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Query: UMLS:C0019693 (HIV)
170,526 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Treatment of human immunodeficiency virus type 1 (HIV-1) infection with regimens that include protease inhibitors (PIs) has contributed to marked improvements in HIV-related disease progression and mortality. Five PIs are approved by the US Food and Drug Administration and have potent activity in vitro. PIs with 2 nucleoside analogue reverse transcriptase inhibitors have demonstrated prolonged suppression of HIV-1 replication in treated patients and improvements in disease progression and mortality. PIs combined with nonnucleoside reverse transcriptase inhibitors or other PIs produce marked antiretroviral effects. Although not all patients have prolonged responses to PIs, and salvage treatment has had mixed results for patients who have not responded to initial PI therapy or whose HIV RNA levels have relapsed during such therapy, newer PIs currently being developed hold promise. Most patients can successfully tolerate PI-including regimens; however, long-term side effects, such as body fat redistribution, insulin resistance, and increased serum lipids, are now being observed in some patients receiving PI-including therapy.
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PMID:HIV-1 protease inhibitors. 1086 Sep 1

The introduction of HAART has changed the nutritional status of HIV patients. In the pre-protease inhibitor (PI) era, more than 60% of HIV-positive persons presented with protein energy malnutrition (PEM) and vitamin and mineral deficit. This caused progressive physical-metabolic wasting (wasting syndrome/cachexia) and increased susceptibility to opportunistic infections and drug toxicity. PEM was a concurrent cause in 80% of deaths attributed to AIDS. Since 1996, the year in which PIs were introduced, the number of patients dying as a result of AIDS has decreased by two thirds, and cachexia is no longer the AIDS terminal phase in developed countries. But different patterns of nutritional status changes have appeared in association with the use of newer anti-HIV therapies and with longer survival of HIV-infected patients. A new clinical and laboratory syndrome--lipodystrophy syndrome--now affects patients receiving PI-based therapy. This syndrome consists of changes in body shape that are caused by an abnormal redistribution of fat. Fat accumulates in the abdominal area (truncal and visceral obesity), in the axillary pads (bilateral symmetric lipomatosis), and in the dorsocervical pads ("buffalo hump," "bull neck") but decreases in the legs, arms, and nasolabial and cheek pads (peripheral lipodystrophy). Hyperlipidemia and insulin resistance are also frequently present (metabolic syndrome X). Pathogenic mechanisms of lipid and fat tissue disturbances are discussed in this article, and the clinical approach to patient management and therapeutic options for lipodystrophy and lipid dysmetabolism is evaluated.
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PMID:Reversal of cachexia in patients treated with potent antiretroviral therapy. 1088 68

Since the introduction of HIV-1 protease inhibitors as components of antiretroviral drug combination regimens, the clinical course of HIV disease and opportunistic infections has changed dramatically. Besides the favourable virological, immunological and clinical impact of highly active antiretroviral therapy (HAART), several adverse drug reactions have been observed in patients with HIV receiving therapy. Particularly, peripheral lipodystrophy, central adiposity, dyslipidaemia and insulin resistance have been described with a prevalence of up to 80% in patients infected with HIV, and attributed to almost all components of HAART. Hyperlipidaemia is characterised by an increase of low and very low density lipoprotein-cholesterol as well as apolipoproteins B and E. Several studies strongly suggest that there are either multiple syndromes or a variety of factors inducing different changes that influence the ultimate phenotype. Similarities between HIV-associated fat redistribution and metabolic abnormalities with both inherited lipodystrophies and benign symmetric lipomatosis suggest the pathophysiological involvement of, for example, nuclear factors like lamin A/C and drug-induced mitochondrial dysfunction. Moreover, there is some evidence that cytokines and hormones impair fat and glucose homeostasis in patients with HIV receiving HAART. Three years after the first description of HIV therapy-associated abnormal fat redistribution, there is still an ongoing discussion about the case definition, diagnostic procedure and treatment options for both body shape changes and metabolic disturbances. Regarding therapy, there is a major concern about possible complex pharmacological interactions and overlapping adverse effects between HAART and, for example, lipid-lowering therapy. In addition, the likely contribution of both nucleoside analogue reverse transcriptase inhibitors and protease inhibitors to the development of abnormal fat redistribution in patients with HIV limits options of changing to alternative effective antiretroviral drug combinations. Thus, the occurrence of hyperlipidaemia, maturity onset diabetes mellitus, and marked changes in body habitus resulted in important social and clinical consequences such as an increased risk of atherosclerosis. It also sheds new light on the use of protease inhibitors regarding risk factors for the initial treatment decision. In this article, we discuss the features, pathogenesis and treatment options for body fat redistribution and metabolic disturbances associated with HAART in HIV-1 infection.
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PMID:Lipodystrophy syndrome in HIV infection: what is it, what causes it and how can it be managed? 1091 32

The potency of highly active antiretroviral therapy, including protease inhibitors have led to declining morbidity and mortality in patients with HIV infection. However the use of protease inhibitors is associated with onset of morphologic and metabolic disorders. A syndrome of lipodystrophy has been described. It is characterized by fast wasting of the face and limbs, and a central adiposity, breast hypertrophy and buffalo neck. The prevalence of lipodystrophy in patients treated with protease inhibition is about 60%. The principal metabolic disorders are lipid abnormalities, principally hypertriglyceridemia. New onset of diabetes mellitus is less frequent. The pathogenesis of these abnormalities unknown. Insulin resistance seems to be a common feature of protease inhibitor associated metabolic an morphologic side-effects.
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PMID:[Metabolic complications associated with use of protease inhibitors]. 1092 55

Massive hypertriglyceridaemia associated with fatty liver and abdominal pain or frank pancreatitis (the chylomicronaemia syndrome) is uncommon, but clinically important and under-recognized. It may arise as a result of severe genetic defects in lipolysis or, more commonly, from a moderate primary hypertriglyceridaemia that is exacerbated by a secondary cause. The latter include several drugs, among which the protease inhibitors, used for the treatment of human immunodeficiency virus infection, are increasingly apparent. In the acute situation plasma exchange, fat-free parenteral nutrition and acute insulin treatment, even in nondiabetic persons, may be valuable. A potentially major advance in prophylaxis is the use of high-dose antioxidant therapy, which has been shown to reduce attacks of pancreatitis even in the absence of a reduction in serum triglycerides. Asymptomatic patients with abnormal liver function tests are common in the lipid clinic, and can be a difficult group in which to make management decisions. Among those who are not taking excessive amounts of alcohol, many will have nonalcoholic steatohepatitis. The care of these patients is discussed, but there remains considerable uncertainty regarding their optimum management and prognosis.
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PMID:Serum triglycerides, the liver and the pancreas. 1094 19

We investigated longitudinally the effect of protease inhibitors (PI) on insulin sensitivity, glycemia, and serum lipids in HIV-infected patients. Ninety-one consecutive patients treated with PI for at least 12 months were included in this study. Fasting glycemia, lipid profile, insulinemia, CD4 T lymphocytes, and plasma HIV-1 RNA were performed at baseline and on PI therapy. Insulin sensitivity and insulin secretion were measured by the homeostasis model assessment (HOMA MODEL) using the fasting glucose and insulin concentrations. Triglycerides (+ 0.34 mmol/l, SD = 1.07, p = 0.001) and cholesterol (+ 1.07 mmol/l, SD = 1.21, p= 0.001) significantly increased on PI therapy. Fasting glycemia, insulin sensitivity, and insulin secretion were not modified after PI therapy. PI therapy significantly increased body mass index (0.35 kg/m2, p < 0.05). Serum lipid changes correlated with changes in the CD4+ cell count. Lipodystrophy was observed in 40.6% of patients treated with PI. Our longitudinal study found that PI therapy had no major impact on fasting glycemia, insulin sensitivity, and insulin secretion. These findings are not consistent with previous cross-sectional studies, which did not include baseline measurements before PI initiation. However, we observed a similar profile of lipid changes induced by PI therapy. These results suggest that PI could be responsible for the development of hypertriglyceridemia by a mechanism independent of insulin resistance which remains to be elucidated.
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PMID:HIV-1 protease inhibitors induce an increase of triglyceride level in HIV-infected men without modification of insulin sensitivity: a longitudinal study. 1101 86

Recent reports of myocardial infarctions in young persons infected with human immunodeficiency virus (HIV) who are receiving protease inhibitor therapy have raised concerns about premature coronary artery disease in this population. Endothelial dysfunction, hypercoagulability, hypertriglyceridemia, and abnormal coronary artery pathology were in fact associated with HIV infection prior to the availability of protease inhibitor therapy. Newly recognized risk factors, such as insulin resistance, hypercholesterolemia, and fat redistribution syndrome, may exacerbate underlying atherosclerotic risk for patients receiving protease inhibitors. Data on the incidence of myocardial infarction among these patients are largely limited to case reports but are of concern. Pending the availability of further data, it is prudent to monitor these patients for hyperlipidemia and consider interventions to modify cardiac risk factors.
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PMID:Coronary artery disease and human immunodeficiency virus infection. 1101 31

We exploited the ability of lentiviral vectors to govern the stable transduction of cells irrespective of their cycling status to induce the reversible immortalization of human primary cells. First, bicistronic HIV-derived lentiviral vectors expressing GFP- and the HSV1 thymidine kinase and containing the LoxP sequence in their LTR (HLox) were used to transduce HeLa cells. Cre expression led to efficient proviral deletion, and unexcised cells could be eliminated by ganciclovir treatment. A human liver biopsy was then exposed to a combination of HLox vectors that harbored either the SV40 large T (TAg) or the human telomerase (hTERT) DNAs in place of GFP. This led to the isolation of liver sinusoidal endothelial cell (LSEC) clones that exhibited an immortalized phenotype while retaining most of the features of primary hLSEC. Complete growth arrest of these cells was observed in 2 days of Cre expression, and the resulting stationary culture could be kept for at least 2 weeks. Transduction of human adult pancreatic islets with HLox vectors coding for Tag and Bmi-1 also induced the proliferation of insulin-positive cells. These results indicate that lentivectors can be used to mediate the reversible immortalization of primary nondividing cells and should allow for the production of large supplies of a wide variety of human cells for both therapeutic and research purposes.
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PMID:Reversible immortalization of human primary cells by lentivector-mediated transfer of specific genes. 1102 Mar 57

We prospectively followed 20 consecutive patients with human immunodeficiency virus type 1 (HIV-1) with viral loads of <200 RNA copies/mL. These patients had been treated with 2 nucleoside reverse transcriptase inhibitors and > or =1 HIV-1 protease inhibitor for > or =3 months; they developed body changes consistent with lipodystrophy and requested they be switched from protease inhibitor to efavirenz. At baseline and every 3 months, we assessed the following: body mass index, waist-to-hip ratio, regional fat thickness (assessed by sonography), fasting total and high-density lipoprotein cholesterol, triglycerides, glucose, insulin, CD4(+) cells, and viral load. At baseline, hypertriglyceridemia (> or =200 mg/dL) was present in 17 (85%) patients, hypercholesterolemia (> or =200 mg/dL) in 14 (70%), and impaired fasting glucose (> or =110 mg/dL) in 8 (40%); CD4(+) T cells were 280x10(6) cells/L (range, 64-942x10(6) cells/L). HIV-1 RNA had been at <200 copies/mL for a median of 14 months (range, 3-24 months). Six months after switching to efavirenz, there was a reduction in triglyceride levels (a decrease of 31%; P=.03) and fasting insulin resistance index (a decrease of 28%; P=.03), but total and high-density lipoprotein cholesterol and glucose did not change. Waist-to-hip ratio decreased from 0.92 to 0.87 (P=.06). Subcutaneous fat thickness did not change. CD4(+) cells remained stable (363x10(6) cells/L; range, 102-741x10(6) cells/L; P=.65). Nineteen patients (95%) had HIV-1 RNA levels that remained at <200 copies/mL. Although CD4(+) response and viral suppression remained preserved after 6 months of switching from protease inhibitor to efavirenz, the benefits of this approach on the evolution of lipodystrophy were limited, and our findings do not support its routine recommendation to treat lipodystrophy.
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PMID:Impact of switching from human immunodeficiency virus type 1 protease inhibitors to efavirenz in successfully treated adults with lipodystrophy. 1107 62

We describe the case of a young HIV-positive patient undergoing three-drug antiretroviral therapy that included a protease inhibitor for 9 months, who was admitted to the hospital with an acute myocardial infarction. A coronary angiogram revealed occlusion caused by a thrombus in the proximal third of the anterior descending artery. Complete recanalization was obtained after an angioplasty was performed. At the time of the infarction, only the triglyceride levels were found to be high. Metabolic alterations associated with the prolonged use of protease inhibitors have been described such as an increase in the triglyceride and cholesterol serum levels, diabetes, resistance to insulin, lipodystrophy, and pancreatitis. The consequences of chronic hyperlipidemia are well known in the medical literature, especially premature coronary artery disease. No family history of coronary artery disease was identified in this patient. Whether the genesis of this localized coronary thrombosis was due to a change in the metabolism of the vascular endothelium caused by the protease inhibitors, or by related dyslipidemia, is still to be determined. In this case, the data suggest a strong link between coronary insufficiency and prolonged use of the protease inhibitor.
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PMID:Acute Myocardial Infarction in a 34-Year-Old HIV-Positive Female Patient While Undergoing Active Antiretroviral Therapy Containing a Protease Inhibitor. 1108 68


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