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TNF-alpha promoter region gene polymorphisms in HIV-positive patients with lipodystrophy.

OBJECTIVE: The pathogenic mechanisms underlying lipodystrophy in HIV-positive patients are largely unknown. TNF-alpha has many actions that are consistent with the features of lipodystrophy; therefore, an analysis was carried out to determine whether functionally active polymorphisms in the promoter region of the TNF-alpha gene are associated with the development of lipodystrophy. DESIGN: Genetic case-control association study. METHODS: Individuals were genotyped for the -238 and -308 polymorphisms in the TNF-alpha gene using polymerase chain reaction-restriction fragment length polymorphism analysis. The genotype and allele frequencies for 61 HIV-positive patients with lipodystrophy were compared with (a) 35 HIV-positive patients with no evidence of lipodystrophy and (b) 239 healthy HIV-negative individuals. RESULTS: The frequency of the variant rare -238 allele was significantly different (P = 0.01) in HIV-positive patients with lipodystrophy than in those without lipodystrophy. At the genotype level, a trend towards a difference between patients with and without lipodystrophy was observed (chi2 for linear trend 5.2, P = 0.02). For the -308 polymorphism, no difference was found in genotype and allele frequencies between HIV patients with and without lipodystrophy. CONCLUSIONS: The data suggest that the -238 (but not the -308) promoter region TNF-alpha gene polymorphism is a determinant in the development of HIV-related lipodystrophy. However, the results need to be confirmed in larger numbers of patients as well as in an ethnically diverse population.

Adult↗

Lipodystrophy in patients with juvenile dermatomyositis--evaluation of clinical and metabolic abnormalities.

OBJECTIVE: Lipodystrophy and associated metabolic abnormalities are being increasingly recognized as complications of juvenile dermatomyositis (JDM). We investigated the prevalence of lipodystrophy and the extent of metabolic abnormalities related to lipoatrophic diabetes mellitus in patients with JDM. METHODS: Twenty patients with JDM were evaluated for evidence of lipodystrophy and associated lipoatrophic diabetes mellitus. All patients underwent clinical assessment, laboratory investigations, and metabolic studies (oral glucose tolerance test, lipid studies, insulin antibodies). RESULTS: We found clinical evidence of lipodystrophy and lipoatrophic diabetes mellitus in 4 of 20 patients with JDM and metabolic abnormalities known to be associated with lipodystrophy in another 8 patients. The 20 patients with JDM were categorized as follows: Group 1 (Patients 1-4) consisted of patients with lipodystrophy and either diabetes mellitus (2 patients) or impaired glucose tolerance (2 patients); Group 2 (Patients 5-12): no lipodystrophy but abnormal glucose and/or lipid studies; Group 3 (Patients 13-20): no lipodystrophy and no abnormalities of glucose and lipid studies. CONCLUSION: We found 25% of patients with JDM have lipodystrophy, and 50% present with hypertriglyceridemia and insulin resistance. Screening for metabolic abnormalities in JDM should be included in routine followup because of the effect of lipodystrophy on longterm prognosis.

Adolescent↗

The relationship between lipodystrophy-associated body changes and measures of quality of life and mental health for HIV-positive adults.

OBJECTIVES: To investigate the relationship between lipodystrophy-specific symptom severity and wellbeing. METHODS: HIV-positive adult patients with body fat redistribution (lipodystrophy syndrome) associated with antiretroviral therapy reported their total non-lipodystrophy symptoms and side effects and completed measures assessing body fat changes (yielding Atrophy, Hypertrophy and Total Lipodystrophy scores), mental health and quality of life. Effects of total symptom complex and lipodystrophy severity on quality of life and mental health were analyzed using Spearman's rho correlations. Logistic regression analyses were utilized to determine the relative-odds of depression produced by overall symptom count and lipodystrophy score increments. RESULTS: Mean ratings for Hypertrophy and Atrophy corresponded to 'very mild' and 'mild' degrees of severity, respectively. The total symptom complex was associated with ratings for most of the mental health and quality of life measures. Patient-perceived body image scores were the sole study variable responsive to lipodystrophy severity ratings. In comparison to reference norms, a pronounced degree of body image impairment was evident. CONCLUSION: Although responsive to the total symptom profile, psychosocial measures typically utilized for evaluating quality of life and mental health status in HIV disease lacked sensitivity and specificity for measuring the consequences of lipodystrophy-associated fat distribution changes alone. Lipodystrophy severity did impact negatively on body image.

Adult↗

Adipose tissue lipin expression levels distinguish HIV patients with and without lipodystrophy.

OBJECTIVE: Lipodystrophy is the major complication of antiretroviral therapy in HIV-infected patients. Its pathophysiology is not well understood, but has been linked to antiadipogenic effects of antiretroviral drugs. Lipin represents a newly characterized protein that is critical for adipocyte differentiation, and lipin deficiency leads to lipodystrophy in the mouse. The objective of this study was to determine whether altered lipin gene expression is associated with HIV lipodystrophy in humans. DESIGN: We measured lipin mRNA levels in subcutaneous abdominal and femoral-gluteal adipose tissue biopsies from HIV-infected patients with or without lipodystrophy, and in healthy controls. Real-time reverse transcription-PCR was performed to quantitate total lipin expression levels, and expression of two lipin isoforms (lipin-alpha and -beta) that are generated by alternative mRNA splicing. RESULTS: As predicted from studies with mice, lipin mRNA levels were correlated with limb fat mass in HIV patients, with lower lipin levels in patients with lipodystrophy than those without lipodystrophy. Unexpectedly, however, this was explained by an increase in lipin-beta expression in HIV patients without lipodystrophy compared to patients with lipodystrophy and control subjects. In addition, lipin expression levels were inversely correlated with adipose tissue expression of inflammatory cytokines interleukin (IL)-6, IL-8 and IL-18, which typically increase in HIV-associated lipoatrophy. CONCLUSIONS: Elevated lipin expression levels are associated both with the maintenance of greater fat mass and lower cytokine expression in HIV-infected patients. Based on the demonstrated role for lipin in promoting lipogenic gene expression, these observations raise the possibility that variations in lipin levels may contribute to variations in adipose tissue mass and function that distinguish HIV patients with and without lipodystrophy.

Adipose Tissue↗

HIV lipodystrophy: prevalence, severity and correlates of risk in Australia.

OBJECTIVE: To establish the prevalence, severity and factors associated with the HIV lipodystrophy syndrome. METHODS: Cross-sectional study of lipodystrophy conducted in high HIV caseload primary care sites and HIV outpatient clinics. A subset of patients was examined using dual energy X-ray absorptiometry (DEXA) and single cut abdominal computerized tomography (CT) at the L4 vertebral level to quantify regional and total body fat. Factors associated with lipodystrophy, lipoatrophy and lipohypertrophy were assessed using multiple logistic regression based on assignment of cases and non-cases. RESULTS: One thousand, three hundred and forty-eight patients (95% male) were surveyed, 20% had AIDS, the mean CD4 lymphocyte count was 486 cells/microL, and 55% had <500 HIV-1 RNA copies/mL. Most participants (87%) had previously received or were currently receiving combination antiretroviral therapy, 73% with at least one protease inhibitor (PI) and 14% a non-PI-containing regimen. Lipodystrophy prevalence was 53% and of these, 55% reported both peripheral lipoatrophy and central lipohypertrophy, 31% experienced peripheral lipoatrophy only and 14% had central lipohypertrophy only. The prevalence of any body habitus change was 62% in PI-experienced patients, 33% in PI-naive patients and 21% in antiretroviral-naive patients. Lipodystrophy severity was less in antiretroviral-naive patients and most severe in PI-experienced patients. Increasing severity of lipodystrophy was both positively and significantly correlated with elevated liver enzymes, decreased testosterone levels, decreased skin-fold thickness, lower levels of total and peripheral fat (DEXA) and higher levels of visceral fat (CT). Lipodystrophy was also significantly associated with increasing age, symptomatic HIV disease, effective viral suppression, and increasing duration of therapy with both nucleoside reverse transcriptase inhibitors and PIs. CONCLUSIONS: The prevalence and severity of lipodystrophy reflects both length and type of treatment with antiretroviral therapy and is associated with decreased testosterone, increases in liver enzymes and greater suppression of HIV RNA. The reports of lipodystrophy in a small percentage of antiretroviral-naive patients suggests that factors other than antiretroviral therapy may be involved in the aetiology of this syndrome or that some conditions, such as wasting or age-associated obesity, may mimic lipoatrophy and lipohypertrophy, respectively.

Absorptiometry, Photon↗

Pharmacologic therapy for HIV-associated lipodystrophy.

OBJECTIVE: To evaluate the efficacy and safety of pharmacologic therapy in the treatment of HIV-associated lipodystrophy, with a focus on the treatment of fat redistribution. Drug therapies that have been shown to be beneficial in other forms of lipodystrophy and are currently being evaluated in HIV-associated lipodystrophy are also discussed. DATA SOURCES: A MEDLINE search was conducted from 1996 to February 2003. Bibliographies of all articles were reviewed and pertinent articles were included. Abstracts from major meetings in 2002 and 2003 were also reviewed. STUDY SELECTION AND DATA EXTRACTION: All published studies were included in the review. DATA SYNTHESIS: Lipodystrophy has become more prevalent in patients with HIV. Lipodystrophy consists of adipose redistribution and metabolic abnormalities including dyslipidemia and insulin resistance. Treatment of lipodystrophy has been directed at either decreasing the amount of visceral adipose tissue (VAT), dorsocervical adipose tissue (commonly known as buffalo hump) and/or increase subcutaneous adipose tissue (SAT). Recombinant human growth hormone (rhGH) decreases VAT and buffalo hump, although it has been associated with a high frequency of adverse effects. Metformin and the thiazolidinediones have favorable metabolic effects, but were not found to be effective in correcting body compositional changes associated with lipodystrophy. Anabolic steroids and l-carnitine are not effective in the treatment of lipodystrophy. CONCLUSIONS: No drug therapy exists to fully ameliorate or correct the cosmetic changes of HIV-associated lipodystrophy. Clinicians must weigh the benefits and risks of each agent and individualize treatment for each patient.

Adipose Tissue↗

Diagnosis, prediction, and natural course of HIV-1 protease-inhibitor-associated lipodystrophy, hyperlipidaemia, and diabetes mellitus: a cohort study.

BACKGROUND: The prevalence and severity of lipodystrophy syndrome with long-term therapy for HIV-1 infection that includes a protease inhibitor is unknown. We studied the natural course of the syndrome to develop diagnostic criteria and identifying markers that predict its severity. METHODS: We assessed 113 patients who were receiving HIV-1 protease inhibitors (mean 21 months) and 45 HIV-1-infected patients (28 with follow-up) never treated with a protease inhibitor. Lipodystrophy was assessed by questionnaire (including patients' rating of severity), physical examination, and dual-energy x-ray absorptiometry. Body composition and fasting lipid and glycaemic variables were compared with data obtained 8 months previously. Oral glucose tolerance was investigated. FINDINGS: There was 98% concordance between patients' reports of the presence or absence of lipodystrophy (reported by 83% of protease-inhibitor recipients and 4% of treatment-naïve patients; p=0.0001) and physical examination. Patients' ratings of lipodystrophy were significantly associated with declining total body fat (p=0.02). Lower body fat was independently associated with longer duration of protease-inhibitor therapy and lower bodyweight before therapy, and more severe lipodystrophy was associated with higher previous (p < 0.03) and current (p < or = 0.01) triglyceride and C-peptide concentrations, and less peripheral and greater central fat (p=0.005 and 0.09, respectively). Body fat declined a mean 1.2 kg over 8 months in protease-inhibitor recipients (p=0.05). The prevalence of hyperlipidaemia remained stable over time (74% of treated patients vs 28% of naïve patients; p=0.0001). Impaired glucose tolerance occurred in 16% of protease-inhibitor recipients and diabetes mellitus in 7%; in all but three patients these abnormalities were detected on 2 h post-glucose load values. INTERPRETATION: Diagnosis and rating severity of lipodystrophy is aided by the combination of physical examination, patient's rating, and measurement of body fat, fasting triglycerides, and C-peptide. Weight before therapy, fasting triglyceride, and C-peptide concentrations early in therapy, and therapy duration seem to predict lipodystrophy severity. Lipodystrophy was common and progressive after almost 2 years of protease inhibitor therapy, but was not usually severe. Hyperlipidaemia and impaired glucose tolerance were also common.

Adult↗

Absence of hypersensitivity to glucocorticoids in antiretroviral-associated lipodystrophy.

OBJECTIVE: The lipodystrophy syndrome, which is associated with the use of antiretroviral drugs in some human immunodeficiency virus (HIV)-infected individuals, bears a striking similarity to the fat redistribution observed in Cushing's disease. Although urinary free cortisol excretion and glucocorticoid receptor binding affinity are not elevated in subjects with lipodystrophy, glucocorticoid action at the cellular level has not been examined in affected individuals. The objective of this study was to determine whether tissue sensitivity to glucocorticoids is increased in subjects with lipodystrophy taking protease inhibitors. RESEARCH METHODS AND PROCEDURES: Subjects included 11 HIV-infected men on protease inhibitor therapy with lipodystrophy and 10 control HIV-infected men not on protease inhibitor therapy and without lipodystrophy. Trunk to extremity fat ratio was measured by DXA. Dexamethasone suppression of peripheral blood mononuclear cell proliferation was measured as an index of tissue sensitivity to glucocorticoid action. RESULTS: Compared with the control group, subjects with lipodystrophy had a significant elevation of the trunk to extremity fat ratio [median (interquartile range): 2.9 (1.3) vs. 1.6 (1.2); p < 0.05]. The concentration of dexamethasone resulting in 50% maximal suppression of proliferation was 11.7 nM (9.3 nM) in subjects with lipodystrophy and 19.6 nM (9.7 nM) in control subjects (p = not significant), and the percentage minimal proliferation was 4% (12%) and 17% (18%) in the two groups, respectively (p = not significant). DISCUSSION: Despite the Cushingoid appearance of affected individuals, these data suggest that body fat redistribution in antiretroviral-associated lipodystrophy does not arise through an increase in postreceptor glucocorticoid signaling.

Adult↗

Familial partial lipodystrophy: two types of an X linked dominant syndrome, lethal in the hemizygous state.

Familial lipodystrophy (referred to in publications as the Köbberling-Dunnigan syndrome) comprises at least two clinical phenotypes which are consistent within each pedigree. In type 1 familial lipodystrophy, loss of subcutaneous fat is confined to the limbs, sparing the face and trunk. In type 2 familial lipodystrophy, the trunk is also affected with the exception of the vulva, giving an appearance of labial hypertrophy. Diabetes mellitus, hyperlipoproteinaemia, and acanthosis nigricans are present to a variable degree in some but not all patients with familial lipodystrophy, and the abnormal distribution of subcutaneous fat is the essential hallmark of the syndrome. In addition to a survey of published reports, new cases with the syndrome are described. Both types of partial lipodystrophy, occurring either as familial disease or as sporadic cases, have only been observed in female patients. Study of the pedigrees of five families with familial lipodystrophy (two Scottish and three German) suggests an X linked dominant mode of transmission, lethal in the hemizygous (XY) state. The two clinical phenotypes with their variably expressive metabolic abnormalities are consistent either with different mutants of the same allele or with two genes on adjacent loci. Other clinical phenotypes of familial lipodystrophy may exist due to further mutations of the same allele or of genes on adjacent loci. The nature of the disorder in patients with familial lipodystrophy usually escapes recognition for many years and the syndrome is almost certainly much commoner than the few families described to date suggest.

Adipose Tissue↗

Serum adiponectin and leptin levels in patients with lipodystrophies.

Lipodystrophies are characterized by selective but variable loss of body fat and metabolic complications of insulin resistance. We hypothesized that reduced synthesis and secretion of adipocyte-specific proteins may be related to the metabolic complications of lipodystrophy. Therefore, we compared fasting serum concentrations of adiponectin and leptin, in 18 patients with congenital generalized lipodystrophy (CGL), 11 with acquired generalized lipodystrophy (AGL), 46 with familial partial lipodystrophy-Dunnigan variety (FPLD) and 18 with acquired partial lipodystrophy (APL) and studied their relationship to metabolic parameters. Patients with CGL and AGL had markedly reduced serum adiponectin levels compared to those with FPLD and APL (median [range]: 1.5 [0.4-7.5], 3.2 [0.6-7.7], 6.9 [1.9-23.2] and 7.9 [3.1-13.3] microg/mL, respectively, p < 0.0001); the same trend was noted for serum leptin levels (0.63 [0.05-3.7], 2.18 [0.05-11.30], 2.86 [0.23-9.00] and 6.24 [1.21-10.4] ng/mL, respectively, p < 0.0001). Serum adiponectin levels correlated negatively with fasting serum triglycerides (r = -0.6, p < 0.001) and insulin levels (r = -0.5, p < 0.0001) and positively with serum high-density lipoprotein cholesterol levels (r = 0.5, p < 0.001). Serum adiponectin levels were lower in patients with diabetes compared to non-diabetic subjects (3.0 vs. 7.1 microg/mL, p < 0.001). Our results indicate that serum adiponectin and leptin levels are extremely low in patients with generalized lipodystrophies and may be related to severe insulin resistance and its metabolic complications in lipodystrophies.

Adiponectin↗

[Lipodystrophy in HIV infected children].

UNLABELLED: Lipodystrophies are rare diseases with abnormal distribution of fat tissue and/or with metabolic changes. The consequence of metabolic abnormalities may be early atherosclerosis or ischaemic heart disease. During the last years lipodystrophy has been more often recognized in HIV infected, antiretroviral treated people. THE AIM was to estimate the prevalence of lipodystrophy in HIV infected children receiving Highly Active Antiretroviral Therapy (HAART). MATERIAL AND METHODS: 40 children (age 3-16 years) were included in the study. An anamnesis (current complaints and family history) was taken and physical examination was carried out. Laboratory tests included: triglycerides, cholesterol and fractions, glucose. RESULTS: Medium time of HAART was 4 years. Lipodystrophy was found in 9/40 children. Metabolic abnormalities and clinical manifestations were observed in all children with lipodystrophy. All of them were treated with Zerit, more often with Videx and Kaletra. 5/9 patients with and 5/31 without lipodystrophy had AIDS. Abnormal serum lipid concentrations were observed in 27/31 children without clinical symptoms of lipodystrophy. There was no significant connection with family history and current clinical stage. CONCLUSIONS: Advance of disease and HAART treatment (especially with Zerit, Videx and Kaletra) increases the risk of this syndrome. Metabolic abnormalities in HAART treated children are frequent, also in children without clinical manifestations of lipodystrophy. Estimated risk of metabolic abnormalities in children should influence the choice of therapeutic schedule or its modification.

Adolescent↗

Effects of protease inhibitors on hyperglycemia, hyperlipidemia, and lipodystrophy: a 5-year cohort study.

BACKGROUND: Although human immunodeficiency virus (HIV)-related morbidity and mortality rates in patients with advanced HIV infection who are treated with combination antiretroviral drugs have declined, significant metabolic adverse effects associated with these regimens have been increasingly recognized. However, since data from patients studied before and after initiation of protease inhibitor (PI) therapy are scant, the true effect of PIs on these metabolic changes remains unknown. OBJECTIVES: To examine temporal trends in serum glucose and lipid levels after initiation of PI therapy, to assess whether changes are independent of virological response and improvement in disease severity, and to determine risk factors associated with the development of hyperglycemia, hyperlipidemia, and lipodystrophy. METHODS: A 5-year historical cohort analysis in a population of 221 HIV-infected patients observed in the Infectious Diseases Clinic of a tertiary care center from October 1, 1993, through July 31, 1998. Clinical and laboratory data were retrieved from medical records and a computerized database. The main outcome measure was the incidence of hyperglycemia, hypercholesterolemia, hypertriglyceridemia, and lipodystrophy. Adjusted incidence rate ratios (IRRs) were estimated by means of Poisson regression. In addition, mixed regression analyses were performed to examine effects of PIs on serum lipid and glucose levels, modeled as continuous outcomes. RESULTS: The cumulative incidence of new-onset hyperglycemia, hypercholesterolemia, hypertriglyceridemia, and lipodystrophy was 5%, 24%, 19%, and 13%, respectively. Most of these events occurred after initiation of PI therapy. Protease inhibitors were independently associated with hyperglycemia (adjusted IRR, 5.0; 95% confidence interval [CI], 1. 3-19.4), hypercholesterolemia (adjusted IRR, 2.8; 95% CI, 1.5-5.2), hypertriglyceridemia (adjusted IRR, 6.1; 95% CI, 3.1-11.7), and lipodystrophy (adjusted IRR, 5.1; 95% CI, 1.9-13.9). Anabolic steroids and psychotropic medications were also associated with lipodystrophy. Inclusion of potential intermediate variables (eg, virological suppression and increase in body weight) did not reduce the magnitude of the association with PIs. The association between hypertriglyceridemia and ritonavir was stronger than for other PIs (Wald test, P=.02). In contrast, the incidence of hyperglycemia, hypercholesterolemia, and lipodystrophy did not vary significantly across different PIs. Longitudinal mixed models confirmed that serum lipid levels were more substantially affected by antiretroviral therapy, particularly PIs, than serum glucose levels. Similarly, controlling for surrogate markers did not abolish the strong association between PIs and increase in serum lipid levels. CONCLUSION: We found an independent association between PI use and hyperglycemia, hyperlipidemia, and lipodystrophy that is not explained by the antiviral and therapeutic effect of PIs.

Adult↗

Cardiomyopathy in congenital complete lipodystrophy.

Molecular genetic studies have pointed to a relationship between congenital lipodystrophy syndromes and some cardiac disorders. For instance, mutations in LMNA cause either lipodystrophy or cardiomyopathy, indicating that different mutations in the same gene can produce these clinical syndromes. The present authors describe a 10-year-old female with Berardinelli-Seip congenital complete lipodystrophy (MIM 606158) caused by homozygosity for a frameshift mutation in BSCL2. In addition to the typical attributes of complete lipodystrophy, this subject had hypertrophic cardiomyopathy diagnosed in the first year of her life; its progress has been followed with non-invasive imaging. The mechanism underlying the hypertrophic cardiomyopathy in complete lipodystrophy is unclear. It may result from a direct effect of the mutant gene or it might be secondary to the effects of hyperinsulinemia on cardiac development. The variability of the associated cardiomyopathy in patients with complete generalized lipodystrophy may be caused by differential effects of mutations in the same gene or of mutations in different genes which underlie the lipodystrophy phenotype.

Cardiomyopathies↗

Diseases of adipose tissue: genetic and acquired lipodystrophies.

Human lipodystrophies represent a group of diseases characterized by altered body fat amount and/or repartition and major metabolic alterations with insulin resistance leading to diabetic complications and increased cardiovascular and hepatic risk. Genetic forms of lipodystrophies are rare. Congenital generalized lipodystrophy or Berardinelli-Seip syndrome, autosomal recessive, is characterized by a complete early lipoatrophy and severe insulin resistance and results, in most cases, from mutations either in the seipin gene of unknown function or AGPAT2 encoding an enzyme involved in triacylglycerol synthesis. The Dunnigan syndrome [FPLD2 (familial partial lipodystrophy of the Dunnigan type)] is due to mutations in LMNA encoding the lamin A/C, belonging to the complex group of laminopathies that could comprise muscular and cardiac dystrophies, neuropathies and syndromes of premature aging. Some FPLDs are linked to loss-of-function mutations in the PPAR-gamma gene (peroxisome-proliferator-activated receptor gamma; FPLD3) with severe metabolic alterations but a less severe lipodystrophy compared with FPLD2. The metabolic syndrome, acquired, represents the most common form of lipodystrophy. HIV-infected patients often present lipodystrophies, mainly related to side effects of antiretroviral drugs together with insulin resistance and metabolic alterations. Such syndromes help to understand the mechanisms involved in insulin resistance resulting from altered fat repartition and could benefit from insulin-sensitizing effects of lifestyle modifications or of specific medications.

Adipose Tissue↗

The prevalence of lipodystrophy in an ambulant HIV-infected population: it all depends on the definition.

OBJECTIVES: This study's objective was to determine the prevalence of body shape changes and metabolic abnormalities in an ambulant population with HIV infection. Three different definitions of lipodystrophy were used to assess these changes. Patients' anthropometric measures and dual-energy X-ray absorptiometry (DEXA) scans were compared in order to estimate fat distribution in this population. We sought to evaluate potential predictors for lipodystrophy according to each of the three definitions. METHODS: We performed a cross-sectional study in the outpatient clinic of a tertiary referral hospital in Melbourne, Australia. We enrolled a total of 167 HIV-infected ambulatory patients over 3 months in mid-1998. Data on 159 males, 149 of whom were receiving triple combination antiretroviral therapy, were evaluated. Anthropometric measures, clinical examination, self-report of body shape changes, biochemical measures and DEXA scan were used to assess lipodystrophy and risk factors for cardiovascular disease. Patients described body shape changes in the face, trunk, arms and legs. Laboratory parameters measured included fasting triglyceride (TG), cholesterol, high-density lipoproteins (HDL), glucose, insulin, CD4 cell count and plasma HIV RNA. Current and past antiretroviral therapies were ascertained. RESULTS: According to one proposed Australian national definition of lipodystrophy (LDNC), the prevalence of lipodystrophy in this population was 65%. This definition included an objective assessment with major and minor criteria. Patient-defined lipodystrophy (LDP), which involved a subjective assessment of thinning arms and legs and central adiposity, occurred in 19%. Patient-defined lipoatrophy (LAP), which involved a subjective assessment of thinning arms and legs without central adiposity, occurred in 21.3%. No change in body habitus was noted by 37% of the cohort. Hypercholesterolaemia was recorded in 44%, hypertriglyceridaemia in 52% and elevated insulin levels in 23%. Anthropometry was predictive of the per cent total body fat recorded by DEXA scan, but produced consistently lower values. In multivariate analysis, LDP and LAP were significantly associated with stavudine (d4T) use, while LAP was also associated with zidovudine (ZDV) treatment. There were no treatment associations with LDNC. Protease inhibitor (PI) exposure was associated with metabolic changes but not patient perceived body shape changes, while d4T and ZDV exposure was associated with increased triglycerides and reduced peripheral fat stores. CONCLUSIONS: The prevalence of body shape changes in a single population varied depending on the definition applied. The LDNC definition overestimated body shape abnormalities in comparison with patient perception. LAP was associated with significantly lower fat stores measured by anthropometry and DEXA scan than those identified under the LDNC definition. In contrast to LDNC, LAP was associated with d4T exposure, nucleoside reverse transcriptase inhibitor (NRTI) and ZDV duration of use, but not PI use. Until a consensus definition for lipodystrophy is developed, including agreement on objective measurement and thresholds for abnormality, careful description of the individual components of the syndrome is required to enable cohort comparisons so that predictors of the syndrome can be assessed more accurately and outcome studies made feasible.

Australia↗

Indinavir-associated facial lipodystrophy in HIV-infected patients.

The objectives of this study were to document the prevalence of facial lipodystrophy in patients with HIV infection receiving protease inhibitors and to identify associated factors. All patients with HIV infection receiving protease inhibitors seen at an HIV clinic in Hong Kong during a 2-month period, from August to October 1997, were assessed for facial lipodystrophy. Among 29 patients who had been receiving indinavir for 3 months or more, facial lipodystrophy was found in 7 (24%). Facial lipodystrophy in these patients was found to be an isolated event and was not associated with noticeable wasting elsewhere. The development of facial lipodystrophy was not found to be associated with age, sex, ethnicity, route of HIV transmission, CD4 cell count, history of AIDS-defining illness, or concurrent anti-retroviral treatment. Facial lipodystrophy was not observed in patients who had received indinavir for less than 3 months. The condition was also not found in patients taking other protease inhibitors, although this could be due to the small sample size. Prospective study of this condition with a larger sample and with objective anthropomorphic measurements would be desirable. In conclusion, facial lipodystrophy is a common occurrence among patients receiving indinavir, and physicians should be alerted to this condition.

Adult↗

A syndrome of peripheral lipodystrophy, hyperlipidaemia and insulin resistance in patients receiving HIV protease inhibitors.

OBJECTIVE: To describe a syndrome of peripheral lipodystrophy (fat wasting of the face, limbs and upper trunk), hyperlipidaemia and insulin resistance in patients receiving potent HIV protease inhibitor therapy. DESIGN: Cross-sectional study. SETTING: Outpatient clinic of a university teaching hospital. PATIENTS: HIV-infected patients either receiving at least one protease inhibitor (n=116) or protease inhibitor-naive (n=32), and healthy men (n=47). INTERVENTIONS AND MAIN OUTCOME MEASURES: Lipodystrophy was assessed by physical examination and questionnaire and body composition by dual-energy X-ray absorptiometry. Fasting triglyceride, cholesterol, free fatty acid, glucose, insulin, C-peptide and fructosamine levels, other metabolic parameters, CD4 lymphocyte counts, and HIV RNA load were also assessed. RESULTS: HIV protease inhibitor-naive patients had similar body composition to healthy men. HIV protease inhibitor therapy was associated with substantially lower total body fat (13.2 versus 18.7 kg in protease inhibitor-naive patients; P=0.005), and significantly higher total cholesterol and triglyceride levels. Lipodystrophy was observed clinically in 74 (64%) protease inhibitor recipients after a mean 13.9 months and 1(3%) protease inhibitor-naive patient (P=0.0001). Fat loss occurred in all regions except the abdomen after a median 10 months. Patients with lipodystrophy experienced a relative weight loss of 0.5 kg per month and had significantly higher triglyceride, cholesterol, insulin and C-peptide levels and were more insulin-resistant than protease inhibitor recipients without lipodystrophy. Patients receiving ritonavir and saquinavir in combination had significantly lower body fat, higher lipids and shorter time to lipodystrophy than patients receiving indinavir. Three (2%) patients developed new or worsening diabetes mellitus. CONCLUSION: A syndrome of peripheral lipodystrophy, hyperlipidaemia and insulin resistance is a common complication of HIV protease inhibitors. Diabetes mellitus is relatively uncommon.

Adult↗

Fat distribution and metabolic changes are strongly correlated and energy expenditure is increased in the HIV lipodystrophy syndrome.

OBJECTIVE: To examine the relationships between protease inhibitor (PI) therapy, body fat distribution and metabolic disturbances in the HIV lipodystrophy syndrome. DESIGN: Cross-sectional study. SETTING: HIV primary care practices. PATIENTS: PI-treated patients with lipodystrophy (n= 14) and PI-treated (n= 13) and PI-naive (n= 5) patients without lipodystrophy. MAIN OUTCOME MEASURES: Body composition was assessed by physical examination, dual-energy X-ray absorptiometry and computed tomography. Insulin sensitivity (SI) was measured using the insulin-modified frequently sampled intravenous glucose tolerance test. Lipid profiles, other metabolic parameters, duration of HIV infection, CD4 lymphocyte counts, HIV-1 RNA load and resting energy expenditure (REE) were also assessed. RESULTS: PI-treated patients with lipodystrophy were significantly less insulin sensitive than PI-treated patients and PI-naive patients without any changes in fat distribution (SI(22) x 10(-4) (min(-1)/microU/ml) versus 3.2 x 10(-4) and 4.6 x 10(-4) (min(-1)/microU/ml), respectively; P < 0.001). Visceral adipose tissue area and other measures of central adiposity correlated strongly with metabolic disturbances as did the percent of total body fat present in the extremities; visceral adipose tissue was an independent predictor of insulin sensitivity and high density lipoprotein cholesterol levels. REE per kg lean body mass was significantly higher in the group with lipodystrophy compared to the groups without lipodystrophy (36.9 versus 31.5 and 29.4 kcal/kg lean body mass; P < 0.001), and SI was strongly correlated with and was an independent predictor of REE in this population. CONCLUSIONS: Body fat distribution and metabolic disturbances are strongly correlated in the HIV lipodystrophy syndrome and REE is increased.

Adipose Tissue↗