212329-37-8
Chemical Structure
MRS 1523
- CAS No.: 212329-37-8
- Formula:C23H29NO3S
- Molecular Weight:399.55
IUPAC Name: propyl 6-ethyl-5-((ethylthio)carbonyl)-2-phenyl-4-propylnicotinate
InChIKey: UUSHFEVEROROSP-UHFFFAOYSA-N
SMILES: O=C(OCCC)C1=C(C(C(SCC)=O)=C(N=C1C2=CC=CC=C2)CC)CCC
Biological Activity: MRS 1523 is a potent and selective adenosine A3 receptor antagonist with Ki values of 18.9 nM and 113 nM for human and rat A3 receptors, respectively. In rat this corresponds to selectivities of 140- and 18-fold vs A1 and A2A receptors, respectively. MRS 1523 can exert antihyperalgesic effect through N-type Ca channel block and action potential inhibition in isolated rat dorsal root ganglion (DRG) neurons[1][2].
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MRS 1523 | 99.97% | MRS 1523 is a potent and selective adenosine A3 receptor antagonist with Ki values of 18.9 nM and 113 nM for human and rat A3 receptors, respectively. In rat this corresponds to selectivities of 140- and 18-fold vs A1 and A2A receptors, respectively. MRS 1523 can exert antihyperalgesic effect through N-type Ca channel block and action potential inhibition in isolated rat dorsal root ganglion (DRG) neurons. | ||||||||||||||||||||
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MRS 1523 (Standard) | ≥98% | MRS 1523 (Standard) is the analytical standard of MRS 1523. This product is intended for research and analytical applications. MRS 1523 is a potent and selective adenosine A3 receptor antagonist with Ki values of 18.9 nM and 113 nM for human and rat A3 receptors, respectively. In rat this corresponds to selectivities of 140- and 18-fold vs A1 and A2A receptors, respectively. MRS 1523 can exert antihyperalgesic effect through N-type Ca channel block and action potential inhibition in isolated rat dorsal root ganglion (DRG) neurons. | ||||||||||||||||||||
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- [1]. Li AH, et al. Structure-activity relationships and molecular modeling of 3, 5-diacyl-2,4-dialkylpyridine derivatives as selective A3 adenosine receptor antagonists.J Med Chem. 1998 Aug 13;41(17):3186-201. [Content Brief]
- [2]. Coppi E, et al. Adenosine A3 receptor activation inhibits pronociceptive N-type Ca2+ currents and cell excitability in dorsal root ganglion neurons.Pain. 2019 May;160(5):1103-1118. [Content Brief]
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