Santa Cruz Biotechnology now offers a broad range of Adenosine A3-R Activators. The Adenosine receptors are integral membrane proteins that are members of the G protein-coupled receptor family. Activation of Adenosine A3-R inhibits the induction of TNFα and blocks the endotoxin CD14 receptor signal transduction pathway. Adenosine A3-R Activators offered by Santa Cruz activate Adenosine A3-R and, in some cases, other G protein coupled receptors and signal transduction related proteins. View detailed Adenosine A3-R Activator specifications, including Adenosine A3-R Activator CAS number, molecular weight, molecular formula and chemical structure, by clicking on the product name.
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| Product Name | CAS # | Catalog # | QUANTITY | Price | Citations | RATING |
|---|---|---|---|---|---|---|
2-Chloroadenosine | 146-77-0 | sc-203768 | 50 mg | $103.00 | 1 | |
2-Chloroadenosine (CAS 146-77-0) is a synthetic analogue of adenosine, characterized by the substitution of a chlorine atom at the 2-position of the adenine ring. This chemical modification imparts selectivity in its interactions with adenosine receptors. As an activator of the Adenosine A3-R, 2-Chloroadenosine can bind to this G-protein coupled receptor, prompting a series of intracellular events in response. | ||||||
IB-MECA | 152918-18-8 | sc-224020 sc-224020A | 5 mg 25 mg | $282.00 $1239.00 | ||
IB-MECA (CAS 152918-18-8) is a selective agonist for the Adenosine A3-R. With its unique molecular structure, it demonstrates a high affinity for the A3 receptor subtype. When binding to the Adenosine A3-R, IB-MECA triggers a series of intracellular events. Its role as an activator emphasizes its ability to modulate a variety of physiological processes linked to this specific receptor subtype, such as inflammatory response regulation and cell proliferation. | ||||||
Chloro-IB-MECA | 163042-96-4 | sc-257229 | 5 mg | $615.00 | ||
Chloro-IB-MECA (CAS 163042-96-4) is a chemically modified derivative of IB-MECA and acts as a potent agonist for the Adenosine A3-R. Owing to its distinct molecular composition, Chloro-IB-MECA showcases a strong affinity for the A3 receptor subtype. When interacting with the Adenosine A3-R, it initiates a cascade of cellular events. Its function as an activator underscores its capability to influence various physiological actions associated with this particular receptor subtype. | ||||||
HEMADO | 403842-38-6 | sc-203595 sc-203595A | 10 mg 50 mg | $205.00 $865.00 | ||
HEMADO (CAS 403842-38-6) is a specific agonist that demonstrates notable affinity for the Adenosine A3-R. By binding to this receptor, HEMADO triggers a series of cellular responses associated with the A3 receptor subtype. As a chemical entity, its role as an activator highlights its potential to modulate various physiological processes linked with the A3 receptor's function. | ||||||
2-Chloro-N6-cyclopentyladenosine | 37739-05-2 | sc-203460 sc-203460A | 10 mg 50 mg | $141.00 $599.00 | ||
2-Chloro-N6-cyclopentyladenosine (CAS 37739-05-2) is a chemical compound that serves as an agonist for the Adenosine A3-R. Upon binding, it elicits cellular responses related to the A3 receptor subtype. Its affinity for the A3 receptor suggests its potential in scientific research related to understanding and modulating the pathways associated with this receptor's activity. | ||||||
N6-Cyclopentyladenosine | 41552-82-3 | sc-204117 | 50 mg | $120.00 | 2 | |
N6-Cyclopentyladenosine (CAS 41552-82-3) is a selective agonist for the Adenosine A3-R. By binding to this receptor, it elicits cellular responses specific to the A3 subtype. As an activator, it provides valuable insights into the function and potential regulation of Adenosine A3-R in various biological contexts. | ||||||
5′-N-Ethylcarboxamidoadenosine | 35920-39-9 | sc-291071 sc-291071A sc-291071B | 10 mg 15 mg 50 mg | $84.00 $161.00 $231.00 | ||
5'-N-Ethylcarboxamidoadenosine (CAS 35920-39-9) is an agonist known to activate Adenosine A3-R. Its interaction with this receptor can lead to specific cellular responses associated with the A3 subtype. The compound offers a means to explore and understand the functions and potential modulation of the Adenosine A3-R in various biological systems. | ||||||