Mesaconitine (Standard)
Mesaconitine (Standard) is the analytical standard of Mesaconitine. This product is intended for research and analytical applications. Mesaconitine is a nitric oxide synthase activator. Mesaconitine drives extracellular Na+ and Ca2+ influx into endothelial cells, increases intracellular Na+ and Ca2+ concentrations, and triggers nitric oxide release. Mesaconitine is applicable for pain-related research.
Nur für Forschungszwecke. Wir verkaufen nicht an Patienten.
- Reinheit: 95%
- CAS. Nr.: 2752-64-9
- Formel: C33H45NO11
- Molecular Weight:631.71
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Speicherung:
Please store the product under the recommended conditions in the Certificate of Analysis.
Product Information
The compound is the grade of analytical standard, which is the reference standard supplied assay. It is commonly used in qualitative, quantitative and methodological research experiments in HPLC, GC and MS.
Chemical Information
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CAS. Nr. 2752-64-9
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Molecular Weight 631.71
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Formel C33H45NO11
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SMILES
CO[C@@H]1C2([C@@](C[C@@]3(O)[C@@H]4OC(C5=CC=CC=C5)=O)([H])[C@@]4([H])[C@](OC(C)=O)([C@@H](O)[C@@H]3OC)C6C2N(C)C7)[C@@]([C@H]6OC)([H])[C@@]7(COC)[C@H](O)C1
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Structure Classification
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Initial Source
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Versand
Room temperature in continental US; may vary elsewhere.
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Speicherung
Please store the product under the recommended conditions in the Certificate of Analysis.
Reinheit & Dokumentation
Verweise
[1]. Mitamura M, et al. Mesaconitine-induced relaxation in rat aorta: involvement of Ca2+ influx and nitric-oxide synthase in the endothelium. Eur J Pharmacol. 2002 Feb 2;436(3):217-25. [Content Brief]
[2]. Ogura J, et al. Mesaconitine-induced relaxation in rat aorta: role of Na+/Ca2+ exchangers in endothelial cells. Eur J Pharmacol. 2004 Jan 12;483(2-3):139-46. [Content Brief]
[3]. Murayama M, et al. Mechanism of analgesic action of mesaconitine. I. Relationship between analgesic effect and central monoamines or opiate receptors. Eur J Pharmacol. 1984 May 18;101(1-2):29-36. [Content Brief]
Calculators
Konzentration (Stammlösung) × Volumen (Stammlösung) = Konzentration (Ziellösung) × Volumen (Ziellösung)