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Catalog Number:
19547
CAS Number:
885275-93-4
(3-Boc-aminoazetidin-1-yl)pyridin-3-yl-acetic acid
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Product Information

(3-Boc-aminoazetidin-1-yl)pyridin-3-yl-acetic acid is a versatile compound with significant potential in pharmaceutical research and development. This compound features a unique structure that combines an azetidine ring with a pyridine moiety, making it an attractive candidate for the synthesis of novel bioactive molecules. Its Boc (tert-butyloxycarbonyl) protecting group enhances its stability and solubility, facilitating its use in various chemical reactions. Researchers can leverage this compound in the design of targeted therapeutics, particularly in the fields of oncology and neurology, where innovative drug delivery systems are in high demand.

Additionally, (3-Boc-aminoazetidin-1-yl)pyridin-3-yl-acetic acid can serve as a building block for the development of peptide-based drugs, offering a pathway to create compounds with improved efficacy and reduced side effects. Its unique properties allow for modifications that can tailor the pharmacokinetic profiles of resulting drugs, making it a valuable asset in medicinal chemistry. With its promising applications, this compound stands out as a key player in advancing drug discovery and development.

CAS Number
885275-93-4
Molecular Formula
C15H21N3O4
Molecular Weight
307.35
MDL Number
MFCD04115170
PubChem ID
51358521
Conditions
Store at 0-8°C
Safety & Regulations
Hazmat
No
Antibiotic
No
DEA-regulated
No
General Information
CAS Number
885275-93-4
Molecular Formula
C15H21N3O4
Molecular Weight
307.35
MDL Number
MFCD04115170
PubChem ID
51358521
Conditions
Store at 0-8°C
Safety & Regulations
Hazmat
No
Antibiotic
No
DEA-regulated
No
Properties
Additional property information coming soon!
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Applications

(3-Boc-aminoazetidin-1-yl)pyridin-3-yl-acetic acid is widely utilized in research focused on:

  • Pharmaceutical Development: This compound serves as a key intermediate in the synthesis of novel pharmaceuticals, particularly in the development of drugs targeting neurological disorders.
  • Biochemical Research: It is used in studies exploring enzyme interactions and protein synthesis, providing insights into cellular mechanisms and potential therapeutic targets.
  • Medicinal Chemistry: Researchers leverage its unique structure to design and optimize new drug candidates, enhancing efficacy and reducing side effects compared to traditional compounds.
  • Material Science: The compound is explored for its potential in creating advanced materials with specific properties, such as improved conductivity or enhanced mechanical strength.
  • Agrochemical Applications: It is being investigated for use in developing agrochemicals that can improve crop yields and resistance to pests, contributing to sustainable agriculture practices.

Citations