4-Bromocrotonic Acid: Your Key Intermediate for Advanced Chemical Research and Synthesis
Discover the power of 4-Bromocrotonic Acid, a critical chemical intermediate renowned for its role in fatty acid oxidation inhibition and complex organic synthesis. Explore its applications and unlock new avenues in biochemical and pharmaceutical research.
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4-Bromocrotonic acid
As a leading supplier in China, we offer 4-Bromocrotonic acid (CAS 20629-35-0), a highly versatile chemical intermediate. Its primary value lies in its potent ability to inhibit fatty acid oxidation, making it an indispensable tool for researchers investigating cellular metabolism and mitochondrial function. We pride ourselves on being a reliable manufacturer in China, ensuring high purity and consistent quality for your critical applications.
- Investigating Cellular Metabolism: 4-Bromocrotonic acid is instrumental in understanding cellular responses to altered metabolic states, allowing scientists to explore how cells adapt to limited fatty acid supply.
- Understanding Mitochondrial Function: This compound's impact on mitochondrial energy production makes it crucial for understanding cellular health and the effects of metabolic disruptions.
- Organic Synthesis Applications: As a brominated derivative of crotonic acid, it serves as a key building block in the synthesis of various complex organic compounds.
- Pharmaceutical Development: Its inhibitory properties make it a valuable candidate for developing novel therapeutic interventions targeting metabolic pathways.
Advantages Provided by the Product
High Purity & Quality
We guarantee a minimum purity of 97% for 4-Bromocrotonic acid, ensuring reliable and reproducible results in your experiments and syntheses, essential for effective chemical intermediate utilization.
Versatile Applications
From groundbreaking research in fatty acid oxidation to complex organic synthesis, 4-Bromocrotonic acid offers broad utility across scientific disciplines.
Research-Focused Properties
Its unique ability to inhibit key enzymes in fatty acid metabolism makes it a sought-after reagent for exploring metabolic disorders and cellular energy balance.
Key Applications
Biochemical Research
Utilize 4-Bromocrotonic acid as a critical tool for studying fatty acid oxidation and its impact on cellular respiration and energy production.
Organic Synthesis
Leverage this compound as a fundamental building block in the creation of intricate organic molecules, facilitating advancements in chemical synthesis.
Metabolic Studies
Investigate cellular responses to altered metabolic states and explore alternative energy sources with 4-Bromocrotonic acid's unique properties.
Drug Discovery
Explore its potential in developing novel therapeutics by targeting pathways involved in metabolic disorders and fatty acid utilization.