The Crucial Role of 3-Chloro-L-Alanine Hydrochloride in Modern Drug Discovery
In the dynamic field of drug discovery and development, access to high-quality chemical intermediates is paramount. Among these, 3-Chloro-L-Alanine Hydrochloride (CAS: 51887-89-9) stands out as a crucial amino acid derivative, offering a unique combination of structural features that make it indispensable for modern research and synthesis. As a reputable manufacturer and supplier, understanding the multifaceted applications of this compound is key for pharmaceutical scientists and procurement managers seeking reliable sources.
Understanding 3-Chloro-L-Alanine Hydrochloride
This chiral molecule, a derivative of the amino acid alanine, features a chlorine atom at the beta-carbon position. This specific substitution pattern imbues it with distinctive chemical reactivity, making it an attractive building block for creating more complex molecules. Its hydrochloride salt form enhances stability and solubility, facilitating its use in various laboratory settings. For procurement managers looking to buy this compound, understanding its CAS number, 51887-89-9, is essential for accurate sourcing.
Applications in Pharmaceutical Synthesis
One of the primary uses of 3-Chloro-L-Alanine Hydrochloride is as an intermediate in the synthesis of pharmaceuticals. It serves as a precursor in the manufacturing of certain angiotensin-converting enzyme (ACE) inhibitors, which are vital for managing hypertension and heart conditions. The precise stereochemistry of this compound is critical, as it directly influences the efficacy and safety profile of the final drug product. Sourcing from a reliable manufacturer like us ensures the consistent enantiomeric purity required for pharmaceutical applications. We are a premier supplier for companies looking to purchase this critical intermediate.
Significance in Cancer Research and Therapeutics
Beyond its role as a synthetic intermediate, 3-Chloro-L-Alanine Hydrochloride has garnered significant attention in cancer research. Studies have indicated its potential as an adjuvant therapy, particularly in non-small cell lung cancer (NSCLC). Its ability to inhibit key metabolic enzymes, such as Alanine Aminotransferase (ALAT), can disrupt cancer cell energy production, leading to apoptosis. This makes it a valuable compound for researchers investigating novel anti-cancer agents. For those seeking to purchase this compound for cancer research, understanding its biological mechanisms and sourcing from a trusted manufacturer in China is a strategic advantage.
Biochemical Research and Enzyme Inhibition
The compound’s biochemical activity also extends to its role as an inhibitor of other crucial enzymes, such as Serine Palmitoyltransferase (SPT), the rate-limiting enzyme in sphingolipid biosynthesis. By mimicking natural substrates, it can modulate cellular pathways involved in lipid metabolism and cell signaling. This property makes it a valuable tool for researchers studying complex biological processes, drug resistance, and cell death pathways. When considering your research needs, inquire about the price and availability of 3-Chloro-L-Alanine Hydrochloride from our company, a leading supplier dedicated to supporting scientific advancement.
Why Choose Us as Your Supplier?
As a dedicated manufacturer and supplier of fine chemical intermediates, we pride ourselves on delivering high-purity 3-Chloro-L-Alanine Hydrochloride. Our commitment to quality control and stringent manufacturing processes ensures that every batch meets the exacting standards required by the pharmaceutical and research industries. We understand the importance of a stable supply chain and competitive pricing for our clients. If you are looking to buy this essential chemical, partnering with us means gaining access to a reliable source with extensive technical expertise. Contact us today to discuss your requirements and obtain a quote for 3-Chloro-L-Alanine Hydrochloride.
Perspectives & Insights
Agile Reader One
“Biochemical Research and Enzyme Inhibition The compound’s biochemical activity also extends to its role as an inhibitor of other crucial enzymes, such as Serine Palmitoyltransferase (SPT), the rate-limiting enzyme in sphingolipid biosynthesis.”
Logic Vision Labs
“By mimicking natural substrates, it can modulate cellular pathways involved in lipid metabolism and cell signaling.”
Molecule Origin 88
“This property makes it a valuable tool for researchers studying complex biological processes, drug resistance, and cell death pathways.”