3-Methyluracil: Your Essential Biochemical Research Compound
Discover the properties, applications, and sourcing of 3-Methyluracil (CAS 608-34-4) for your advanced scientific needs.
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3-Methyluracil
3-Methyluracil is a critical chemical entity widely used in biochemical research and the development of nucleoside analogs. Its unique structure as a derivative of uracil makes it an invaluable building block for synthesizing more complex molecules with potential pharmaceutical applications.
- Explore the detailed chemical properties of 3-methyluracil, including its molecular formula (C5H6N2O2) and weight (126.11), crucial for accurate reaction stoichiometry.
- Understand the significance of 3-methyluracil in nucleoside analog research, a rapidly advancing field in drug discovery and development.
- Leverage 3-methyluracil as a fine chemical intermediate for pharmaceutical synthesis, enabling the creation of novel therapeutic agents.
- Access reliable sourcing information for 3-methyluracil, connecting with trusted suppliers offering competitive pricing for your research needs.
Key Advantages
Research Versatility
The diverse chemical reactivity of 3-methyluracil makes it a versatile compound for various synthetic routes, supporting innovation in medicinal chemistry.
Purity and Quality
Sourcing high-purity 3-methyluracil is essential for reproducible research results, ensuring reliable performance in your experiments.
Supply Chain Reliability
Connect with a network of reputable 3-methyluracil suppliers, ensuring timely procurement and consistent availability for your ongoing projects.
Key Applications
Biochemical Research
3-Methyluracil serves as a foundational compound for studying biochemical pathways and the interactions of nucleobases in biological systems.
Pharmaceutical Intermediates
Its structure makes it a vital intermediate in the synthesis of a wide range of pharmaceutical compounds, contributing to advancements in drug development.
Nucleoside Analog Studies
Researchers utilize 3-methyluracil to develop and investigate nucleoside analogs, which are crucial in antiviral and anticancer therapies.
Fine Chemical Synthesis
As a key fine chemical, 3-methyluracil is employed in various custom synthesis projects and advanced organic chemistry research.