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Published on: December 23, 2014
Cilostazol prevents endothelin-induced smooth muscle constriction and proliferation
Yoshifumi Kawanabe1, Maki Takahashi, Xingjian Jin
1Department of Pharmacology, The University of Toledo, Toledo, Ohio, United States of America.
Insights
Cilostazol selectively inhibits endothelin-induced vasoconstriction and cell proliferation by blocking extracellular calcium influx. This phosphodiesterase inhibitor shows promise for treating endothelin-associated diseases like stroke.
Area of Science:
- Cardiovascular Pharmacology
- Vascular Biology
- Stroke Pathophysiology
Background:
- Endothelin is a potent peptide implicated in stroke recovery through vasoconstriction and proliferation.
- Elevated endothelin levels complicate stroke recovery in patients and animal models.
- The effects of cilostazol on endothelin-mediated pathways were previously unexplored.
Purpose of the Study:
- To investigate the dual-antagonizing effects of cilostazol on endothelin-induced vasoconstriction and cell proliferation.
- To elucidate the mechanism underlying cilostazol's effects on endothelin signaling.
- To assess the selectivity of cilostazol's actions compared to other phosphodiesterase inhibitors.
Main Methods:
- In vitro studies using primary mouse vascular smooth muscle cells.
- Ex vivo analysis of mouse femoral and basilar arteries.
- Assessment of endothelin-induced calcium influx and release.
- Evaluation of cAMP-dependent protein kinase (PKA) involvement.
Main Results:
- Cilostazol demonstrated dual inhibition of endothelin-induced vasoconstriction and cell proliferation.
- The inhibitory effects were mediated by blocking extracellular calcium influx, not intraorganellar calcium release.
- Cilostazol's anti-proliferative activity was confirmed to be downstream of PKA.
- Sildenafil, another phosphodiesterase inhibitor, selectively inhibited vasoconstriction but not proliferation.
Conclusions:
- Cilostazol exhibits selective dual-antagonizing effects on endothelin-mediated vasoconstriction and proliferation.
- The mechanism involves the blockade of extracellular calcium influx, crucial for both processes.
- Cilostazol is a potential therapeutic agent for endothelin-associated vascular diseases, including stroke.
Abstract:
Cilostazol is a phosphodiesterase inhibitor that has been shown to inhibit platelet activation. Endothelin is known to be the most potent endogenous growth promoting and vasoactive peptide. In patients and animal models with stroke, the level of circulating endothelin increases and complicates the recovery progress contributed by vascular constriction (an immediate pathology) and vascular proliferation (a long-term pathology). However, the effects of cilostazol on endothelin have not been explored. To demonstrate the dual-antagonizing effects of cilostazol on vasoconstriction and cell proliferation induced by endothelin, we used primary culture of mouse vascular smooth muscle cells in vitro, mouse femoral artery ex vivo, and intracranial basilar artery ex vivo. We show that the dual-inhibition effects of cilostazol are mediated by blocking endothelin-induced extracellular calcium influx. Although cilostazol does not inhibit endothelin-induced intraorganellar calcium release, blockade of extracellular calcium influx is sufficient to blunt endothelin-induced vasoconstriction. We also show that cilostazol inhibits endothelin-induced cellular proliferation by blocking extracellular calcium influx. Inhibition of cAMP-dependent protein kinase (PKA) can block anti-proliferation activity of cilostazol, confirming the downstream role of PKA in cellular proliferation. To further demonstrate the selectivity of the dual-antagonizing effects of cilostazol, we used a different phosphodiesterase inhibitor. Interestingly, sildenafil inhibits endothelin-induced vasoconstriction but not cellular proliferation in smooth muscle cells. For the first time, we show selective dual-antagonizing effects of cilostazol on endothelin. We propose that cilostazol is an excellent candidate to treat endothelin-associated diseases, such as stroke.
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