💛 99% Happy customers

📦 Same-day shipping on in-stock items

Catalog Number:
16508
Boc-trans-4-iodo-L-proline
Documents
Available - Request Bulk Quote
Pack Size Availability Price
Request Bulk Quote
Product Information

Boc-trans-4-iodo-L-proline is a valuable amino acid derivative widely utilized in the synthesis of peptides and pharmaceuticals. This compound features a tert-butyloxycarbonyl (Boc) protecting group, which enhances its stability and solubility, making it an ideal choice for researchers in organic synthesis and medicinal chemistry. Its unique trans configuration and the presence of iodine allow for specific reactivity in coupling reactions, facilitating the formation of complex peptide structures.

In the pharmaceutical industry, Boc-trans-4-iodo-L-proline serves as a crucial building block in the development of bioactive compounds, particularly those targeting neurological disorders and cancer therapies. Its ability to participate in various coupling reactions expands its utility in creating diverse peptide libraries for drug discovery. Researchers appreciate its ease of use and the efficiency it brings to synthetic pathways, making it a preferred choice for both academic and industrial applications.

Molecular Formula
C10H16INO4
Molecular Weight
341.14
MDL Number
MFCD06797012
Conditions
Store at 0-8°C
Safety & Regulations
Hazmat
No
Antibiotic
No
DEA-regulated
No
General Information
Molecular Formula
C10H16INO4
Molecular Weight
341.14
MDL Number
MFCD06797012
Conditions
Store at 0-8°C
Safety & Regulations
Hazmat
No
Antibiotic
No
DEA-regulated
No
Properties
Additional property information coming soon!
-
Applications

Boc-trans-4-iodo-L-proline is widely utilized in research focused on

  • Peptide Synthesis: This compound serves as a valuable building block in the synthesis of peptides, particularly in the development of cyclic peptides that can have enhanced biological activity.
  • Drug Development: Its unique structure allows for the design of novel pharmaceuticals, especially in the field of anti-cancer and anti-viral drugs, providing researchers with a versatile tool for creating effective therapies.
  • Protein Engineering: Used in the modification of proteins, it helps in studying protein folding and stability, which is crucial for understanding diseases related to protein misfolding.
  • Bioconjugation: The compound can be employed in bioconjugation techniques, linking biomolecules to drugs or imaging agents, enhancing the specificity and efficacy of therapeutic agents.
  • Research in Neuroscience: It is being explored for its potential effects on neurotransmitter systems, contributing to the development of treatments for neurological disorders.

Citations