent↗

Adipocyte-derived hormone levels in HIV lipodystrophy.

OBJECTIVE: Despite evidence for the role of adipocyte-derived hormones in insulin resistance, little is known about their levels in human lipodystrophic states. We examined the relationships of plasma leptin and adiponectin levels to fat distribution and insulin sensitivity in the HIV lipodystrophy syndrome. DESIGN: Cross-sectional study SETTING: HIV primary care practices PATIENTS: HIV-infected men with (n=13) and without (12) lipodystrophy and healthy uninfected controls (12). MAIN OUTCOME MEASURES: Plasma adiponectin and leptin levels were measured in the fasting state. Body composition was assessed by physical examination, dual-energy x-ray absorptiometry and computed tomography. Insulin sensitivity (S(I)) was measured using the insulin-modified frequently sampled intravenous glucose tolerance test. RESULTS: Leptin levels were significantly higher in HIV-infected men with lipodystrophy as compared to HIV-infected controls (5.2 vs 3.0 ng/ml, P=0.01). Across the entire study population, leptin levels were positively correlated with measures of general adiposity. In the HIV-infected patients, leptin levels were negatively correlated with S(I) after adjustment for fat mass (r=-0.38, P=0.07). Adiponectin levels were significantly lower in HIV-infected men with lipodystrophy as compared to both HIV-infected and healthy controls (1.6 vs 3.4 microg/ml, P<0.05 and 1.6 vs 6.7 microg/ml, P<0.001, respectively). Adiponectin levels, after adjustment for fat mass, were correlated with measures of fat distribution. Finally, in the HIV-infected patients, adiponectin levels were significantly and positively correlated with S(I) after adjustment for fat mass (r=0.75, P < or = 0.001), and adiponectin level was also an independent determinant of S(I). CONCLUSIONS: Plasma leptin and adiponectin levels are altered in the HIV lipodystrophy syndrome. Adiponectin deficiency may play a role in the insulin resistance associated with HIV lipodystrophy.

Adipocytes↗

Lipodystrophy of the extremities. A dominantly inherited syndrome associated with lipatrophic diabetes.

A female patient with the following symptoms has been observed: complete absence of subcutaneous fat on the arms and legs, well developed adipose tissue on the trunk and face, severe hyperlipidemia, eruptive xanthomas, insulin resistant diabetes mellitus with lack of ketoacidosis, hepatomegaly and elevated basal metabolic rate. The patient thus exhibited all characteristics of lipatrophic diabetes (Lawrence type of diabetes). The mother and a sister of the patient were found to have the same peculiar appearance and a slight hyperlipidemia but no diabetes mellitus. The combination of this type of partial lipodystrophy with severe hyperlipidemia, insulin resistant diabetes mellitus without ketoacidosis and elevated basal metabolic rate was further observed in 2 unrelated patients without known familial occurrence. Thus partial lipodystrophy of the extremities is another, previously undescribed, syndrome associated with the Lawrence type of diabetes mellitus. In the 1 family the syndrome of lipodystrophy and hyperlipidemia is dominantly inherited. Besides the autosomal recessively inherited syndrome of congenital generalized lipodystrophy there is a heterogenous group of dominantly inherited syndromes with various types of lipodystrophy.

Adult↗

[HIV-lipodystrophy syndrome].

CLINICAL FINDINGS: The HIV-associated lipodystrophy syndrome is reported with an increasing incidence predominantly in HIV-seropositive patients on antiretroviral therapy. The core of the lipodystrophy syndrome consists of fat loss in face, extremities and buttocks with or without a visceral fat accumulation, hyperlipidemia and a disturbed glucose metabolism are considered essential parts of the syndrome too. Additional metabolic abnormalities are regarded as syndrome related. PATHOGENESIS: Currently identified risk factors associated with the development of lipodystrophy are antiretroviral treatment (duration, number and kind of drugs), low CD4 cell count, higher age and metabolic abnormalities. The currently favored hypotheses to explain the lipodystrophy syndrome are essentially based on the assumption that antiretroviral treatment is the cause of the disorder. TREATMENT: The short-term benefit of antiretroviral treatment is greater than the disadvantages of the lipodystrophy syndrome, in the long term, however, the cardiovascular risk associated with the metabolic disturbances may result in an increased mortality on its own. The current approach to treatment includes modification of antiretroviral therapy and specific treatment of symptoms.

Antiretroviral Therapy, Highly Active↗

Sterol regulatory element-binding proteins and reactive oxygen species: potential role in highly-active antiretroviral therapy (HAART)-associated lipodystrophy.

OBJECTIVES: To summarize the existing pathophysiological concepts and to hypothesize new mechanisms involving sterol regulatory element-binding proteins (SREBP) and reactive oxygen species (ROS), in highly-active antiretroviral therapy (HAART)-associated lipodystrophy. CONCLUSIONS: The widespread use of HAART has dramatically reduced AIDS-related deaths in the developed world. Unfortunately, long-term HAART has been associated with a unique and unexpected syndrome of lipodystrophy manifested by fat wasting in the subcutaneous adipose tissue of the face and extremities, and accumulation of fat in the viscera and neck, often accompanied by hyperlipidemia and insulin resistance. Despite intensive study of this syndrome over the past three years, the pathophysiologic mechanism(s) underlying HAART-associated lipodystrophy syndrome remains elusive. A continued attempt to elucidate pathophysiological mechanisms involved in HAART-associated lipodystrophy remains critically important to improving the treatment strategies for this epidemic condition. In this review, we suggest two new hypotheses that may explain the pathogenesis and pathophysiology of HAART-associated lipodystrophy that warrant further investigations. First, we hypothesize that upregulation and/or increase in the mature form of SREBP-1 caused by HAART may lead to perturbations in synergistic regulation of genes involved in maintenance of cholesterol homeostasis and synthesis of fatty acids, that may explain the accumulation of fat which is a hallmark of this syndrome. Second, we hypothesize that the generation of reactive oxygen species in adipocytes may be an early and critical event in HAART-associated toxicity leading to cell death, partially explaining the mechanism underlying lipoatrophy.

Acquired Immunodeficiency Syndrome↗

HIV-1 protease inhibitor-associated partial lipodystrophy: clinicopathologic review of 14 cases.

BACKGROUND: A novel type of acquired partial lipodystrophy resulting from chronic treatment with HIV-1 protease inhibitor drugs has recently been described. OBJECTIVE: We studied the clinical and histopathologic features of a series of patients with HIV-1 protease inhibitor-associated lipodystrophy to evaluate the frequency of associated abnormalities. METHODS: The study group consisted of 14 consecutive HIV-infected patients receiving treatment with HIV-1 protease inhibitors, who experienced partial lipodystrophy. Clinical (including anthropometric data) and histopathologic findings, as well as biochemical and virologic data, were evaluated. RESULTS: A significant loss of fat in the face and extremities was associated with fat deposition on the abdomen, breast, and dorsocervical fat pad. Central obesity was frequently present. Histopathologic features disclosed a peculiar type of involutional lipodystrophy. Hypertriglyceridemia was detected in 78.5% of patients. Low serum levels of cholesterol-high-density lipoprotein and high cholesterol-very-low-density lipoprotein were noted. Hyperglycemia, hypercholesterolemia, or hyperinsulinemia were occasionally detected. CONCLUSION: HIV-1 protease inhibitor-associated lipodystrophy represents a new entity with peculiar clinical and histopathologic features. Metabolic associated abnormalities may imply a risk of future atherogenic complications.

Adult↗

Molecular basis of partial lipodystrophy and prospects for therapy.

Lipodystrophy is characterized by altered partition of adipose tissue. Despite heterogeneous causes, which include genetic, autoimmune and drug-induced forms, lipodystrophy syndromes have similar metabolic attributes, including insulin resistance, hyperlipidemia and diabetes. The mechanisms underlying the insulin resistance are unknown. One form of lipodystrophy, namely Dunnigan-type familial partial lipodystrophy (FPLD) was shown to result from mutations in the LMNA gene, which encodes nuclear lamins A and C. Although the relationship between the mutations in the nuclear envelope and insulin resistance is unclear at present, these findings might eventually be shown to have relevance for the common insulin resistance syndrome and for drug-associated lipodystrophies.

Endopeptidases↗

[Lipodystrophies].

The lipodystrophy syndromes are rare disorders characterized by the loss of adipose tissue. The loss of fat tissue can have genetic, immune, or infectious/drug-associated causes. With the extent of fat loss metabolic complications, such as insulin resistance, diabetes mellitus, hypertriglyceridemia, and fatty liver increase in severity. Lipodystrophies can be divided into two subtypes: familial and acquired. Causative mutations have recently been identified in one form of familial lipodystrophy as well as in one form of acquired lipodystrophy. Several mouse models might help understanding the development of these syndrome. In this review article, the recently introduced classification of lipodystrophy syndromes is presented as well as new insights into pathogenesis and therapeutic strategies.

Adipose Tissue↗

[Progressive lipodystrophy (Barraquer-Simon syndrome): differential diagnosis and clinical aspects].

"Progressive lipodystrophy" or "partial lipodystrophy of the cephalothoracic type" is a rare, acquired condition of unknown aetiology with onset in childhood and a complete loss of subcutaneous fat of face, neck, trunk and upper extremities. The disease is more common in females than males and causes a disfigurement of the face; that it cannot be regarded only as a harmless variation, is above all due to a typical concomitant disease, membranoproliferative glomerulonephritis with hypocomplementaemia. Laboratory investigations nearly always reveal a complement-activation by the "alternative pathway" with consumption and lack of complement-component C3, a finding which allows a clear distinction between partial lipodystrophy and congenital or acquired forms of total lipodystrophy ("Berardinelli-Seip-Syndrom", lipoatrophic diabetes) and other circumscript lipodystrophies.

Adipose Tissue↗

The complement abnormalities of lipodystrophy.

Investigation of the serum complement system in 25 patients with various forms of lipodystrophy showed no abnormality in three patients with total lipodystrophy; a single patient with limb lipodystrophy had evidence of activation of the classical complement pathway. However, of the 21 patients with partial lipodystrophy, 17 had low serum C3, with normal C4 and C2, concentrations, accompanied in 14 by a serum C3 splitting factor indistinguishable from nephritic factor, suggesting activation of the alternative pathway. These abnormalities occurred in 10 patients without clinically overt renal disease. Seven patients had overt nephritis; renal biopsies obtained in six showed mesangiocapillary (membranoproliferative) nephritis in all. Thus, the majority of patients with partial lipodystrophy have hypocomplementemia. Although nephritis may not invariably develop, the high rate of mesangiocapillary nephritis in these patients suggests that complement activation via the alternative pathway predisposes to the development of this form of glomerular disease.

Adolescent↗

Decreased binding of insulin to its receptor in patients with congenital generalized lipodystrophy.

Patients with congenital generalized lipodystrophy are extremely insulin resistant. To ascertain whether this resistance is due to an insulin receptor defect, we tested four young patients with congenital generalized lipodystrophy and seven healthy persons of comparable age for the binding of 125I insulin to mononuclear leukocytes isolated from peripheral blood. Mononuclear leukocytes from patients with congenital generalized lipodystrophy bound significantly less insulin than cells from normal subjects (P less than 0.01). When patients with lipodystrophy fasted for 60 hours, the insulin binding increased. Altered insulin receptors may be responsible for the pronounced insulin resistance and the decreased synthesis of triglycerides in congenital generalized lipodystrophy.

Adolescent↗

Subcutaneous adipocyte apoptosis in HIV-1 protease inhibitor-associated lipodystrophy.

BACKGROUND: Inhibitors of HIV-1 protease produce a rapid decrease in plasma HIV-1 RNA, with concomitant immune reconstitution. However, severe metabolic side effects together with a previously unseen form of lipodystrophy have been associated with long-term use of protease-inhibitor therapy. The pathogenic mechanisms underlying HIV-1 protease inhibitor-associated lipodystrophy are still largely unknown. METHODS: Fourteen HIV-infected patients with HIV-1 protease inhibitor-associated lipodystrophy had a biopsy of subcutaneous fat performed in the antero-lateral aspect of the right leg. The samples were submitted for standard pathologic study together with a careful search for adipocyte apoptosis. Apoptosis was assessed by the terminal deoxynucleotidyl transferase dUTP-digoxigenin nick end labelling (TUNEL) method, using the ApopTag kit (Oncor, Gaithersburg, Maryland, USA). The procedure was performed between three and five times for each sample. Appropriate positive and negative controls were used. Controls which were subcutaneous fat biopsies from patients with untreated melanoma were also examined for the presence of apoptosis. RESULTS: Fourteen HIV-infected patients with a mean exposure to HIV-1 protease inhibitors of 12.6 +/- 3.7 months (range: 6-21 months), developed the characteristic features of HIV-1 protease inhibitor-associated lipodystrophy. All but one patient had an abnormal waist:hip ratio, and they all exhibited an abnormal serum lipid profile. Pathologically, subcutaneous fat atrophy was a constant feature, along with focal lipogranuloma formation and vascular proliferation. One of the eleven assessable biopsy samples was negative for the presence of apoptosis, six showed focally positive apoptotic cells, and the remaining four biopsies demonstrated moderate positivity. Apoptotic changes were also detected in endothelial cells. Apoptotic changes were more pronounced in patients with higher increases in CD4 and CD8 counts, and in those with a greater decay in plasma viral load. CONCLUSIONS: Subcutaneous adipocyte apoptosis occurs in lipoatrophic areas of patients with HIV-1 protease inhibitor-associated lipodystrophy.

Adipocytes↗

Increased fat accumulation in the liver in HIV-infected patients with antiretroviral therapy-associated lipodystrophy.

OBJECTIVE: To determine liver fat content in patients with highly active antiretroviral therapy (HAART)-associated lipodystrophy. BACKGROUND: Lipodystrophy in several animal models is associated with fat accumulation in insulin-sensitive tissues, such as the liver. This causes hyperinsulinaemia, dyslipidaemia and other features of insulin resistance. DESIGN: A cross-sectional study. SUBJECTS AND METHODS: Three age- and weight-matched groups were compared: 25 HIV-positive men with HAART-associated lipodystrophy (HAART+LD+), nine HIV-positive men receiving HAART, but without lipodystrophy (HAART+LD-), and 35 HIV-negative healthy men (HIV-). Liver fat content was measured using proton spectroscopy. Intra-abdominal and subcutaneous fat were determined using magnetic resonance imaging. RESULTS: Liver fat content was significantly higher in the HAART+LD+ (8 +/- 10%) than the HIV- (5 +/- 7%; P < 0.05) or the HAART+LD- (3 +/- 5%; P < 0.01) group. Liver fat content correlated with serum fasting insulin in the HAART+LD+ (r = 0.47; P < 0.05) and HIV- groups (r = 0.65; < 0.001), but not with the amount of intra-abdominal fat. Within the HAART+LD+ group, serum insulin did not correlate with the amount of intra-abdominal fat. The HAART+LD+ group had a lower serum leptin concentration when compared to the two other groups. Features of insulin resistance, including hepatic fat accumulation, were not found in HAART+LD-group. CONCLUSIONS: The severity of the insulin resistance syndrome in patients with HAART-associated lipodystrophy is related to the extent of fat accumulation in the liver rather than in the intra-abdominal region. Fat accumulation in the liver may therefore play a causative role in the development of insulin resistance in these patients.

Adipose Tissue↗

Adipose tissue expression of IL-18 and HIV-associated lipodystrophy.

IL-18 is an inducer of apoptosis/tissue injury. IL-18 messenger RNA expression was examined in adipose tissue (AT) obtained from HIV patients with lipodystrophy, without lipodystrophy and healthy controls. IL-18 mRNA was expressed in AT at increased levels in lipodystrophy-positive compared with lipodystrophy-negative patients and healthy controls. Higher levels of IL-18 mRNA were found in femoral-gluteal AT compared with abdominal AT, and correlated with limb fat loss. These findings suggest that IL-18 is linked to HIV-associated lipodystrophy.

Adipose Tissue↗

Changes in cortisol/DHEA ratio in HIV-infected men are related to immunological and metabolic perturbations leading to malnutrition and lipodystrophy.

HIV-1 infection is associated with immune deficiency and metabolic perturbations leading to malnutrition and lipodystrophy. Because immune response and metabolic perturbations (protein and lipid metabolism) are partly regulated by glucocorticoids and DHEA, we determined serum cortisol and DHEA concentrations, and the cortisol/DHEA ratio in HIV-positive men, either untreated or receiving various antiretroviral treatments (ART), including highly active antiretroviral therapy (HAART). Cortisol levels were found increased in all patients, whatever the stage of the disease and independently of the ART treatment. In contrast, serum DHEA was elevated in the asymptomatic stage, and it was below normal values in AIDS patients, either untreated or mono-ART-treated. The DHEA level was low in HAART-treated patients with lipodystrophy (LD+) and highly increased in HAART-treated patients without lipodystrophy (LD-). Consequently, the cortisol/DHEA ratio was similar to controls in asymptomatic untreated or mono-ART-treated patients, but increased in AIDS patients. Interestingly, this ratio was increased in LD+ HAART-treated men, but normalized in LD- HAART-treated patients. Changes in the cortisol/DHEA ratio were negatively correlated with the in vivo CD4 T-cell counts, with the malnutrition markers, such as body-cell mass and fat mass, and with the increased circulating lipids (cholesterol, triglycerides, and apolipoprotein B) associated to the lipodystrophy syndrome. Our observations show that the cortisol/DHEA ratio is dramatically altered in HIV-infected men, particularly during the syndromes of malnutrition and lipodystrophy, and this ratio remains elevated whatever the antiretroviral treatment, including HAART. These findings have practical clinical implications, since manipulation of this ratio could prevent metabolic (protein and lipid) perturbations.

Dehydroepiandrosterone↗

Increased resting energy expenditure, fat oxidation, and food intake in patients with highly active antiretroviral therapy-associated lipodystrophy.

Highly active antiretroviral therapy (HAART) is associated with metabolic adverse events such as lipodystrophy in human immunodeficiency virus (HIV)-infected patients. The objective of the present study was to evaluate the effects of HAART-associated lipodystrophy on resting energy expenditure and caloric intake. In this cross-sectional study we compared resting energy expenditure (REE) and energy intake in 30 HAART-treated patients with lipodystrophy (HAART+LD+) with 13 HAART-treated patients without lipodystrophy (HAART+LD-). REE was measured using indirect calorimetry, and energy intake was recorded as a 3-day diary of food intake. REE (5,180+/-160 vs. 4,260+/-150 J/min, P<0.01) and also REE expressed per fat-free mass (86+/-1 vs. 78+/-2 J.kg fat-free mass-1.min-1, P<0.01) were significantly higher in the HAART+LD+ than the HAART+LD- group. Rate of lipid oxidation was significantly higher in the HAART+LD+ than the HAART+LD- group. Total energy and fat intakes were significantly increased in the HAART+LD+ compared with the HAART+LD- group. These results imply that HAART-associated lipodystrophy is associated with increased REE and lipid oxidation and with increased caloric and fat intake.

Adult↗

Metabolic regulation of growth hormone by free fatty acids, somatostatin, and ghrelin in HIV-lipodystrophy.

Human immunodeficiency virus (HIV)-lipodystrophy is a syndrome characterized by changes in fat distribution and insulin resistance. Prior studies suggest markedly reduced growth hormone (GH) levels in association with excess visceral adiposity among patients with HIV-lipodystrophy. We investigated mechanisms of altered GH secretion in a population of 13 male HIV-infected patients with evidence of fat redistribution, compared with 10 HIV-nonlipodystrophic patients and 11 male healthy controls similar in age and body mass index (BMI). Although similar in BMI, the lipodystrophic group was characterized by increased visceral adiposity, free fatty acids (FFA), and insulin and reduced extremity fat. We investigated ghrelin and the effects of acute lowering of FFA by acipimox on GH responses to growth hormone-releasing hormone (GHRH). We also investigated somatostatin tone, comparing GH response to combined GHRH and arginine vs. GHRH alone with a subtraction algorithm. Our data demonstrate an equivalent number of GH pulses (4.1 +/- 0.6, 4.7 +/- 0.8, and 4.5 +/- 0.3 pulses/12 h in the HIV-lipodystrophic, HIV-nonlipodystrophic, and healthy control groups, respectively, P > 0.05) but markedly reduced GH secretion pulse area (1.14 +/- 0.27 vs. 4.67 +/- 1.24 ng.ml(-1).min, P < 0.05, HIV-lipodystrophic vs. HIV-nonlipodystrophic; 1.14 +/- 0.27 vs. 3.18 +/- 0.92 ng.ml(-1).min, P < 0.05 HIV-lipodystrophic vs. control), GH pulse area, and GH pulse width in the HIV-lipodystrophy patients compared with the control groups. Reduced ghrelin (418 +/- 46 vs. 514 +/- 37 pg/ml, P < 0.05, HIV-lipodystrophic vs. HIV-nonlipodystrophic; 418 +/- 46 vs. 546 +/- 45 pg/ml, P < 0.05, HIV-lipodystrophic vs. control), impaired GH response to GHRH by excess FFA, and increased somatostatin tone contribute to reduced GH secretion in patients with HIV-lipodystrophy. These data provide novel insight into the metabolic regulation of GH secretion in subjects with HIV-lipodystrophy.

Adult↗