Glutamic Acid 5-(3-Carboxy-4-Nitroanilide) Ammonium Salt: Your Key to Accurate GGT Assays
Unlock precise enzyme activity measurements with our high-purity GGT substrate for advanced biochemical research and diagnostics.
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Glutamic Acid 5-(3-Carboxy-4-Nitroanilide) Ammonium Salt
As a premier CAS 63699-78-5 enzyme assay component, this compound is meticulously crafted for superior performance in biochemical research and diagnostic applications. Its high purity ensures reliable results in GGT activity studies.
- Discover the precision offered by high purity Glutamic Acid derivative in your GGT assays, ensuring unparalleled accuracy.
- Leverage this essential biochemical reagent for GGT activity analysis, vital for understanding liver health.
- Utilize this compound as a pharmaceutical intermediate for liver disease diagnosis, a critical step in patient care.
- Explore the advantages of this advanced chemical synthesis building block for your research needs.
Advantages It Brings
Unmatched Purity for Reliable Results
Achieve dependable outcomes in your enzyme kinetic studies with a chemical synthesis building block boasting ≥99% purity, minimizing assay variability.
Enhanced Solubility and Stability
Benefit from superior solubility and stability, crucial for GGT activity measurement tools, ensuring consistent performance even in demanding experimental setups.
Critical for Liver Health Diagnostics
As a pharmaceutical intermediate for liver disease diagnosis, this compound is indispensable for accurate clinical assessments.
Key Applications
Biochemical Research
Employ this Glutamic Acid derivative as a specialized substrate for enzyme kinetic studies, unlocking deeper insights into biological pathways.
Diagnostic Assays
Reliably determine GGT activity with this high-quality biochemical reagent, a cornerstone in diagnosing liver conditions.
Pharmaceutical Intermediate
Utilize this compound as a key pharmaceutical intermediate in the development of diagnostic tools for liver diseases.
Chemical Synthesis
Incorporate this advanced chemical synthesis building block into your research for creating novel compounds and derivatives.