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Competitive inhibitor of poly(ADP-ribose) polymerase (PARP) (IC50 values are 0.20 and 0.24 μM for PARP-1 and PARP-2 respectively). Neuroprotective; reduces neuronal cell death in models of cerebral ischemia in vivo and in vitro. Brain penetrant.
|Storage||Store at +4°C|
The technical data provided above is for guidance only. For batch specific data refer to the Certificate of Analysis.
Tocris products are intended for laboratory research use only, unless stated otherwise.
|Solvent||Max Conc. mg/mL||Max Conc. mM|
Preparing Stock Solutions
The following data is based on the product molecular weight 182.24. Batch specific molecular weights may vary from batch to batch due to the degree of hydration, which will affect the solvent volumes required to prepare stock solutions.
|Concentration / Solvent Volume / Mass||1 mg||5 mg||10 mg|
|0.4 mM||13.72 mL||68.59 mL||137.18 mL|
|2 mM||2.74 mL||13.72 mL||27.44 mL|
|4 mM||1.37 mL||6.86 mL||13.72 mL|
|20 mM||0.27 mL||1.37 mL||2.74 mL|
References are publications that support the biological activity of the product.
Nakajima et al (2005) A newly synthesized poly(ADP-ribose) polymerase inhibitor, DR2313 [2-Methyl-3,5,7,8-tetrahydrothiopyrano[4,3-d]-pyrimidine-4-one]: pharmacological profiles, neuroprotective effects, and therapeutic time window in cerebral ischemia in rats. J.Pharmacol.Exp.Ther. 312 472 PMID: 15466246
Jagtap and Szabo (2005) Poly(ADP-ribose) polymerase and the therapeutic effects of its inhibitors. Nat.Rev.Drug Discov. 4 421 PMID: 15864271
If you know of a relevant reference for DR 2313, please let us know.
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Keywords: DR 2313, DR 2313 supplier, Potent, PARP, inhibitors, inhibits, PolyADP-ribose, Polymerase, Polymerases, DR2313, Poly(ADP-ribose), 2496, Tocris Bioscience
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Cell Cycle & DNA Damage Repair Poster
In normal cells, each stage of the cell cycle is tightly regulated, however in cancer cells many genes and proteins that are involved in the regulation of the cell cycle are mutated or over expressed. Adapted from the 2015 Cancer Product Guide, Edition 3, this poster summarizes the stages of the cell cycle and DNA repair. It also highlights strategies for enhancing replicative stress in cancer cells to force mitotic catastrophe and cell death.