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HIV-infected patients with lipodystrophy have higher rates of carotid atherosclerosis: the role of monocyte chemoattractant protein-1.

Individuals with HIV-1 infection are at increased risk for cardiovascular events, and lipodystrophy is generally associated with pro-atherogenic metabolic disturbances. We conducted a case-control study to assess the presence of sub-clinical atherosclerosis in HIV-1-infected patients with or without lipodystrophy (LD) and to evaluate the influence of monocyte chemoattractant protein-1 (MCP-1) on the development of both carotid atherosclerosis and LD. The study population consisted of 43 patients with LD and 86 patients without LD. We determined carotid intima-media thickness (IMT), MCP-1 concentrations in plasma, and MCP-1 genotype (presence or absence of the -2518G allele). HIV-1-infected patients with LD showed increased risk (OR=3.71, 95% CI=1.10-12.47, p=0.03) for sub-clinical atherosclerosis, and MCP-1 plasma concentration was significantly correlated with IMT in these patients (Pearson=0.31, p=0.03). Furthermore, presence of LD was a determinant for MCP-1 plasma concentration (beta=0.18, p=0.05). In summary, HIV-1-infected patients with clinically manifest LD are at higher risk for atherosclerosis and our observations support the relationship between inflammation and atherosclerotic disease.

Adult↗

Effects of rosiglitazone and metformin on postprandial paraoxonase-1 and monocyte chemoattractant protein-1 in human immunodeficiency virus-infected patients with lipodystrophy.

Highly active antiretroviral therapy in Human Immunodeficiency Virus (HIV) has been associated with lipodystrophy, insulin resistance and atherosclerosis. We investigated the effects of rosiglitazone or metformin on fasting and postprandial inflammatory and antioxidant variables in HIV-infected males with lipodystrophy. Thirty-one patients were randomly assigned to receive either rosiglitazone (4 mg twice daily) or metformin (1 g twice daily) for 26 weeks. At baseline and after treatment, standardized 10-h oral fat loading tests were performed. Before treatment, inflammatory variables remained unchanged but there was a postprandial decrease in high density lipoprotein (HDL)-cholesterol and paraoxonase (PON1) activity. Rosiglitazone and metformin reduced homeostasis model assessment index (HOMA) similarly (-34% and -37%, respectively, P<0.05 for each). Both treatments increased fasting and postprandial PON1 activity and decreased postprandial monocyte chemoattractant protein 1 (MCP-1) concentrations. However, plasma C-reactive protein (CRP) and Interleukin-6 (IL-6) concentration did not change throughout the study. To decrease insulin resistance results in a higher anti-oxidant and consequent lower pro-inflammatory action of HDL. This may confer protection against accelerated atherosclerosis in these patients.

Adult↗

Growth factors, glucose and insulin kinetics after low dose growth hormone therapy in HIV-lipodystrophy.

OBJECTIVES: Low-dose growth hormone (GH) administration has been suggested as a treatment for HIV-lipodystrophy. METHODS: Postglucose GH-secretion, kinetics of insulin-like growth factors (IGFs), insulin, and glucose metabolism were examined in six male HIV-infected lipodystrophic patients (two normal-weight patients with normal glucose-tolerance (NGT), two normal-weight with impaired glucose-tolerance (IGT), and two obese patients with diabetes (DM)) during a 16 weeks open-labelled pilot-study of low-dose GH, 0.7 mg/day. RESULTS: DM, compared to NGT and IGT, displayed an impaired rebound of GH during a 5h oral glucose-tolerance test. Near lower normal limits in all patients before GH-therapy, total and free IGF-I increased between 87 and 152% during the GH-therapy (P<0.001), approaching upper normal limits in all patients with the highest incremental percentages shown in DM. A slight and temporary reduction in insulin sensitivity was caused by a reduction in non-oxidative glucose metabolism (n=5). GH-administration reduced hepatic extraction of insulin alleviating the demand for insulin secretion (n=5). No adverse effects of GH were detected. CONCLUSIONS: As judged from effects on circulating IGF-I, glucose metabolism, and insulin kinetics, 0.7 mg/day of GH may be expedient for treatment of HIV-infected males with lipodystrophy. Whether the patients' glucose metabolic status matters for the IGF-response to low-dose GH-therapy awaits further investigation.

Antiretroviral Therapy, Highly Active↗

Lipodystrophy and metabolic syndrome in HIV-infected patients treated with antiretroviral therapy.

Lipodystrophy (lipo) and metabolic derangements associated with an increased cardiovascular risk are observed frequently in human immunodeficiency virus (HIV)-infected patients who receive antiretroviral treatment (ART). The objective of the study was to provide detailed biochemical information about metabolic syndrome in this condition. One hundred forty-six HIV-infected male and female patients on ART for more than 6 months were compared with 156 body mass index (BMI)-matched healthy subjects. Lipodystrophy was diagnosed upon patient and physician concordance. Metabolic syndrome was defined according to the Adult Treatment Panel III criteria. Plasma adiponectin (AD) and leptin were measured by radioimmunoassay. Insulin resistance (IR) was assessed by the homeostasis model assessment (HOMA). The prevalence of metabolic syndrome was higher in HIV-infected patients on ART than in non-HIV-infected healthy controls (15.8% vs 3.2%; P < .001). Patients with metabolic syndrome are older (44.6 +/- 6 vs 39.8 +/- 8 years; P = .004), have an increased BMI (24.9 +/- 3.8 vs 22.9 +/- 9.8 kg/m(2); P = .01), present with a reduced AD-to-leptin ratio log(10) (-0.19 +/- 0.4 vs 0.5 +/- 0.4; P = .04), and show increased IR (HOMA, 5.6 +/- 2.7 vs 3.8 +/- 2.2; P = .001; plasma fasting insulin, 22.9 +/- 9.8 vs 16.6 +/- 9.7 ng/mL; P < .001). In multivariate analysis, the diagnosis of lipo and HOMA were independently and significantly related to metabolic syndrome. In conclusion, the prevalence of metabolic syndrome is significantly increased in HIV-infected patients on ART and its presence is associated with lipo, increased age and BMI, IR, and a reduced plasma AD-to-leptin ratio.

Adiponectin↗

[Health related quality of life and lipodystrophy syndrome among HIV-infected patients].

AIM OF THE STUDY: The aim of this work is to show to what extent a psychosocial evaluation can lead bring to comprehension of the subjectivity of Quality of Life (QoL) among HIV-infected patients. Evaluation of QoL makes it possible to understand the link between the therapeutic effectiveness and the subjective evaluation of the treatment, but also to estimate more precisely how people live and take their treatment in the context of HIV infection. METHOD: This work confronts the variation of QoL with the variation of several social and psychosocial parameters identified as of the components of the system, which is the subjective evaluation, and more precisely to a specific side effect of Highly Active AntiRetroviral Therapies (HAART): lipodystrophy syndrome that consists in body fat redistribution. This side effect could consist in an accumulation of body fat, or a loss of body fat or a combination of both symptoms. The analysis was made on the data from APROCO-COPILOTE cohort composed of HIV-infected patients initiating HAART. RESULTS: Among a sample of 706 patients follow-up for three years and with available QoL data, we identified the variations of QoL according to the variation of this specific side effect and according to gender. Results show that lipodystrophy syndrome has a determinant impact on QoL different among male and female patients. Adjusted on clinical and socio-demographic characteristics, impaired women's QoL is associated with accumulation of body fat and impaired men's QoL is associated with loss of body fat. CONCLUSION: These results underline the role of body image on subjective evaluation of QoL. The analysis of empirical data made it possible to highlight the social implication of the evaluation of QoL from the role of the social support, patient-provider relationship and the social context.

Adult↗

Lipodystrophy in human immunodeficiency virus patients impairs insulin action and induces defects in beta-cell function.

The pathophysiology of insulin resistance in human immunodeficiency virus (HIV)-associated lipodystrophy syndrome (HALS) is not fully clarified. We investigated 18 men with HALS and 18 HIV-positive males without lipodystrophy (control subjects). Duration and modality of antiretroviral therapy were similar between study groups. A hyperinsulinemic euglycemic clamp showed an impaired glucose disposal rate (GDR) in HALS patients (5.6 v 8.3 mg glucose/min. kg(FFM), P =.0006). As demonstrated by indirect calorimetry, HALS patients showed an impaired nonoxidative glucose metabolism (NOGM, 2.2 v 4.2, P =.006), whereas levels of basal and insulin-stimulated oxidative glucose metabolism (OGM) (2.4 v 2.3, P =.55, and 3.3 v 4.0, P =.064, respectively) were not significantly different between groups. Despite comparable total fat masses, dual energy x-ray absorptiometry (DEXA) scans showed that the percentage of limb fat (ie, peripheral-fat-mass/[peripheral-fat-mass + trunk-fat-mass]. 100%) was reduced in HALS patients (36% v 46%, P =.0002). Multiple linear regression analysis indicated that percentage of limb fat explained 53% of the variability of GDR and 45% of the variability of NOGM in HALS patients. In HALS patients, leg fat mass correlated positively with NOGM (r =.51, P <.05), whereas abdominal fat mass and NOGM did not correlate (P =.91). Analyzing the relationship between first phase insulin secretion and insulin sensitivity, 6 HALS patients compared with none of the control subjects exhibited impaired insulin secretion (P <.05). Our data suggest that fat redistribution independently of antiretroviral therapy is highly related to insulin resistance in HALS patients. Furthermore, in HALS patients, impaired glucose metabolism most likely relates to decreased NOGM and to defects in beta-cell function.

Absorptiometry, Photon↗

Insulin resistance in limb and trunk partial lipodystrophy (type 2 Köbberling-Dunnigan syndrome).

We studied insulin action in two patients with limb and trunk partial lipodystrophy with hirsutism and acanthosis nigricans. Glucose was normal in one of the patients and slightly above normal in the other during an oral glucose tolerance test (OGTT). An intravenous glucose tolerance test (IVGTT) was normal in both patients. Basal and glucose-stimulated insulin levels were elevated in both the OGTT and IVGTT in both patients. The response of plasma glucose to exogenously administered insulin was decreased. A euglycemic-hyperinsulinemic clamp performed in patient no. 2 indicated insulin resistance, which was not corrected by reducing the increased basal level of serum free fatty acids (FFAs). Binding of insulin to neck adipocytes was normal in both subjects, but glucose transport and oxidation in these cells was impaired. Insulin binding to abdominal adipocytes was increased in one patient whose adipocytes displayed higher glucose transport at low insulin concentrations. Glucose oxidation was decreased in abdominal adipocytes of both patients. We conclude that insulin resistance in Köbberling-Dunnigan type 2 partial lipodystrophy is not related to an alteration of the insulin molecule or to changes in insulin binding, but is more likely associated with a postreceptor defect, since glucose oxidation was impaired in adipocytes of the neck and abdomen.

Adult↗

Mitochondrial toxicity induced by nucleoside-analogue reverse-transcriptase inhibitors is a key factor in the pathogenesis of antiretroviral-therapy-related lipodystrophy.

Highly active antiretroviral therapy (HAART) can induce a characteristic lipodystrophy syndrome of peripheral fat wasting and central adiposity. HIV-1 protease inhibitors are generally believed to be the causal agents, although the syndrome has also been observed with protease-inhibitor-sparing regimens. Here, we postulate that the mitochondrial toxicity of the nucleoside-analogue reverse-transcriptase inhibitors plays an essential part in the development of this lipodystrophy, similar to the role of mitochondrial defects in the development of multiple symmetrical lipomatosis.

Anti-HIV Agents↗

Partial lipodystrophy associated with a type 3 form of membranoproliferative glomerulonephritis.

Partial lipodystrophy can be associated with a glomerulonephritis, most commonly a membranoproliferative form, of either the classic type 1 or the type 2 (dense deposit) disease in 50% of cases. We describe a woman affected by partial lipodystrophy associated with a type 3 form of membranoproliferative glomerulonephritis. To our knowledge, this is the first reported case in the English-language literature.

Adult↗

Membranoproliferative glomerulonephritis, type II and partial lipodystrophy in an adult.

Membranoproliferative glomerulonephritis, type II is commonly seen in patients with the rare disorder, partial lipodystrophy. This disease complex, although usually seen in the pediatric or young adult age group, should be considered in older patients with characteristic loss of facial fat and signs and symptoms of nephritis. A case of partial lipodystrophy with membranoproliferative glomerulonephritis, type II in an older patient demonstrates the characteristic ultrastructural renal findings.

Basement Membrane↗

The Ig-like structure of the C-terminal domain of lamin A/C, mutated in muscular dystrophies, cardiomyopathy, and partial lipodystrophy.

Lamins are nuclear intermediate filaments that, together with lamin-associated proteins, maintain nuclear shape and provide a structural support for chromosomes and replicating DNA. We have determined the solution structure of the human lamin A/C C-terminal globular domain which contains specific mutations causing four different heritable diseases. This domain encompasses residues 430-545 and adopts an Ig-like fold of type s. We have also characterized by NMR and circular dichroism the structure and thermostability of three mutants, R453W and R482W/Q, corresponding to "hot spots" causing Emery-Dreifuss muscular dystrophy and Dunnigan-type lipodystrophy, respectively. Our structure determination and mutant analyses clearly show that the consequences of the mutations causing muscle-specific diseases or lipodystrophy are different at the molecular level.

Amino Acid Sequence↗

Insulin resistance in the HIV-lipodystrophy syndrome.

Insulin resistance is increasingly recognized among HIV-infected patients with fat redistribution (lipodystrophy) who are receiving highly active antiretroviral therapy. The mechanisms of insulin resistance in this population remain unknown, but could relate to a decrease in glucose transport caused by the direct effects of certain antiretroviral agents, such as the protease inhibitors, or to the effects of severe fat redistribution, including subcutaneous fat loss and increased visceral adiposity. Insulin resistance in patients with HIV lipodystrophy is associated with hyperlipidemia and impaired fibrinolysis, and might increase the risk of cardiovascular disease (CVD). Furthermore, insulin-sensitizing agents might improve insulin resistance and reduce the risk of CVD in this population.

HIV Infections↗

Congenital generalized lipodystrophy: significance of triglyceride biosynthetic pathways.

Congenital generalized lipodystrophy (CGL) is a rare autosomal recessive disorder characterized by marked lack of body fat since birth, which results in striking muscular appearance. Patients develop extreme insulin resistance and its complications, such as diabetes, hyperlipidemia and fatty liver. Mutations in the BSCL2 (which encodes seipin, a protein of unknown function) and AGPAT2 (which encodes 1-acylglycerol-3-phosphate O-acyltransferase 2) genes have been reported in patients with CGL. AGPAT2 is a key enzyme involved in triglyceride and phospholipid biosynthesis and, thus, the discovery of AGPAT2 mutations has heightened interest in the biochemical pathways of triglyceride synthesis and their implications in human physiology and in the pathophysiology of obesity, lipodystrophies and other adipose tissue disorders. All enzymes involved in triglyceride synthesis, including AGPAT, have several known isoforms encoded by different genes. Assuming different substrate specificities of these enzymes, the human body might have many forms of triglycerides and phospholipids. Here, we discuss the significance of these in energy storage, in addition to the normal functioning of cell membranes.

Animals↗

HIV-related lipodystrophy: a clinical syndrome with implications for nursing practice.

Since the clinical introduction of protease inhibitors for the treatment of HIV disease in 1996, optimism has grown for the long-term survival of persons living with HIV disease. With the addition of protease inhibitors to highly active antiretroviral therapy, the number of deaths from AIDS has decreased dramatically. However, along with reports of dramatic clinical improvement, many cases of a novel lipodystrophy syndrome associated with high triglyceride levels, diabetes, accumulations of fatty tissue, and alterations in body shape have been reported by researchers, clinicians, and persons living with HIV disease. This article reviews the literature on the defining characteristics and pathogenesis of HIV-related lipodystrophy, summarizes the current state of the science, and discusses related research and clinical implications.

Drug Monitoring↗

LMNA, encoding lamin A/C, is mutated in partial lipodystrophy.

The lipodystrophies are a group of disorders characterized by the absence or reduction of subcutaneous adipose tissue. Partial lipodystrophy (PLD; MIM 151660) is an inherited condition in which a regional (trunk and limbs) loss of fat occurs during the peri-pubertal phase. Additionally, variable degrees of resistance to insulin action, together with a hyperlipidaemic state, may occur and simulate the metabolic features commonly associated with predisposition to atherosclerotic disease. The PLD locus has been mapped to chromosome 1q with no evidence of genetic heterogeneity. We, and others, have refined the location to a 5.3-cM interval between markers D1S305 and D1S1600 (refs 5, 6). Through a positional cloning approach we have identified five different missense mutations in LMNA among ten kindreds and three individuals with PLD. The protein product of LMNA is lamin A/C, which is a component of the nuclear envelope. Heterozygous mutations in LMNA have recently been identified in kindreds with the variant form of muscular dystrophy (MD) known as autosomal dominant Emery-Dreifuss MD (EDMD-AD; ref. 7) and dilated cardiomyopathy and conduction-system disease (CMD1A). As LMNA is ubiquitously expressed, the finding of site-specific amino acid substitutions in PLD, EDMD-AD and CMD1A reveals distinct functional domains of the lamin A/C protein required for the maintenance and integrity of different cell types.

Amino Acid Sequence↗

Lipodystrophy in the fld mouse results from mutation of a new gene encoding a nuclear protein, lipin.

Mice carrying mutations in the fatty liver dystrophy (fld) gene have features of human lipodystrophy, a genetically heterogeneous group of disorders characterized by loss of body fat, fatty liver, hypertriglyceridemia and insulin resistance. Through positional cloning, we have isolated the gene responsible and characterized two independent mutant alleles, fld and fld(2J). The gene (Lpin1) encodes a novel nuclear protein which we have named lipin. Consistent with the observed reduction of adipose tissue mass in fld and fld(2J)mice, wild-type Lpin1 mRNA is expressed at high levels in adipose tissue and is induced during differentiation of 3T3-L1 pre-adipocytes. Our results indicate that lipin is required for normal adipose tissue development, and provide a candidate gene for human lipodystrophy. Lipin defines a novel family of nuclear proteins containing at least three members in mammalian species, and homologs in distantly related organisms from human to yeast.

3T3 Cells↗

AGPAT2 is mutated in congenital generalized lipodystrophy linked to chromosome 9q34.

Congenital generalized lipodystrophy is an autosomal recessive disorder characterized by marked paucity of adipose tissue, extreme insulin resistance, hypertriglyceridemia, hepatic steatosis and early onset of diabetes. We report several different mutations of the gene (AGPAT2) encoding 1-acylglycerol-3-phosphate O-acyltransferase 2 in 20 affected individuals from 11 pedigrees of diverse ethnicities showing linkage to chromosome 9q34. The AGPAT2 enzyme catalyzes the acylation of lysophosphatidic acid to form phosphatidic acid, a key intermediate in the biosynthesis of triacylglycerol and glycerophospholipids. AGPAT2 mRNA is highly expressed in adipose tissue. We conclude that mutations in AGPAT2 may cause congenital generalized lipodystrophy by inhibiting triacylglycerol synthesis and storage in adipocytes.

1-Acylglycerol-3-Phosphate O-Acyltransferase↗

Genetic basis of congenital generalized lipodystrophy.

Congenital generalized lipodystrophy (CGL) is an autosomal recessive disorder characterized by extreme lack of body fat and severe insulin resistance since birth. Recently, mutations have been reported in 1-acylglycerol-3-phosphate-O-acyltransferase 2 (AGPAT2) and Berardinelli-Seip congenital lipodystrophy 2 (BSCL2 or Seipin) genes in affected subjects from pedigrees linked to chromosomes 9q34 and 11q13, respectively. The AGPAT2 catalyses the acylation of the lysophosphatidic acid at the sn-2 position to form phosphatidic acid, a key intermediate in the biosynthesis of triacylglycerol and glycerophospholipids. High expression of AGPAT2 mRNA in adipose tissue compared to other isoforms suggests that the mutations might affect the adipose tissue the most. The function of BSCL2 remains unknown. Several CGL pedigrees reveal no mutation in either of the above genes and are not linked to these loci, suggesting additional genetic loci for CGL. Thus, several distinct mechanisms can lead to extreme lack of adipose tissue in humans and cause CGL.

1-Acylglycerol-3-Phosphate O-Acyltransferase↗