The Role of Furosemide (CAS 54-31-9) in Pharmaceutical Synthesis
Furosemide, identified by its CAS number 54-31-9, is more than just a finished drug; it's a crucial building block in the synthesis of widely used pharmaceutical products. As a member of the aminobenzenesulfonamide class, its chemical structure lends itself to specific roles in creating potent therapeutic agents, primarily diuretics. For R&D scientists and formulation chemists, understanding the chemical nuances of Furosemide is key to optimizing synthesis pathways and developing new treatments.
The chemical structure of Furosemide features a benzenesulfonamide moiety with an amine group attached to the benzene ring, along with other functional groups that contribute to its pharmacological activity. Its practical insolubility in water and solubility in acetone and dilute alkali hydroxides are critical properties for chemical processing. During synthesis, these solubility characteristics dictate the choice of solvents and reaction conditions. Manufacturers must ensure precise control over reaction parameters to yield Furosemide with the desired purity and yield, meeting stringent quality standards like USP. If you are looking to buy Furosemide for synthesis, these chemical properties are your primary guide.
The efficacy of Furosemide as a diuretic stems from its mechanism of action: inhibiting ion co-transport in the kidneys. This fundamental property makes it a cornerstone for treating conditions characterized by fluid overload. In pharmaceutical synthesis, Furosemide itself is often the Active Pharmaceutical Ingredient (API), or it serves as a critical intermediate in the production of other related compounds. The purity of Furosemide used in synthesis directly impacts the purity of the final drug product, underscoring the importance of sourcing from reliable manufacturers who adhere to strict quality control measures.
For scientists and chemists involved in drug discovery and development, Furosemide represents a well-established and effective molecule. Its synthesis pathways are well-documented, but innovation often lies in optimizing these processes for greater efficiency and sustainability. Companies seeking to purchase Furosemide for research or scaled-up production will benefit from engaging with suppliers who can provide not only the chemical itself but also expert technical support. Understanding the chemical specifications and application context is vital when requesting pricing or samples from a manufacturer.
The role of Furosemide in pharmaceutical synthesis highlights the interconnectedness of the chemical and pharmaceutical industries. A reliable supply of high-quality Furosemide is foundational for many life-saving medications. As you plan your synthesis projects, consider partnering with experienced suppliers like NINGBO INNO PHARMCHEM CO.,LTD. to ensure you obtain Furosemide that meets your exact specifications. Contact us for competitive pricing and to discuss your bulk purchase requirements.
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“Furosemide, identified by its CAS number 54-31-9, is more than just a finished drug; it's a crucial building block in the synthesis of widely used pharmaceutical products.”
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“As a member of the aminobenzenesulfonamide class, its chemical structure lends itself to specific roles in creating potent therapeutic agents, primarily diuretics.”