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Catalog Number:
29762
Fmoc-4,4-difluoro-D-Prolina
Purity:
≥ 98 % (HPLC)
Documents
$241.26 /25 mg
Tamaño
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Product Information

Fmoc-4,4-difluoro-D-Proline is a valuable building block in peptide synthesis, particularly favored in the development of fluorinated amino acids. This compound is recognized for its unique properties, including enhanced stability and bioactivity, making it an essential tool for researchers in medicinal chemistry and drug development. The incorporation of fluorine atoms can significantly influence the pharmacokinetic properties of peptides, leading to improved efficacy and selectivity in therapeutic applications.

In addition to its role in peptide synthesis, Fmoc-4,4-difluoro-D-Proline is also utilized in the design of novel biomolecules and in the exploration of structure-activity relationships. Its ability to modulate biological interactions makes it a prime candidate for studies aimed at developing new pharmaceuticals. Researchers appreciate its ease of use in solid-phase peptide synthesis, where it can facilitate the creation of complex peptide libraries. With its distinctive characteristics, this compound stands out as a crucial asset for professionals seeking to innovate in the fields of biochemistry and pharmaceutical research.

Purity
≥ 98 % (HPLC)
Molecular Formula
C20H17F2NO4
Molecular Weight
373.35
MDL Number
MFCD01860710
Appearance
Sólido blanco
Conditions
Conservar entre 0 y 8 °C.
General Information
Purity
≥ 98 % (HPLC)
Molecular Formula
C20H17F2NO4
Molecular Weight
373.35
MDL Number
MFCD01860710
Appearance
Sólido blanco
Conditions
Conservar entre 0 y 8 °C.
Properties
Additional property information coming soon!
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Safety and Regulations
Hazmat
No
Antibiotic
No
DEA-regulated
No
Warnings
-
Applications

Fmoc-4,4-difluoro-D-Proline is widely utilized in research focused on

  • Peptide Synthesis: This compound serves as a crucial building block in the synthesis of peptides, particularly in the development of pharmaceuticals and biologically active compounds.
  • Drug Development: Its unique properties enhance the stability and bioactivity of drug candidates, making it valuable in the pharmaceutical industry for creating more effective medications.
  • Bioconjugation: Researchers use it to create bioconjugates, which are important in targeted drug delivery systems, improving therapeutic efficacy while minimizing side effects.
  • Protein Engineering: It plays a role in modifying proteins to study their structure and function, aiding in the development of novel enzymes and therapeutic proteins.
  • Research on Fluorinated Compounds: The incorporation of fluorine atoms can significantly alter the properties of compounds, making this chemical a key player in studies aimed at understanding the effects of fluorination in medicinal chemistry.

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