Date published: 2026-5-9

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CKR-2B Inhibitors

Santa Cruz Biotechnology now offers a broad range of CKR-2B Inhibitors for use in various applications. CKR-2B, also known as CCR2B, is a chemokine receptor that plays a significant role in the regulation of immune responses, particularly in the recruitment and migration of monocytes to sites of inflammation. CKR-2B Inhibitors are critical tools in scientific research, as they allow researchers to investigate the specific mechanisms by which this receptor modulates immune cell trafficking and inflammatory responses. By blocking CKR-2B activity, scientists can study its role in various biological processes, including immune cell signaling, inflammation, and the development of immune-related conditions. These inhibitors are widely used in studies aimed at understanding the pathways involved in immune cell migration and the broader implications of chemokine receptor signaling in health and disease. In addition to their use in immunology research, CKR-2B Inhibitors are employed in studies exploring the receptor's role in other physiological processes, such as tissue repair and fibrosis. The availability of these inhibitors has significantly advanced research in fields such as immunology, cell biology, and molecular biology, providing essential tools for dissecting the complex interactions between chemokines and their receptors. By enabling the precise modulation of CKR-2B activity, these inhibitors help researchers gain deeper insights into the regulatory networks that govern immune responses and the potential for targeting these pathways in future experimental studies. View detailed information on our available CKR-2B Inhibitors by clicking on the product name.
Product NameCAS #Catalog #QUANTITYPriceCitationsRATING

RS 102895 Hydrochloride

300815-41-2sc-204243
sc-204243A
10 mg
50 mg
$128.00
$505.00
5
(1)

RS 102895 Hydrochloride functions as a selective CKR-2B antagonist, exhibiting unique binding affinity through its tailored molecular architecture. The compound's intricate stereochemistry facilitates precise interactions with receptor sites, modulating downstream signaling pathways. Its hydrophilic and lipophilic balance enhances membrane permeability, while its conformational flexibility allows for adaptive binding, influencing receptor activation dynamics and overall biological response.

CCR2 Antagonist

445479-97-0sc-202525
5 mg
$305.00
34
(2)

CCR2 Antagonist operates as a CKR-2B inhibitor, characterized by its unique structural motifs that enable specific receptor engagement. The compound's distinct electronic properties promote selective interactions, influencing conformational changes in the receptor. Its kinetic profile reveals a rapid association and dissociation rate, allowing for dynamic modulation of signaling cascades. Additionally, the compound's solubility characteristics enhance its distribution in various environments, impacting its overall reactivity and interaction potential.

INCB 3284 dimesylate

887401-93-6sc-362751
sc-362751A
10 mg
50 mg
$205.00
$865.00
(0)

INCB 3284 dimesylate functions as a CKR-2B modulator, distinguished by its intricate stereochemistry that facilitates targeted binding to receptor sites. The compound exhibits unique hydrogen bonding capabilities, which stabilize its interactions and influence downstream signaling pathways. Its reactivity is further enhanced by specific steric effects, allowing for nuanced alterations in receptor conformation. Additionally, the compound's hydrophilic-lipophilic balance contributes to its versatile behavior in diverse chemical environments.

RS 504393

300816-15-3sc-204245
10 mg
$209.00
4
(1)

RS 504393 acts as a CKR-2B modulator, characterized by its selective affinity for receptor subtypes, which promotes distinct conformational changes. The compound's unique electronic distribution enhances its interaction with key amino acid residues, facilitating effective signal transduction. Its kinetic profile reveals rapid binding and dissociation rates, allowing for dynamic modulation of receptor activity. Furthermore, RS 504393's solubility properties enable it to navigate various biological matrices efficiently.