Sourcing Amino Acid Derivatives: Why Boc-Leu-ONp (CAS 3350-19-4) Matters
The field of biochemistry and synthetic chemistry extensively utilizes amino acid derivatives as fundamental building blocks. These compounds are not only crucial for understanding biological processes but are also indispensable in the creation of new materials, therapeutics, and research tools. Among the myriad of available derivatives, Boc-Leu-ONp, identified by CAS number 3350-19-4, holds a significant position due to its specific chemical functionalities and broad applicability. For B2B clients, understanding its properties and how to procure it efficiently is key.
Boc-Leu-ONp, chemically known as N-Boc-L-Leucine 4-nitrophenyl ester, is a derivative of the essential amino acid L-leucine. It features two critical functional groups: the tert-butyloxycarbonyl (Boc) group, which protects the alpha-amino group of leucine, and the 4-nitrophenyl ester group, which activates the carboxyl group. This dual functionality makes Boc-Leu-ONp a highly valuable reagent for introducing leucine residues into peptide chains or for modifying other organic molecules.
The protective Boc group is widely used in peptide synthesis because it can be easily removed under mild acidic conditions, allowing for controlled chain elongation. The activated ester, in this case, the 4-nitrophenyl ester, is an excellent leaving group, facilitating nucleophilic acyl substitution reactions. This means that when Boc-Leu-ONp reacts with an amine, it readily forms an amide bond, releasing 4-nitrophenol as a byproduct. This reactivity profile is highly sought after in research and development settings, where precise chemical transformations are essential.
For procurement specialists and R&D scientists in the chemical and pharmaceutical industries, sourcing reliable amino acid derivatives like Boc-Leu-ONp is a critical operational task. When you buy Boc-Leu-ONp, you are investing in a compound that supports a wide range of applications, including peptide synthesis for drug discovery, development of diagnostic markers, and creation of specialized biochemical tools. The purity of the material, typically reported as ≥ 97% by HPLC, is a primary indicator of its suitability for these demanding applications. Companies that prioritize quality and consistency in their raw materials will often seek out manufacturers with a proven track record.
The availability of Boc-Leu-ONp from reputable chemical suppliers, particularly those with manufacturing capabilities, ensures that B2B customers can secure their supply chain. Factors such as competitive pricing for bulk purchases and efficient logistics are also important considerations. Many organizations choose to partner with manufacturers based in Asia, including China, due to their capacity for large-scale production and cost-effectiveness. When evaluating suppliers, it's advisable to request product specifications, Safety Data Sheets (SDS), and Certificates of Analysis (COA) to verify quality and compliance.
In conclusion, Boc-Leu-ONp (CAS 3350-19-4) is a versatile and essential amino acid derivative with widespread applications in chemical synthesis and life sciences research. Its unique structure and reactivity make it an ideal reagent for peptide synthesis and beyond. For businesses looking to buy this critical compound, partnering with a trusted manufacturer and supplier like NINGBO INNO PHARMCHEM guarantees access to high-quality materials, competitive pricing, and reliable service, thereby supporting your research and development objectives.
Perspectives & Insights
Quantum Pioneer 24
“When evaluating suppliers, it's advisable to request product specifications, Safety Data Sheets (SDS), and Certificates of Analysis (COA) to verify quality and compliance.”
Bio Explorer X
“In conclusion, Boc-Leu-ONp (CAS 3350-19-4) is a versatile and essential amino acid derivative with widespread applications in chemical synthesis and life sciences research.”
Nano Catalyst AI
“Its unique structure and reactivity make it an ideal reagent for peptide synthesis and beyond.”