Adenosine receptors
Adenosine receptors are cell surface receptors that respond to adenosine, playing a role in cardiovascular function, sleep regulation, and neuroprotection. Reference standards, including xanthine-based antagonists related to caffeine, support receptor binding assays, structure-activity studies, and cardiovascular research. Sourcing from a dedicated supplier means every compound, from a well-characterized antagonist to a less common analog, arrives with verified identity, documented purity, and a certificate of analysis. These standards are also relevant to sleep and stimulant research given their link to caffeine.
Showing 1–16 of 175 results
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(2R,3R)-2,3-Bis(phenylmethoxy)butanedioic Acid
CAS Number: 138794-81-7
Molecular Formula: C18H1
Catalogue Number: RCLS2L112918
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(R)-1-Aminoindane Hydrochloride
CAS Number: 10305-73-4
Molecular Formula: C9 H11 N . Cl H
Catalogue Number: RCLS2L104811
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(S)-(+)-3-Hydroxytetrahydrofuran
CAS Number: 86087-23-2
Molecular Formula: C4 H8 O2
Catalogue Number: RCLS2L153139
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1-(6-Amino-9-Beta-D-ribofuranosyl-9H-purin-2-yl)-1H-pyrazole-4-carboxylic AcidEthyl Ester
CAS Number: 313348-16-2
Molecular Formula: C16H19N7O6
Catalogue Number: RCLS2L105797
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1-Allyl-3,7-dimethyl-8-p-sulfophenylxanthine Sodium Salt
CAS Number: 149981-25-9
Molecular Formula: C16 H15 N4 O5 S . Na
Catalogue Number: RCLS2L103183
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1-Cyclohexyl-5-(3-butenyl)tetrazole
CAS Number: N/A
Molecular Formula: C11 H18 N4
Catalogue Number: RCLS2L125032
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1-Cyclohexyl-5-(tetrahydrofuran-2-yl)-1H-tetrazole
CAS Number: N/A
Molecular Formula: C11 H18 N4 O
Catalogue Number: RCLS2L125609
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1-Cyclopentenecarboxylic Acid
CAS Number: 1560-11-8
Molecular Formula: C6H8O2
Catalogue Number: RCLS2L125668
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1-Methyl Adenosine
CAS Number: 15763-06-1
Molecular Formula: C11H15N5O4
Catalogue Number: RCLS2L161320
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1-Methyl Adenosine-d3
CAS Number: N/A
Molecular Formula: C11H12D3N5O4
Catalogue Number: RCLS2L161321
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1,2,3,4,5,6-Benzenehexamine Trihydrochloride
CAS Number: 126521-82-2
Molecular Formula: C6H12N6 • 3HCl
Catalogue Number: RCLS2L109107
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1,3-Dipropyl-7-methylxanthine
CAS Number: 31542-63-9
Molecular Formula: C12 H18 N4 O2
Catalogue Number: RCLS2L137679
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1,3-Dipropyl-8-p-sulfophenylxanthine
CAS Number: 89073-57-4
Molecular Formula: C17 H20 N4 O5 S
Catalogue Number: RCLS2L137691
Adenosine Receptor Standards for Pharmacology and Neuroscience Research
Reliable adenosine receptor standards matter across cardiovascular, neuroscience, and sleep research, where confirming exactly how a compound interacts with these receptors depends on starting with a certified, well-characterized reference material.
Clinivex supplies a wide range of adenosine receptor reference standards, including xanthine-based antagonists and adenosine analogs, each backed by a certificate of analysis. Our technical team can help source less common compounds through our global supplier network when your study calls for a variant outside our standard catalogue.
As an ISO 9001:2015 and GMP certified supplier working with laboratories and pharmaceutical researchers across the USA and Canada, we focus on accurate documentation and dependable delivery for every order. Many of the xanthine-based compounds in this catalogue are also of interest to labs studying caffeine and other stimulants, so we can help identify related standards beyond the primary compound you’re sourcing.
Receptor pharmacology across other neurotransmitter systems is covered under acetylcholine receptors, a related category. Broader drug development work involving receptor targets is a recurring subject within pharmaceutical and biotech research.
Contact our team to request a quote or check availability for a specific adenosine receptor standard.
why Choose Clinivex?
At Clinivex, we earn trust by delivering impeccable service, expert guidance, and reliable solutions that drive long-term success. With a skilled team and customer-first approach, we stand as a leading pharmaceutical reference standards supplier in the USA and Canada.
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Frequently Asked Questions
Caffeine works partly by blocking adenosine receptors, which is why xanthine-based compounds structurally related to caffeine are commonly studied as adenosine receptor antagonists.
Cardiovascular research, sleep and stimulant studies, and neuroprotection research all draw on adenosine receptor standards to understand how this signaling pathway is activated or blocked.
There are four main subtypes, A1, A2A, A2B, and A3, each distributed differently across body tissues and producing different physiological effects when activated.
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