| Literature DB >> 21241519 |
Guohua Song1, Jia Liu, Zhenmei Zhao, Yang Yu, Hua Tian, Shutong Yao, Guoli Li, Shucun Qin.
Abstract
BACKGROUND: Statins are first-line pharmacotherapeutic agents for hypercholesterolemia treatment in humans. However the effects of statins on atherosclerosis in mouse models are very paradoxical. In this work, we wanted to evaluate the effects of simvastatin on serum cholesterol, atherogenesis, and the expression of several factors playing important roles in reverse cholesterol transport (RCT) in apoE-/- mice fed a high-fat diet.Entities:
Mesh:
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Year: 2011 PMID: 21241519 PMCID: PMC3031258 DOI: 10.1186/1476-511X-10-8
Source DB: PubMed Journal: Lipids Health Dis ISSN: 1476-511X Impact factor: 3.876
Primers used for real-time PCR analysis
| Gene | Primer | Sequence (5`-3`) |
|---|---|---|
| Sense | CGTTTCCGGGAAGTGTCCTA | |
| Anti-sense | GCTAGAGATGACAAGGAGGATGGA | |
| Sense | GGGAAGTTGATAAAGGATGT | |
| Anti-sense | GATTCGGGCTATGTATGG | |
| Sense | ATCTGGTGGACAAATGGAA | |
| Anti-sense | GAAGCGATACGTGGGAAT | |
| Sense | GGCACGTATGGCAGCAAGAT | |
| Anti-sense | CCCAGAAGTCCCGAGTCAAT | |
| Sense | CCAAGGCATACTTTGAGAAGACAC | |
| Anti-sense | GGAGAAAACAGGCAGAAGGTAGG | |
| Sense | CCCACCAGCAGGATGAATACTAC | |
| Anti-sense | AGGCTATGCCCAATGAGGAA | |
| Sense | AGCGTCAGCAACCGTGTC | |
| Anti-sense | AGCAGCGTGGTCTTCCCT | |
| Sense | TTAAGCCACTCCCAATACA | |
| Anti-sense | GTTGCTCCAAGAATAAATGA | |
| Sense | CAAATAAGGTTGTGGGTAA | |
| Anti-sense | AGGACTGACAGCGAGAAT | |
| Sense | CCCCACAGAGGGTAAGAT | |
| Anti-sense | CCAACCAGGGTGTCAAAT | |
| Sense | TTTGAGCAGCGTCCATTC | |
| Anti-sense | GCAGTCAGTGAGCCTTCG | |
| Sense | TGACGTGCCGCCTGGAGAAA | |
| Anti-sense | AGTGTAGCCCAAGATGCCCTTCAG |
Figure 1Simvastatin inhibits atherosclerotic lesion formation in apoE-/- mice fed a high-fat diet. A, Representative of Oil Red O-stained aortic sections (10× magnification). B, Quantitation of lesion areas in Oil Red O-stained aortic sections by Image-Pro Plus software. C, Quantification of atherosclerotic lesions in the en-face of the aortic arch. ** P < 0.01 versus model group.
Effect of Simvastatin on plasma lipoprotein lipids and apoA-I concentrations in apoE-/- mice
| Model (apoE-/-) | ||
|---|---|---|
Values are the means ± SD. *compared with model, p < 0.05. **compared with model, p < 0.01
Figure 2Effect of simvastatin on endogenous LCAT activity in plasma. LCAT activity was measured as the utilization rate of FC in native plasma. LCAT activity was expressed as nanomoles FC consumed per hr per ml plasma. Data are expressed as means ± SD (n = 10). * P < 0.05 versus model group.
Figure 3Effect of simvastatin on the expression of hepatic genes which play roles in cholesterol transport. A, Effect of simvastatin on the mRNA expression of hepatic genes by real-time PCR. Expression levels of mRNA are indicated as fold differences compared with model mice. B, Effect of simvastatin on the protein expression of hepatic genes by western blots. C, Densitometric quantitation of western blot data (n = 5) by Quantity One software. * P < 0.05, ** P < 0.01 versus model group.
Figure 4Effect of simvastatin on the expression of transporter genes involved in cholesterol efflux in peritoneal macrophages. A, Effect of simvastatin on the mRNA expression of macrophage transporter genes by real-time PCR. Expression levels of mRNA are indicated as fold differences compared with model mice. B, Effect of simvastatin on the protein expression of macrophage transporter genes by western blots. C, Densitometric quantitation of western blot data (n = 5) by Quantity One software. * P < 0.05 versus model group