Date published: 2025-11-22

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L-type calcium channel α1D Inhibitors

Chemical inhibitors of L-type calcium channel α1D operate by directly targeting the channel's ability to conduct calcium ions across the cell membrane. Nifedipine, for instance, binds to the dihydropyridine receptor that is an integral part of the L-type calcium channel α1D, leading to a conformational change that prevents calcium from entering the cell through this channel. Similarly, verapamil inhibits the L-type calcium channel α1D by blocking its voltage-dependent mechanism, which is essential for the channel's opening and subsequent calcium flow into cardiac and smooth muscles. Diltiazem takes a comparable approach, binding to the channel and diminishing calcium currents, which are critical for muscle contraction and signal transduction in the heart and smooth muscle tissues.

Further inhibitors such as amlodipine and isradipine exhibit selectivity towards L-type calcium channel α1D, ensuring that calcium ion influx is specifically inhibited in the vascular smooth muscle where these channels are prevalent. Nicardipine and felodipine target the channel similarly, focusing on impeding the influx of calcium ions that is essential for various physiological processes in cardiac and smooth muscles. In the context of cerebral vasculature, nimodipine provides targeted inhibition of L-type calcium channel α1D, affording a degree of selectivity that benefits the modulation of calcium entry in this specific vascular territory. Lacidipine, azelnidipine, and benidipine also block the L-type calcium channel α1D, but with a pronounced selectivity for vascular smooth muscle cells, which is pivotal for controlling the dynamics of calcium-dependent processes in these cells. Lastly, clevidipine inhibits the L-type calcium channel α1D by binding to the channel and obstructing the passage of calcium ions, which leads to vasodilation due to the reduced intracellular calcium levels. Each of these chemicals acts by binding to various sites on the L-type calcium channel α1D or affecting its voltage-dependent activity, ensuring the inhibition is specific to the functioning of this particular protein.

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Items 1 to 10 of 11 total

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Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

Nifedipine

21829-25-4sc-3589
sc-3589A
1 g
5 g
$58.00
$170.00
15
(1)

Blocks the L-type calcium channel α1D by binding to the dihydropyridine receptor, impeding calcium influx and inhibiting the channel.

Verapamil

52-53-9sc-507373
1 g
$367.00
(0)

Inhibits L-type calcium channel α1D by blocking the voltage-dependent L-type channels of cardiac and smooth muscles.

Diltiazem

42399-41-7sc-204726
sc-204726A
1 g
5 g
$209.00
$464.00
4
(1)

Binds to and inhibits L-type calcium channel α1D, reducing calcium currents in cardiac and smooth muscle tissues.

Amlodipine

88150-42-9sc-200195
sc-200195A
100 mg
1 g
$73.00
$163.00
2
(1)

Selectively inhibits L-type calcium channel α1D by blocking calcium ion influx through these channels in vascular smooth muscle.

Isradipine

75695-93-1sc-201467
sc-201467A
10 mg
50 mg
$86.00
$318.00
1
(1)

Acts as an antagonist of the L-type calcium channel α1D, selectively inhibiting calcium influx and channel activity.

Nicardipine hydrochloride

54527-84-3sc-202731
sc-202731A
1 g
5 g
$32.00
$81.00
5
(2)

Inhibits L-type calcium channel α1D by specifically blocking the influx of calcium ions in cardiac and smooth muscle.

Felodipine

72509-76-3sc-201483
sc-201483A
10 mg
50 mg
$89.00
$218.00
1
(1)

Targets and inhibits L-type calcium channel α1D by blocking the channel, thereby reducing calcium entry into cells.

Nimodipine

66085-59-4sc-201464
sc-201464A
100 mg
1 g
$60.00
$301.00
2
(1)

Specifically inhibits L-type calcium channel α1D by blocking the channel, which is more selective to cerebral vasculature.

trans Lacidipine

103890-78-4sc-213066
10 mg
$153.00
(0)

Inhibits the L-type calcium channel α1D by blocking the channel, with high vascular selectivity.

Azelnidipine

123524-52-7sc-252395
10 mg
$86.00
(1)

Blocks the L-type calcium channel α1D by inhibiting calcium ion transmembrane influx.