Fmoc-(R)-2-thienylglycine

98%

  • Product Code: 104961
  CAS:    208259-66-9
Molecular Weight: 379.43 g./mol Molecular Formula: C₂₁H₁₇NO₄S
EC Number: MDL Number: MFCD02094452
Melting Point: Boiling Point:
Density: Storage Condition: Room temperature, sealed, dry
Product Description: Fmoc-(R)-2-thienylglycine is widely used in peptide synthesis as a building block for introducing specific structural and functional properties into peptides. Its incorporation enhances the stability and bioactivity of synthetic peptides, making it valuable in the development of peptide-based drugs and therapeutic agents. The compound is particularly useful in solid-phase peptide synthesis (SPPS), where the Fmoc group serves as a protective group for the amino acid, allowing for precise control over the sequence and structure of the peptide. Additionally, the thienyl moiety in Fmoc-(R)-2-thienylglycine can impart unique electronic and steric characteristics to the peptide, which can be leveraged in the design of peptides for targeted drug delivery, enzyme inhibition, or receptor binding studies. Its application extends to research in biochemistry and medicinal chemistry, where it aids in the exploration of peptide interactions and functions in biological systems.
Sizes / Availability / Pricing:
Size (g) Availability Price Quantity
0.010 10-20 days ฿7,470.00
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Fmoc-(R)-2-thienylglycine
Fmoc-(R)-2-thienylglycine is widely used in peptide synthesis as a building block for introducing specific structural and functional properties into peptides. Its incorporation enhances the stability and bioactivity of synthetic peptides, making it valuable in the development of peptide-based drugs and therapeutic agents. The compound is particularly useful in solid-phase peptide synthesis (SPPS), where the Fmoc group serves as a protective group for the amino acid, allowing for precise control over the sequence and structure of the peptide. Additionally, the thienyl moiety in Fmoc-(R)-2-thienylglycine can impart unique electronic and steric characteristics to the peptide, which can be leveraged in the design of peptides for targeted drug delivery, enzyme inhibition, or receptor binding studies. Its application extends to research in biochemistry and medicinal chemistry, where it aids in the exploration of peptide interactions and functions in biological systems.
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