Date published: 2026-5-17

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MS4A4C Activators

MS4A4C Activators primarily consist of chemical compounds that have a direct or indirect impact on calcium signaling pathways, given that MS4A4C is a probable calcium channel protein. These activators can enhance MS4A4C's functional activity by modulating intracellular calcium levels or inducing compensatory responses in calcium signaling.

The first group of compounds, including Loperamide, Carbachol, and Ryanodine, interact with receptors or channels that regulate calcium signaling. This interaction can indirectly enhance the functional activity of MS4A4C by modulating intracellular calcium levels. The second group, comprising Nifedipine, Verapamil, Gadolinium chloride, and SKF-96365, are calcium channel blockers. Their activity could trigger a compensatory response in calcium signaling, leading to an indirect enhancement of MS4A4C activity. Dantrolene and Thapsigargin, by contrast, inhibit the release of calcium from intracellular stores, leading to the upregulation of other calcium channels and indirectly enhancing the activity of MS4A4C. Finally, Bay K 8644, FPL 64176, and 2-APB are compounds that potentiate calcium signaling and could thereby directly enhance the functional activity of MS4A4C.

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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
$59.00
$173.00
15
(1)

Nifedipine is a calcium channel blocker. It is possible that its activity could lead to a compensatory increase in calcium signaling, indirectly enhancing the functional activity of MS4A4C, a potential calcium channel protein.

Verapamil

52-53-9sc-507373
1 g
$374.00
(0)

Verapamil is another calcium channel blocker. Similar to Nifedipine, it could potentially induce a compensatory response in calcium signaling, indirectly enhancing the functional activity of MS4A4C.

Dantrolene

7261-97-4sc-500165
25 mg
$350.00
7
(0)

Dantrolene is a ryanodine receptor antagonist which can influence calcium signaling. By inhibiting the release of calcium, it can lead to an upregulation of other calcium channels, potentially enhancing the activity of MS4A4C.

Thapsigargin

67526-95-8sc-24017
sc-24017A
1 mg
5 mg
$136.00
$446.00
114
(2)

Thapsigargin is a non-competitive inhibitor of the SERCA ATPase, which modulates intracellular calcium levels. This can induce a compensatory response that enhances the functional activity of other calcium channels, such as MS4A4C.

(±)-Bay K 8644

71145-03-4sc-203324
sc-203324A
sc-203324B
1 mg
5 mg
50 mg
$84.00
$196.00
$817.00
(0)

Bay K 8644 is a calcium channel agonist that can potentiate calcium signaling. This could potentially enhance the functional activity of MS4A4C, a calcium channel protein.

Gadolinium(III) chloride

10138-52-0sc-224004
sc-224004A
5 g
25 g
$153.00
$357.00
4
(1)

Gadolinium chloride is a non-specific calcium channel blocker. It's activity could potentially trigger a compensatory increase in calcium signaling, indirectly enhancing the functional activity of MS4A4C.

Ryanodine

15662-33-6sc-201523
sc-201523A
1 mg
5 mg
$223.00
$799.00
19
(2)

Ryanodine modulates ryanodine receptors that control calcium release from the endoplasmic reticulum into the cytosol. It can potentially enhance the functional activity of MS4A4C by increasing intracellular calcium concentrations.

Carbachol

51-83-2sc-202092
sc-202092A
sc-202092C
sc-202092D
sc-202092B
sc-202092E
1 g
10 g
25 g
50 g
100 g
250 g
$122.00
$281.00
$388.00
$683.00
$1428.00
$3060.00
12
(2)

Carbachol is a cholinergic agonist that affects calcium signaling. It can indirectly enhance the functional activity of MS4A4C by modulating intracellular calcium levels.

FPL-64176

120934-96-5sc-201491
5 mg
$83.00
1
(1)

FPL 64176 is a calcium channel agonist that can potentiate calcium signaling. This could potentially enhance the functional activity of MS4A4C, a calcium channel protein.

SK&F 96365

130495-35-1sc-201475
sc-201475B
sc-201475A
sc-201475C
5 mg
10 mg
25 mg
50 mg
$103.00
$158.00
$397.00
$656.00
2
(1)

SKF-96365 is an inhibitor of receptor-mediated calcium entry. Its activity might induce a compensatory increase in the functional activity of intracellular calcium channels, such as MS4A4C.