Fmoc-Asp(OtBu)-OH (13C4,15N): Precision Building Blocks for Advanced Peptide Synthesis

Discover the critical role of Fmoc-Asp(OtBu)-OH (13C4,15N) in modern peptide synthesis. As a specialized, isotopically labeled amino acid derivative, it empowers researchers and developers with enhanced analytical capabilities and accuracy, driving innovation in pharmaceutical R&D. Secure your supply from a trusted manufacturer in China.

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Advantages of Using Labeled Fmoc-Aspartic Acid Derivatives

Enhanced Analytical Accuracy

The specific isotopic labeling of Fmoc-Asp(OtBu)-OH (13C4,15N) significantly enhances the precision of mass spectrometry-based peptide quantification, crucial for understanding drug efficacy and pharmacokinetics. Buying this from a reputable manufacturer ensures you get the specified isotopic enrichment.

Metabolic Pathway Analysis

Researchers can effectively trace metabolic pathways and understand the incorporation of amino acids into newly synthesized peptides by utilizing this stable isotope-labeled compound. This capability is vital for advancing research in areas like proteomics and drug metabolism.

Streamlined R&D Workflow

By providing a reliable source for Fmoc-Asp(OtBu)-OH (13C4,15N), we streamline your R&D workflow, allowing scientists to focus on innovation rather than sourcing challenges. Partner with us for consistent quality and dependable supply.

Key Applications for Fmoc-Asp(OtBu)-OH (13C4,15N)

Peptide Synthesis

This labeled amino acid derivative is a fundamental component in Solid-Phase Peptide Synthesis (SPPS) using Fmoc chemistry, enabling the construction of complex and modified peptides. Explore purchase options for your synthesis needs.

Drug Discovery

Crucial for preclinical research, this compound aids in the development and evaluation of peptide-based therapeutics, offering insights into drug stability, metabolism, and delivery mechanisms.

Quantitative Proteomics

Its use in quantitative proteomics allows for accurate protein and peptide abundance measurements, supporting biomarker discovery and systems biology research.

Metabolic Studies

As a stable isotope-labeled compound, it is ideal for in vivo and in vitro metabolic studies, tracking the fate of amino acids within biological systems.