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January 1, 2003Japanese Heart Journal23 citations

Inhibitory Effects of Carvedilol on Calcium Channels in Vascular Smooth Muscle Cells.

TNToshiaki NakajimaJMJi MaHIHaruko Iida

Key Result

Carvedilol, but not metoprolol, inhibited voltage-dependent L-type Ca2+ current and agonist-induced Ca2+ entry in vascular smooth muscle cells.

Key Points

  • This research aims to clarify the mechanisms by which carvedilol affects calcium mobilization and calcium channel currents in vascular smooth muscle cells.
  • Examined the effects of carvedilol on intracellular calcium ([Ca2+]i) and L-type calcium currents (ICa.L) using patch clamp techniques in rat embryonic aortic smooth muscle cells.
  • Used fura-2 AM to measure [Ca2+]i and compared findings with metoprolol.
  • Investigated the inhibition of calcium entry and the concentration-dependent effects of carvedilol on ICa.L.
  • Carvedilol significantly suppressed sustained [Ca2+]i rise due to calcium entry, more effectively than nilfedipine and nicardipine (both at 10 μM).
  • Reversible concentration-dependent inhibition of ICa.L was observed with carvedilol (0.2-10 μM), showing no change in current-voltage relationships.
  • Carvedilol shifted the steady-state inactivation of ICa.L to more negative potentials, indicating voltage-dependent inhibition.

Structured PICO

Does carvedilol inhibit calcium channels in vascular smooth muscle cells?

P
Population
Rat embryonic aortic smooth muscle cells (A7r5)
I
Intervention
Carvedilol (0.2-10 microM)
C
Comparator
Metoprolol, nifedipine, and nicardipine (10 microM)
O
Outcome
Effects on [Ca2+]i mobilization and voltage-dependent L-type Ca2+ current (ICa.L)surrogate

Carvedilol inhibits L-type calcium channels and agonist-induced calcium entry in vascular smooth muscle cells, providing a potential mechanism for its vasorelaxing and antiproliferative effects.

Abstract

Carvedilol has hypotensive effects and inhibits agonist-induced cell proliferation of vascular smooth muscle and then prevents vascular remodeling. However, the basic mechanisms have not been clarified. We examined the effects of carvedilol on Ca2+i mobilization and voltage-dependent L-type Ca2+ current (ICa.L) in vascular smooth muscle cells, and compared them with metoprolol. Ca2+i was measured using fura-2 AM and patch clamp techniques in rat embryonic aortic smooth muscle cells (A7r5). In the presence of extracellular Ca2+, vasopressin and endothelin-1 increased Ca2+i due first to the Ca2+ release from store sites, and subsequently Ca2+ entry. Carvedilol did not inhibit the Ca2+ release, but significantly suppressed the sustained rise due to Ca2+ entry concentration-dependently. Nilfedipine and nicardipine (10 microM) partly inhibited the sustained rise, but carvedilol inhibited it more effectively than the Ca2+ channel blockers. Under voltage clamp conditions, carvedilol (0.2-10 microM) reversibly inhibited the ICa.L concentration-dependently without any changes in the current-voltage relationships of ICa.L. Carvedilol shifted the steady-state inactivation for ICa.L to more negative potentials and inhibited ICa.L in a voltage-dependent manner. In addition, carvedilol did not inhibit Ca2+ release from store sites induced by thapsigargin, but significantly inhibited the sustained rise due to capacitative Ca2+ entry unrelated to ICa.L. In contrast, metoprolol did not mimic these effects of carvedilol. These results provide evidence that carvedilol inhibits ICa.L and may also inhibit the channels for agonist (vasopressin and endothelin-1)-induced Ca2+ entry in vascular smooth muscle cells, which might contribute to the vasorelaxing and antiproliferative effects of carvedilol.

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Cite This Study

Nakajima et al. (2003) studied this question. Carvedilol vs. Metoprolol was evaluated on Effects on [Ca2+]i mobilization and voltage-dependent L-type Ca2+ current (ICa.L). Carvedilol, but not metoprolol, inhibited voltage-dependent L-type Ca2+ current and agonist-induced Ca2+ entry in vascular smooth muscle cells.

synapsesocial.com/papers/6a1ff15ac1b320180d0dac7fhttps://doi.org/10.1536/jhj.44.963
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