The product, High Quality n-boc-d-proline with CAS number 37784-17-1, is a high - purity chemical compound. The CAS number serves as a unique identifier, which is crucial in the chemical industry for accurate identification and documentation of the product. It represents a specific molecular structure and composition.
n - boc - d - proline is a protected amino acid derivative. The "n - boc" group is a common protecting group in organic synthesis, which helps to prevent unwanted reactions at the amino group during chemical processes. The "d" configuration in proline is an important stereochemical feature, as different stereoisomers can have different chemical and biological properties.
Our product is of high quality, which means it has a high degree of purity. High purity is essential in many chemical applications, as impurities can affect the reaction outcome, yield, and the quality of the final product. We offer this product at the best price, providing cost - effective solutions for our customers.
n - boc - d - proline has a wide range of applications in the field of organic synthesis. It is commonly used as a building block in the synthesis of peptides and other bioactive molecules. In peptide synthesis, the protected amino acid can be selectively incorporated into the growing peptide chain at the desired position, and then the protecting group can be removed under specific conditions to obtain the target peptide.
It also finds applications in the pharmaceutical industry. Many drug discovery processes involve the synthesis of small molecules with specific biological activities. n - boc - d - proline can be used as a starting material or intermediate in the synthesis of these drug candidates. Its unique structure and properties allow chemists to introduce specific functional groups and stereochemistry into the target molecules, which is crucial for the development of effective drugs.
In addition, this compound can be used in the field of materials science. For example, it can be used to modify the surface properties of polymers or to synthesize new types of materials with specific functions.
When using n - boc - d - proline, it is important to follow good laboratory practices. First, ensure that you are working in a well - ventilated area. Wear appropriate personal protective equipment, such as gloves and goggles, to prevent direct contact with the compound.
For storage, keep the product in a cool, dry place, away from heat and direct sunlight. The recommended storage temperature is usually between 2 - 8°C. Make sure the container is tightly sealed to prevent moisture and air from entering, which can cause degradation of the product.
When using it in a chemical reaction, accurately weigh the required amount of n - boc - d - proline according to the reaction protocol. It can be dissolved in common organic solvents, such as dichloromethane, tetrahydrofuran, or dimethylformamide. The choice of solvent depends on the specific reaction conditions and the solubility of other reactants.
Case 1: Peptide Synthesis
A research group was working on the synthesis of a bioactive peptide. They used n - boc - d - proline as one of the key building blocks. By incorporating n - boc - d - proline into the peptide chain at a specific position, they were able to introduce the desired stereochemistry. After a series of coupling reactions and deprotection steps, they successfully synthesized the target peptide with high yield and purity. The peptide showed significant biological activity in in - vitro assays, demonstrating the importance of using high - quality n - boc - d - proline in the synthesis process.
Case 2: Drug Discovery
A pharmaceutical company was developing a new drug candidate for a specific disease. n - boc - d - proline was used as an intermediate in the synthesis of the lead compound. The unique structure of n - boc - d - proline allowed the chemists to introduce a specific functional group and stereochemistry, which was crucial for the binding affinity of the drug candidate to the target protein. Through a series of optimization steps, the final drug candidate showed excellent pharmacological properties in pre - clinical studies.
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