Simvastatin Reduces Circulating Osteoprotegerin Levels in Patients With Type 2 Diabetes
NCT ID: NCT00471549
Last Updated: 2007-05-10
Study Results
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Basic Information
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COMPLETED
PHASE4
18 participants
INTERVENTIONAL
1991-06-30
1993-12-31
Brief Summary
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Aim: To investigate whether low dose simvastatin treatment (10-20 mg/day) reduces circulating levels of OPG as well as adhesion molecules (VCAM-1; vascular cell adhesion molecule-1, ICAM; intercellular cell adhesion molecule).
Detailed Description
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Osteoprotegerin (OPG), a secreted basic glycoprotein and member of the TNF receptor superfamily, is a soluble receptor activator of nuclear factor-κB (RANK) ligand (RANKL), and TNF-related apoptosis inducing ligand (TRAIL), though with much lower affinity to TRAIL compared to RANKL. OPG works as a decoy-receptor preventing the RANK-RANKL interaction, thereby reducing the biological effect. The RANK-RANKL system induces osteoclast differentiation and activation whereby bone absorption is promoted. Due to its properties as a decoy receptor, OPG antagonizes this effect and inhibits bone loss. In addition to the effects on osteoclasts, the RANK-RANKL system has been proposed to have cardiovascular effects. Thus, activation of the RANK-RANKL system induces VCAM-1 synthesis, prolongs endothelial cell survival, promotes angiogenesis, and reduces TNF-α levels. In contrast, elevated levels of OPG are associated with the severity of CVD, although it is presently unclear whether this association reflects a cause-effect relationship or is purely coincidental.
Cholesterol-lowering therapy with statins reduces cardiovascular mortality and morbidity risk in diabetics and non-diabetic subjects. According to recent studies, statins may have additional, pleiotropic effects and may in fact stabilize atherosclerotic plaques. Experimental data obtained in animal models indicate dose-dependent angiogenetic effects and promotion of vascular structure formation. It is therefore of interest that recent, in vitro studies by Ben-Tahl et al. and Rasmussen et al. suggest that statins may suppress OPG and adhesion molecule production in humans. Thus, umbilical vein endothelial cells and smooth vascular muscle cells incubated with simvastatin and stimulated with TNF-α and IL-1 secreted less OPG than control cells. Under normal circumstances, exposure to cytokines (TNF-α and IL-1) is a powerful stimulus to OPG production in vascular cells and these results therefore seem to support the concept, that simvastatin may ameliorate some of the deleterious effects of inflammation.
This study was conducted to examine the effect of simvastatin treatment on circulating OPG and adhesion molecule levels in a group of type 2 diabetic patients at increased risk for cardiovascular disease (CVD) due to persistent microalbuminuria. Since both OPG and adhesion molecules are associated with CVD and potentially modifiable by statin treatment this could help improve our understanding of potentially pleiotropic effects of statins in reducing CVD.
Conditions
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Study Design
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RANDOMIZED
PARALLEL
TREATMENT
DOUBLE
Interventions
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Statin (simvastatin)
Eligibility Criteria
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Inclusion Criteria
* Persistent microalbuminuria
* Fasting plasma cholesterol \> 5.5 mmol/liter
* Fasting plasma triglycerides \< 4.5 mmol/liter
* Fasting HbA1c \< 10 %
* Fasting serum C-peptide \> 0.49 nmol/liter
* Blood pressure \< 155/95
Exclusion Criteria
* Signs of primary hepatic disease
* Signs of insufficiently treated cardiac disease
ALL
No
Sponsors
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University of Aarhus
OTHER
Principal Investigators
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Carl E Mogensen, MD
Role: PRINCIPAL_INVESTIGATOR
Aarhus University Hospital, Department M
Soren Nielsen, MD, PhD
Role: PRINCIPAL_INVESTIGATOR
Aarhus University Hospital, Department M
References
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Nellemann B, Gormsen LC, Dollerup J, Schmitz O, Mogensen CE, Rasmussen LM, Nielsen S. Simvastatin reduces plasma osteoprotegerin in type 2 diabetic patients with microalbuminuria. Diabetes Care. 2007 Dec;30(12):3122-4. doi: 10.2337/dc07-0919. Epub 2007 Sep 5. No abstract available.
Other Identifiers
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1991/2128
Identifier Type: -
Identifier Source: org_study_id