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Active clinical trials for "Hyperlipoproteinemias"

Results 261-270 of 298

PEG-Asparaginase Associated Pancreatitis, Hepatotoxicity and Hyperlipidemia in Children With ALL...

Acute Lymphoblastic LeukemiaPancreatitis

The purpose of this study is to create a model enabling us to predict pancreatitis, hyperlipidemia and hepatotoxicity during treatment with PEG-Asparaginase in children with Acute Lymphoblastic Leukemia.

Completed2 enrollment criteria

Hyperlipidemia and Statin Therapy in Amyotrophic Lateral Sclerosis

Amyotrophic Lateral Sclerosis

The role of hyperlipidemia and lipid lowering therapy (LLT) in Amyotrophic Lateral Sclerosis (ALS) pathophysiology and its impact on disease progression and survival is unclear. The investigators analyzed the correlation between lipid levels with disease progression and survival in ALS patients and the association of LLT with these outcomes.

Completed8 enrollment criteria

Effects of Hypolipemic Treatment on Adipokines

HyperlipidemiaImpaired Fasting Glycemia

The study is planned to show whether monotherapies or combined hypolipemic therapy influence the fasting plasma glucose, serum adipokines (leptin, adiponectin, resistin) and proinflammatory cytokines (interleukin-6, TNF alpha) during 30 and 90 day course.

Completed27 enrollment criteria

To Explore the Treatment Effect of Various Commercially Available Statins on Patients With Hyperlipidemia...

Hyperlipidemias

The primary objective is to survey the efficacy of various commercially available statins (a class of lipid-lowering agents, for example, rosuvastatin, atorvastatin, simvastatin, lovastatin, pravastatin and fluvastatin) under local clinical practice in treating patients with hyperlipidemia. Surveillance data (Lipid Profile) will be collected during course of usual clinical practice or captured upon its availability.

Completed7 enrollment criteria

Genetic Epidemiology of Hypertriglyceridemia

Cardiovascular DiseasesCoronary Disease3 more

To determine prospectively the role of elevated plasma triglyceride (TG) as a risk factor for 20-year coronary heart disease (CHD) mortality in familial combined hyperlipidemia (FCHL) and familial hypertriglyceridemia (FHTG), the familial forms of hypertriglyceridemia. Also, to perform genetic epidemiologic studies of recently identified lipoprotein risk factors for CHD, including Atherogenic Lipoprotein Phenotypes (ALP) based on subclasses of low-density lipoproteins (LDL), Lipoprotein(a) (Lp(a)) and apolipoprotein (apo) B plasma levels, and apo E isoforms.

Completed1 enrollment criteria

Diabetic Under 70 (Diabetics Below 70)

DiabetesHyperlipidemia1 more

A screening project of diabetics with a very high cardiovascular risk (e.g. diabetes plus coronary heart disease) who already receive cholesterol-lowering therapy. Lipid profile and rate of patients who are treated to target (which is <70mg/dl for such patients with very high risk) are screened. The doctors therapy decisions after the screening will be documented and 8-10 weeks later the lipid profile of each patient will be evaluated again. Our aim is to evaluate dosing habits, to evaluate how many patients are treated to their LDL-C target and to underline the importance of treating patients to their cholesterol targets.

Completed2 enrollment criteria

Lipid Research Clinics Population Studies

Cardiovascular DiseasesAtherosclerosis3 more

To conduct epidemiologic surveys of the distribution, causes, and consequences of the dyslipoproteinemias. The Population Studies include the Prevalence Study, the Family Study, and the Mortality Follow-up Study and shared the same general population base.

Completed1 enrollment criteria

Human Lipoprotein Pathophysiology - Subproject: Genetics of Familial Combined Hyperlipidemia

AtherosclerosisCardiovascular Diseases4 more

To conduct focused studies of lipoprotein physiology and pathophysiology in genetically characterized patients with the objectives of understanding disease mechanisms, developing better treatments, and identifying and preventing early vascular disease.

Completed1 enrollment criteria

Metabolism and Body Shape of Healthy Children and Children With Chronic Infections

HIV InfectionsHealthy2 more

Some HIV-infected adults develop lipodystrophy that includes significant changes in body shape, with fat losses in the face, arms and legs, and fat gain in the trunk. This lipodystrophy is often accompanied by other disorders of metabolism, such as increased levels of fat and insulin in the blood. The majority of these cases have been seen when patients are taking medications called protease inhibitors. These are anti-retroviral medications designed to treat patients with HIV. It is unclear if lipodystrophy is a result of having HIV or the medication used to treat HIV. It has been suggested, but not proven, that lipodystrophy is a direct side effect of protease inhibitors. In addition, it is unknown if HIV-infected children develop significant lipodystrophy after taking protease inhibitors. This study will investigate the prevalence of metabolic disorders and changes in body fat distribution in children taking protease inhibitor anti-retroviral medications. The results will be compared to three other groups; (1) children suffering from other non-HIV chronic infections, (2) HIV-infected children not taking protease inhibitors, and (3) healthy children. The study will look at HIV-infected children who have already started taking protease inhibitors. It will evaluate these children for disorders in metabolism as well as body fat changes. In addition, the study will follow HIV-infected children who will begin taking protease inhibitors. The study will follow these children for 18 months to detect the development of disorders in metabolism and / or body fat changes.

Completed23 enrollment criteria

PERIODONTAL DISEASE AND HYPERLIPIDEMIA

HyperlipidemiaPeriodontitis1 more

The investigators hypothesized that hyperlipidemia as an unfavourable levels of lipoprotein subfractions have deleterious impact on the development of periodontal infection by altering oxidative stres status of periodontal tissues. The aim of this study was therefore to investigate i) effect of hyperlipidemia on oxidative change in GCF content, ie. MDA, PC and TAOC levels in patients with different periodontal status,

Completed3 enrollment criteria
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