Date published: 2025-12-5

1-800-457-3801

SCBT Portrait Logo
Seach Input

alpha2B-AR Inhibitors

Santa Cruz Biotechnology now offers a broad range of alpha2B-AR inhibitors for use in various applications. Alpha2B-AR inhibitors are essential tools in the study of adrenergic receptor function, particularly within the alpha-adrenergic receptor family. The alpha2B subtype is involved in a variety of physiological processes, including the regulation of vascular tone, neurotransmitter release, and cellular signaling pathways. By selectively targeting the alpha2B-AR, researchers can delve into the specific roles this receptor plays in both central and peripheral nervous system functions. Alpha2B-AR inhibitors are widely used in scientific research to explore the intricate mechanisms of receptor-ligand interactions, receptor desensitization, and the complex downstream signaling cascades that are triggered by receptor activation. These inhibitors are particularly valuable in experiments designed to differentiate the functional roles of the various alpha2 adrenergic receptor subtypes, allowing scientists to pinpoint the unique contributions of alpha2B-AR to physiological and pathophysiological processes. Moreover, alpha2B-AR inhibitors are frequently employed in high-throughput screening assays, aiding in the identification of new compounds that modulate adrenergic signaling. This is crucial for advancing the understanding of receptor dynamics and the broader implications of alpha2B-AR activity in cellular behavior. The application of these inhibitors extends across a range of experimental models, from in vitro assays to more complex in vivo studies, making them indispensable in the pursuit of knowledge about adrenergic receptor biology. View detailed information on our available alpha2B-AR inhibitors by clicking on the product name.

Items 1 to 10 of 14 total

Display:

Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

Prazosin hydrochloride

19237-84-4sc-204858
100 mg
$92.00
4
(1)

Prazosin hydrochloride functions as an antagonist at the alpha2B-adrenergic receptor, exhibiting unique binding dynamics due to its structural conformation. The compound's interactions involve hydrophobic and hydrogen bonding, which stabilize its receptor complex. This results in a notable alteration of downstream signaling pathways, particularly affecting calcium ion influx and neurotransmitter release. Its kinetic profile suggests a competitive inhibition mechanism, influencing receptor desensitization and internalization processes.

Yohimbine hydrochloride

65-19-0sc-204412
sc-204412A
sc-204412B
1 g
5 g
25 g
$50.00
$168.00
$520.00
2
(1)

Yohimbine hydrochloride acts as an antagonist at the alpha2B-adrenergic receptor, characterized by its selective binding affinity and unique allosteric modulation. The compound engages in specific electrostatic interactions that enhance receptor conformational changes, leading to altered G-protein coupling efficiency. Its reaction kinetics indicate a rapid onset of action, influencing intracellular signaling cascades and impacting cyclic AMP levels. This dynamic behavior contributes to its distinct physiological effects.

Rauwolscine • HCl

6211-32-1sc-200151
100 mg
$105.00
(1)

Rauwolscine hydrochloride functions as an antagonist at the alpha2B-adrenergic receptor, exhibiting a unique binding profile that promotes receptor desensitization. Its molecular structure facilitates specific hydrophobic interactions, which stabilize the receptor-ligand complex. This compound influences downstream signaling pathways by modulating calcium ion influx and altering neurotransmitter release dynamics. The kinetics of its receptor engagement suggest a prolonged interaction, impacting cellular responsiveness.

ARC 239 dihydrochloride

67339-62-2sc-203518
5 mg
$125.00
4
(0)

ARC 239 dihydrochloride acts as a selective modulator of the alpha2B-adrenergic receptor, characterized by its ability to induce conformational changes in the receptor structure. This compound engages in specific ionic and hydrophobic interactions, enhancing receptor affinity and altering G-protein coupling efficiency. Its unique reaction kinetics reveal a rapid onset of action, influencing intracellular signaling cascades and affecting second messenger systems, thereby modulating cellular activity.

Idazoxan hydrochloride

79944-56-2sc-204006
sc-204006A
10 mg
50 mg
$128.00
$505.00
2
(0)

Idazoxan hydrochloride functions as a selective antagonist of the alpha2B-adrenergic receptor, exhibiting unique binding dynamics that stabilize the receptor in an inactive conformation. This compound demonstrates distinct allosteric modulation, influencing ligand binding and receptor desensitization. Its interaction profile includes specific hydrogen bonding and van der Waals forces, which contribute to its nuanced effects on downstream signaling pathways and cellular responsiveness.

Efaroxan hydrochloride

89197-00-2sc-203573
sc-203573A
10 mg
50 mg
$125.00
$525.00
(0)

Efaroxan hydrochloride acts as a selective antagonist for the alpha2B-adrenergic receptor, characterized by its unique ability to disrupt receptor dimerization and alter conformational states. This compound engages in specific electrostatic interactions and hydrophobic contacts, enhancing its binding affinity. Its kinetic profile reveals a rapid onset of action, influencing receptor recycling and internalization, thereby modulating cellular signaling cascades with precision.

Atipamezole hydrochloride

104075-48-1sc-291914
sc-291914A
10 mg
50 mg
$148.00
$609.00
1
(1)

Atipamezole hydrochloride functions as a selective antagonist for the alpha2B-adrenergic receptor, exhibiting a unique mechanism of action through competitive inhibition. It demonstrates distinct binding kinetics, characterized by a high affinity for the receptor's active site, which stabilizes the inactive conformation. This compound also influences downstream signaling pathways by preventing receptor-mediated inhibition of neurotransmitter release, thereby altering synaptic dynamics and neuronal excitability.

(R)-(+)-m-Nitrobiphenyline oxalate

945618-97-3sc-204226
sc-204226A
10 mg
50 mg
$250.00
$850.00
1
(0)

(R)-(+)-m-Nitrobiphenyline oxalate acts as a selective modulator of the alpha2B-adrenergic receptor, showcasing unique molecular interactions that enhance receptor selectivity. Its binding profile reveals a distinct affinity for specific receptor conformations, influencing allosteric sites and altering receptor dynamics. This compound exhibits notable reaction kinetics, facilitating rapid dissociation and re-association with the receptor, thereby impacting downstream signaling cascades and cellular responses.

Asenapine

65576-45-6sc-210839
10 mg
$360.00
(0)

Asenapine functions as a selective antagonist at the alpha2B-adrenergic receptor, characterized by its unique ability to stabilize specific receptor conformations. This compound engages in intricate molecular interactions that modulate receptor activity, influencing G-protein coupling efficiency. Its kinetic profile demonstrates a slow dissociation rate, allowing for prolonged receptor occupancy and sustained modulation of intracellular signaling pathways, ultimately affecting cellular behavior and responsiveness.

Terazosin Hydrochloride dihydrate

70024-40-7sc-205857
sc-205857A
50 mg
250 mg
$112.00
$444.00
(0)

Terazosin Hydrochloride dihydrate acts as a selective antagonist at the alpha2B-adrenergic receptor, exhibiting unique binding dynamics that enhance receptor desensitization. Its molecular interactions involve hydrogen bonding and hydrophobic contacts, which influence receptor conformation and downstream signaling cascades. The compound's affinity for the receptor is characterized by a distinct kinetic profile, allowing for nuanced modulation of adrenergic signaling pathways, impacting cellular responses and regulatory mechanisms.