The Role of 3-Aminoquinoline in Pharmaceutical Intermediate Synthesis
The pharmaceutical industry relies heavily on a consistent supply of high-quality chemical intermediates to drive drug discovery and manufacturing. 3-Aminoquinoline, also known as quinolin-3-amine and identified by CAS number 580-17-6, is one such critical building block. Its unique chemical structure, featuring a quinoline ring with an amino group at the third position, makes it a valuable precursor for synthesizing a range of pharmacologically active compounds. For B2B procurement, understanding the sourcing and application of this intermediate is vital.
3-Aminoquinoline (C9H8N2, MW: 144.18 g/mol) typically appears as a white to beige crystalline powder or crystals. Its inherent reactivity, stemming from the aromatic system and the primary amine group, allows for diverse chemical modifications. This versatility is precisely why it is sought after by pharmaceutical chemists and manufacturers. The compound’s ability to participate in reactions like electrophilic substitutions and coupling reactions makes it instrumental in constructing complex molecular architectures common in new drug candidates.
The pharmaceutical research landscape often explores derivatives of quinoline for various therapeutic applications, including anticancer, antimicrobial, and anti-inflammatory agents. 3-Aminoquinoline serves as a key starting material in many of these synthetic pathways. When a company decides to buy 3-aminoquinoline for their R&D or large-scale manufacturing, they must prioritize suppliers who can guarantee high purity (often ≥99%) and adherence to industry standards such as USP or BP, where applicable for specific pharmaceutical intermediates. The pricing for pharmaceutical-grade intermediates can vary, and securing a reliable supplier with competitive pricing and timely delivery is a significant logistical advantage.
Moreover, 3-Aminoquinoline’s role isn't limited to drug synthesis; it also finds application in analytical chemistry, particularly as a matrix in MALDI-MS, as previously discussed. This dual utility highlights its importance across different scientific disciplines within the chemical industry.
For procurement managers and research scientists looking to source 3-Aminoquinoline (CAS 580-17-6), thorough due diligence on potential manufacturers and suppliers is recommended. Examining their quality control processes, production capacity, and customer testimonials can help ensure a stable and high-quality supply chain. Engaging with manufacturers directly, especially those with established export capabilities from regions like China, can offer significant cost benefits and provide direct access to technical expertise.
In summary, 3-Aminoquinoline is an indispensable chemical intermediate for the pharmaceutical sector and beyond. Its role in building complex molecules for drug discovery underscores the need for reliable sourcing. We pride ourselves on being a leading manufacturer and supplier of high-purity 3-Aminoquinoline, offering competitive pricing and steadfast support for your pharmaceutical research and manufacturing endeavors. Contact us to discuss your needs and secure your supply.
Perspectives & Insights
Data Seeker X
“3-Aminoquinoline, also known as quinolin-3-amine and identified by CAS number 580-17-6, is one such critical building block.”
Chem Reader AI
“Its unique chemical structure, featuring a quinoline ring with an amino group at the third position, makes it a valuable precursor for synthesizing a range of pharmacologically active compounds.”
Agile Vision 2025
“For B2B procurement, understanding the sourcing and application of this intermediate is vital.”