Methyl 4-aminopyridine-2-carboxylate, identified by CAS NO 71469-93-7 Manufacturers, is a specialty pyridine derivative used primarily as a chemical building block in pharmaceutical and organic synthesis. Also known as methyl 4-aminopicolinate and 4-aminopyridine-2-carboxylic acid methyl ester, this compound combines an amino group, pyridine ring, and methyl ester functionality, making it useful for developing more complex molecules.
Understanding CAS 71469-93-7
CAS 71469-93-7 refers to Methyl 4-aminopyridine-2-carboxylate, a heterocyclic compound with the molecular formula C₇H₈N₂O₂ and molecular weight of 152.15 g/mol. Commercial specifications commonly describe it as a white to light-yellow or light-orange powder or crystalline solid.
Its molecular structure provides several useful reaction sites. The pyridine nitrogen can participate in chemical transformations, while the amino and ester groups offer additional functionality for synthetic modification. This combination makes the compound particularly relevant to researchers looking for versatile intermediates.
Pharmaceutical Research and Intermediate Synthesis
One of the most important applications of CAS 71469-93-7 is its use as an intermediate in pharmaceutical research and chemical synthesis. Pyridine-based structures occur frequently in medicinal chemistry because their properties can be modified through substitution at different positions.
Methyl 4-aminopyridine-2-carboxylate can therefore serve as a starting material for synthesizing more structurally complex compounds. Its functional groups provide opportunities for further reactions and molecular diversification, making it useful during the development of pharmaceutical intermediates and research compounds.
Commercial chemical listings also associate this CAS number with pharmaceutical intermediate supply, demonstrating its relevance to pharmaceutical synthesis. However, buyers should distinguish between a compound being used as an intermediate in a synthesis route and being an active pharmaceutical ingredient itself.
Role in Medicinal Chemistry
Medicinal chemistry researchers often require small heterocyclic building blocks that can be readily modified. Methyl 4-aminopyridine-2-carboxylate fits this requirement because its amino and ester functionalities can be incorporated into subsequent synthetic steps.
The compound can be useful when researchers are exploring pyridine-containing molecular frameworks, optimizing candidate structures, or preparing libraries of related compounds. Its value is therefore not necessarily tied to one single end product; instead, it can function as a versatile intermediate within multi-step synthesis programs.
For research organizations and pharmaceutical companies, consistent material quality is important because impurities or variation between batches can influence downstream reactions and analytical results.
Organic and Heterocyclic Synthesis
Beyond pharmaceutical research, CAS 71469-93-7 has applications in broader organic synthesis. The compound belongs to the family of functionalized pyridine and heterocyclic chemicals, reflecting its relevance as a specialized building block.
Researchers can use functionalized pyridines to investigate new chemical structures and synthetic pathways. The methyl ester can provide a useful handle for further transformations, while the amino substituent creates another point for molecular modification.
This versatility makes Methyl 4-aminopyridine-2-carboxylate relevant to laboratories working on synthetic chemistry, medicinal chemistry, and the preparation of specialized intermediates.
Why Purity Matters
When sourcing CAS 71469-93-7, purity and analytical documentation are important considerations. Different commercial suppliers publish specifications based on their testing methods. Buyers should review the stated purity, analytical method, appearance, storage requirements, and other product specifications before procurement.
A reliable supplier should be able to provide appropriate product documentation, such as a Certificate of Analysis (COA), specification sheet, and Safety Data Sheet (SDS), where applicable. Buyers should also consider batch consistency, packaging, storage requirements, lead time, and the quantity required for their application.
Choosing CAS NO 71469-93-7 Manufacturers
For pharmaceutical and research applications, selecting the right manufacturer can be as important as selecting the chemical itself. Buyers should evaluate manufacturing capabilities, quality-control procedures, analytical testing, production scalability, and documentation before placing an order.
Experienced CAS NO 71469-93-7 Manufacturers can support customers by supplying material that meets agreed specifications and by maintaining consistency across production batches. This is particularly valuable when the compound is used in multi-step synthesis, where variation in starting-material quality can affect downstream processes.
For organizations purchasing larger quantities, it is also useful to discuss packaging, minimum order quantities, delivery schedules, and technical requirements with the manufacturer before finalizing procurement.
Applications in Research and Development
The compound’s combination of pyridine, amino, and ester functionalities makes it suitable for research-oriented chemical development. Laboratories may use it when investigating synthetic routes, preparing intermediates, developing new heterocyclic compounds, or evaluating potential pharmaceutical structures.
Because the compound is generally supplied as a specialty chemical rather than a commodity material, researchers should select a source capable of providing appropriate analytical support and reliable supply. This becomes increasingly important when moving from small-scale laboratory experiments toward larger development quantities.
Conclusion
CAS 71469-93-7, or Methyl 4-aminopyridine-2-carboxylate, is primarily valuable as a functionalized pyridine building block for pharmaceutical research, medicinal chemistry, and organic synthesis. Its amino and ester groups provide useful reaction sites for creating more complex molecules, while its defined chemical identity and commercial availability make it practical for research and development applications.
Companies sourcing this specialty intermediate should assess purity, analytical documentation, batch consistency, manufacturing capacity, and supply reliability. Working with established CAS NO 71469-93-7 Manufacturers can help research and pharmaceutical organizations obtain material suited to their specific synthesis and development requirements.
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