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Two-photon Imaging of Intracellular Ca2+ Handling and Nitric Oxide Production in Endothelial and Smooth Muscle Cells of an Isolated Rat Aorta
Published on: June 10, 2015
A nifedipine-sensitive smooth muscle cell population is present in the atherosclerotic rabbit aorta
P Pauletto1, G Scannapieco, A C Borrione
1Institute of Clinical Medicine, University of Padova, Italy.
Abstract:
We evaluated the ability of the Ca2+ channel blocker nifedipine to influence the severity of atherosclerotic lesions and the pattern of aortic smooth muscle cell (SMC) differentiation in cholesterol-fed New Zealand White rabbits. The animals were fed a 1% cholesterol-enriched diet for 12 weeks. After 4 weeks of the diet, some rabbits were given nifedipine (20 mg b.i.d.) for another 8 weeks without discontinuation of the cholesterol-enriched diet (experiment 1). Another group of rabbits was treated with nifedipine from the beginning of the cholesterol-enriched diet for the entire 12 weeks (experiment 2). The severity of ahterosclerotic lesions was determined by computerized planimetry, and qualitative effects of nifedipine on SMCs were studied by monoclonal antibodies specific for smooth muscle and nonmuscle myosins. In the aortic media of normal rabbits, these antibodies can identify an SMC population with an "immature" type of myosin pattern; a marked increase in the number of these cells is observed during atherogenesis. In experiment 1, we observed a marked decrease of medial SMCs with the immature type of myosin pattern, without any significant reduction in atherosclerosis severity. In experiment 2, disappearance of the previously mentioned medial SMC population was accompanied by a dramatic slowing of intimal lesion development. These results indicate that nifedipine treatment is effective in reducing atherosclerotic lesions only when given from the beginning of a cholesterol-enriched diet. Delay of nifedipine administration until the fourth week of the cholesterol-enriched diet fails to halt progression of the disease. The observed antiatherosclerotic activity can be attributable to a direct effect of the drug on the medial SMC population, which increases during the course of experimental atherogenesis.
Insights
Nifedipine effectively reduces atherosclerosis in rabbits only when administered early in a cholesterol-rich diet, impacting smooth muscle cell differentiation. Delayed treatment shows no significant benefit in slowing lesion progression.
Area of Science:
- Cardiovascular Research
- Pharmacology
- Cell Biology
Background:
- Atherosclerosis is characterized by the buildup of plaques in arteries.
- Smooth muscle cell (SMC) differentiation patterns change during atherogenesis.
- Calcium channel blockers like nifedipine are potential therapeutic agents.
Purpose of the Study:
- To evaluate nifedipine's effect on atherosclerotic lesion severity.
- To assess nifedipine's impact on aortic smooth muscle cell differentiation patterns.
- To determine the optimal timing for nifedipine intervention in experimental atherosclerosis.
Main Methods:
- Cholesterol-fed New Zealand White rabbits were used.
- Nifedipine was administered either from the start or after 4 weeks of a cholesterol diet.
- Atherosclerotic lesion severity was quantified using computerized planimetry.
- Monoclonal antibodies identified smooth muscle and nonmuscle myosin patterns in SMCs.
Main Results:
- Early nifedipine treatment (from diet start) significantly slowed intimal lesion development.
- Delayed nifedipine treatment (after 4 weeks) did not reduce atherosclerosis severity.
- Nifedipine decreased the population of medial SMCs with an immature myosin pattern, particularly with early administration.
Conclusions:
- Nifedipine exhibits anti-atherosclerotic effects primarily when initiated early in the disease process.
- The drug's efficacy is linked to its direct impact on medial smooth muscle cell populations.
- Timing of nifedipine administration is critical for its therapeutic benefit in experimental atherosclerosis.
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