Guanosine-5'-diphosphate Disodium Salt: A Key Pharmaceutical Intermediate for Advanced Drug Development
Unlock critical pathways in drug discovery with our high-purity Guanosine-5'-diphosphate Disodium Salt.
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Guanosine-5'-diphosphate Disodium Salt
Guanosine-5'-diphosphate disodium salt is a vital compound in the pharmaceutical industry, serving as a crucial pharmaceutical intermediate. Its applications extend across biochemical research and the development of novel therapeutics, particularly in understanding complex cellular signaling cascades.
- Explore the potential of GDP-Na2 drug development: This compound is instrumental in research aimed at creating new treatments for various diseases.
- Leverage CAS 7415-69-2 for biochemical applications: Its well-defined properties make it an ideal choice for precise biochemical studies and assays.
- Utilize this nucleotide synthesis precursor: Essential for the creation of other nucleotide-based molecules critical in biological processes.
- Advance GTPase research with this compound: A key component for scientists investigating the role of GTPases in cellular functions and disease mechanisms.
Advantages Offered by the Product
High Purity Assurance
With a high purity of ≥98.0%, this nucleotide synthesis precursor guarantees reliable results in sensitive drug development research.
Crucial for Drug Discovery
As a key pharmaceutical intermediate, it plays an indispensable role in exploring cellular signaling pathways, enabling breakthroughs in medical science.
Stable and Reliable
The stability under processing conditions makes it a dependable choice for manufacturers and researchers requiring consistent product performance.
Key Applications
Pharmaceutical Intermediates
Serves as a fundamental building block for synthesizing more complex pharmaceutical compounds, vital for the drug development pipeline.
Biochemical Research
Essential for studies involving cellular metabolism and energy transfer, providing insights into biological mechanisms.
Drug Development
Facilitates research into various therapeutic areas by enabling the study of signaling pathways and the development of new drug candidates.
GTPase Studies
A key reagent for investigating the function and regulation of GTPases, which are critical in cell signaling and disease pathology.