BM212 (Standard)
BM212 (Standard) is the analytical standard of BM212. This product is intended for research and analytical applications. BM212 is a potent Mycobacterial membrane protein Large 3 (MmpL3) inhibitor. BM212 has strong bactericidal activity against both M. tuberculosis and some nontuberculosis mycobacteria. BM212 exhibits antimycobacterial activity against M. tuberculosis H37Rv with an MIC of 5 µM.
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- No. CAS: 146204-42-4
- Fòrmula: C23H25Cl2N3
- Peso molecular:414.37
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Almacenamiento:
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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No. CAS 146204-42-4
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Peso molecular 414.37
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Fòrmula C23H25Cl2N3
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SMILES
CN1CCN(CC2=C(C)N(C3=CC=C(Cl)C=C3)C(C4=CC=C(Cl)C=C4)=C2)CC1
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Envío
Room temperature in continental US; may vary elsewhere.
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Almacenamiento
Please store the product under the recommended conditions in the Certificate of Analysis.
Pureza y Documentación
Referencias
[1]. Deidda D et al. Bactericidal activities of the pyrrole derivative BM212 against multidrug-resistant and intramacrophagic Mycobacterium tuberculosis strains. Antimicrob Agents Chemother. 1998 Nov;42(11):3035-7. [Content Brief]
[2]. Poce G et al. Improved BM212 MmpL3 inhibitor analogue shows efficacy in acute murine model of tuberculosis infection. PLoS One. 2013;8(2) [Content Brief]
[3]. Albertus Viljoen, et al. Fast chemical force microscopy demonstrates that glycopeptidolipids define nanodomains of varying hydrophobicity on mycobacteria. Nanoscale Horiz. 2020 Jun 1;5(6):944-953. [Content Brief]
[4]. Delia Deidda, et al. Bactericidal activities of the pyrrole derivative BM212 against multidrug-resistant and intramacrophagic Mycobacterium tuberculosis strains. Antimicrob Agents Chemother. 1998 Nov;42(11):3035-7. [Content Brief]
Calculators
Concentration (start) × Volume (start) = Concentration (final) × Volume (final)