N-[(9H-Fluoren-9-ylmethoxy)carbonyl]-4-aminobutyric Acid, also known as Fmoc-4-aminobutyric acid, is a key chemical compound used in peptide synthesis. This compound plays a vital role in the field of chemical biology, particularly in solid-phase peptide synthesis (SPPS), where it serves as a building block for constructing complex amino acid sequences. It is widely utilized in laboratories for its ability to participate in controlled chemical reactions, making it an essential reagent in the development of peptides and related biomolecules. Its stability and reactivity make it a reliable choice for researchers aiming to produce precise and high-quality peptide structures.
One of the main reasons this compound is preferred in laboratories is its stable chemical structure and predictable reactivity. It allows for efficient coupling reactions during peptide synthesis, ensuring accurate and reproducible results. Additionally, its compatibility with a variety of reagents and solvents enhances its versatility in different experimental setups. The compound’s ability to undergo controlled reactions minimizes the risk of side reactions, which is critical in maintaining the integrity of the final peptide product. These properties make it a go-to choice for laboratories requiring precision and reliability in their synthetic processes.
In Indonesian laboratories, Fmoc-4-aminobutyric acid is commonly used in biomedical, pharmaceutical, and biotechnology research. It supports the development of new drugs, protein analysis, and the study of biological processes. Its application in these fields highlights its importance in advancing scientific research and innovation in Indonesia. Researchers rely on this compound to produce high-quality peptides for various applications, including therapeutic development and diagnostic tools.
- Solid-Phase Peptide Synthesis (SPPS) benefits from this compound due to its controlled reactivity and stability, enabling the precise construction of complex peptide sequences.
- Biomedical research utilizes this compound for the synthesis of peptides used in drug development and therapeutic applications, supporting innovative medical solutions.
- Pharmaceutical studies incorporate this material to create peptide-based drugs, leveraging its chemical properties for targeted molecular interactions.
- Protein analysis applications rely on this compound to generate peptides for structural and functional studies, aiding in the understanding of biological systems.
- Biotecnological research employs this compound in the development of bioactive molecules, contributing to advancements in biotechnology and synthetic biology.
| Brand | TCI |
|---|---|
| CAS number | 116821-47-7 |
| Molecular formula | — |
| Purity | — |
| Category | Chemistry > Chemical Biology > Peptide Chemistry |
| Pack sizes | Available in standard laboratory quantities as per supplier specifications |
| Physical form | Solid powder |
| Storage | Store in a cool, dry place away from light and moisture |
This compound should be stored in a cool, dry environment, away from direct light and moisture to maintain its chemical integrity. It is recommended to use airtight containers to prevent exposure to humidity and contaminants. In a laboratory setting, it is important to handle the material with appropriate personal protective equipment, such as gloves and safety goggles, to ensure safety during handling. Proper ventilation should be maintained when working with this compound to minimize inhalation risks. The compound is generally stable under standard laboratory conditions, but care should be taken to avoid prolonged exposure to reactive substances or high temperatures. Following these guidelines ensures safe and effective use in research applications.
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