3,5-Diamino-6-bromo-pyrazine-2-carboxylic acid

95%

Reagent Code: #44037
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CAS Number 1303968-25-3

science Other reagents with same CAS 1303968-25-3

blur_circular Chemical Specifications

scatter_plot Molecular Information
Weight 233.0228 g/mol
Formula C₅H₅BrN₄O₂
badge Registry Numbers
MDL Number MFCD18914368
inventory_2 Storage & Handling
Storage 2-8°C

description Product Description

This chemical is primarily utilized in the synthesis of pharmaceutical compounds, particularly in the development of drugs targeting bacterial infections. It serves as a key intermediate in the production of antibiotics, especially those belonging to the pyrazinamide class, which are effective against tuberculosis. Additionally, it is employed in organic synthesis for creating complex molecules with potential therapeutic properties, including antiviral and anticancer agents. Its unique structure allows for modifications that enhance the efficacy and specificity of these drugs. Furthermore, it is used in research laboratories to study enzyme interactions and biochemical pathways, aiding in the discovery of new treatment options for various diseases.

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Size Availability Unit Price Quantity
inventory 100mg
10-20 days ฿7,182.00

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3,5-Diamino-6-bromo-pyrazine-2-carboxylic acid
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This chemical is primarily utilized in the synthesis of pharmaceutical compounds, particularly in the development of drugs targeting bacterial infections. It serves as a key intermediate in the production of antibiotics, especially those belonging to the pyrazinamide class, which are effective against tuberculosis. Additionally, it is employed in organic synthesis for creating complex molecules with potential therapeutic properties, including antiviral and anticancer agents. Its unique structure allows f

This chemical is primarily utilized in the synthesis of pharmaceutical compounds, particularly in the development of drugs targeting bacterial infections. It serves as a key intermediate in the production of antibiotics, especially those belonging to the pyrazinamide class, which are effective against tuberculosis. Additionally, it is employed in organic synthesis for creating complex molecules with potential therapeutic properties, including antiviral and anticancer agents. Its unique structure allows for modifications that enhance the efficacy and specificity of these drugs. Furthermore, it is used in research laboratories to study enzyme interactions and biochemical pathways, aiding in the discovery of new treatment options for various diseases.

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