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Catalog Number:
02712
CAS Number:
122546-52-5
N α -Boc- N ε -nicotinoyl-D-lysine
Purity:
≥ 97 % (HPLC)
Synonym(s):
Boc-D-Lys(nicotinoyl)-OH
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Product Information

Na-Boc-Ne-nicotinoyl-D-lysine is a versatile compound that plays a significant role in peptide synthesis and drug development. This derivative of D-lysine features a Boc (tert-butyloxycarbonyl) protecting group, which enhances its stability and solubility, making it an ideal choice for researchers in the fields of medicinal chemistry and biochemistry. Its unique structure allows for the incorporation of nicotinoyl moieties, which can facilitate interactions with biological targets, potentially leading to the development of novel therapeutic agents.

This compound is particularly valuable in the synthesis of bioactive peptides and can be utilized in the design of prodrugs, where the Boc group can be selectively removed to release the active drug in a controlled manner. Its applications extend to the pharmaceutical industry, where it can aid in the creation of targeted therapies for various diseases. Researchers will appreciate its ability to enhance the pharmacokinetic properties of peptides, thereby improving their efficacy and reducing side effects.

Synonyms
Boc-D-Lys(nicotinoyl)-OH
CAS Number
122546-52-5
Purity
≥ 97 % (HPLC)
Molecular Formula
C17H25N3O5
Molecular Weight
351.4
MDL Number
MFCD00076968
PubChem ID
14836636
Melting Point
123-131 °C
Appearance
Poudre blanche
Optical Rotation
[a] D 20 = +4 ± 2º (C=1 dans MeOH)
Conditions
Conserver à 0-8 °C
General Information
Synonyms
Boc-D-Lys(nicotinoyl)-OH
CAS Number
122546-52-5
Purity
≥ 97 % (HPLC)
Molecular Formula
C17H25N3O5
Molecular Weight
351.4
MDL Number
MFCD00076968
PubChem ID
14836636
Melting Point
123-131 °C
Appearance
Poudre blanche
Optical Rotation
[a] D 20 = +4 ± 2º (C=1 dans MeOH)
Conditions
Conserver à 0-8 °C
Properties
Additional property information coming soon!
-
Safety and Regulations
Hazmat
Non
Antibiotic
Non
DEA-regulated
Non
Warnings
-
Applications

Na-Boc-Ne-nicotinoyl-D-lysine is widely utilized in research focused on:

  • Peptide Synthesis: This compound serves as a protective group in the synthesis of peptides, allowing researchers to selectively modify amino acids without affecting others, which is crucial for creating complex biomolecules.
  • Drug Development: It plays a role in the development of new pharmaceuticals, particularly in designing compounds that can effectively target specific biological pathways, enhancing therapeutic efficacy.
  • Bioconjugation: Used in bioconjugation processes, it helps in attaching biomolecules to surfaces or other molecules, improving the delivery and effectiveness of drugs or diagnostic agents.
  • Research in Neuroscience: This compound is valuable in studies related to neuropharmacology, where it aids in understanding the interactions between drugs and neural receptors, potentially leading to new treatments for neurological disorders.
  • Protein Engineering: It is utilized in protein engineering to modify lysine residues, allowing for the development of proteins with enhanced stability or altered functional properties, which is beneficial in various biotechnological applications.

Citations