Understanding Lasamide: Its Chemical Properties and Pharmaceutical Significance
In the pharmaceutical sector, chemical nomenclature can sometimes be intricate, with common names or historical references accompanying IUPAC names. One such compound, widely recognized in its functional role, is Lasamide, which is chemically identified as 2,4-Dichloro-5-sulfamoylbenzoic Acid. This article aims to clarify its chemical properties, highlight its significance within the pharmaceutical supply chain, and explain why it is a sought-after intermediate, particularly for the synthesis of diuretic drugs.
Lasamide, or 2,4-Dichloro-5-sulfamoylbenzoic Acid, is a crucial intermediate in the synthesis of furosemide. Furosemide is a powerful loop diuretic, essential for managing conditions like congestive heart failure, liver cirrhosis, and renal disease, all of which often involve fluid overload or edema. The effectiveness of furosemide is directly tied to the quality of its starting materials, making Lasamide a compound of high importance. As a key pharmaceutical intermediate for furosemide, its chemical structure is precisely designed to facilitate the subsequent reactions required for furosemide’s creation.
The chemical properties of Lasamide are well-documented. It typically appears as a white to off-white crystalline powder, with a melting point range of 230-232 °C (with decomposition). Its molecular formula is C7H5Cl2NO4S, and its CAS number is 2736-23-4. These characteristics are critical for identification and quality control in pharmaceutical manufacturing. Understanding these properties helps professionals in the field to effectively buy 2,4-dichloro-5-sulfamoylbenzoic acid that meets specific purity and physical state requirements for their production processes.
The role of Lasamide as a precursor extends beyond simply being a starting material. Its specific arrangement of functional groups – the carboxyl group, the two chlorine atoms, and the sulfamoyl group on the benzene ring – are precisely what enable it to be converted into the pharmacologically active furosemide molecule through further chemical transformations. This underscores the intricate nature of furosemide synthesis and the critical dependency on intermediates like Lasamide. The study of sulfamoylbenzoic acid derivatives also opens avenues for research into new therapeutic agents.
For pharmaceutical manufacturers, securing a reliable supply of high-quality Lasamide is a strategic necessity. NINGBO INNO PHARMCHEM CO., LTD. is dedicated to meeting this demand. We ensure that our 2,4-Dichloro-5-sulfamoylbenzoic Acid (Lasamide) is produced under strict quality control measures, guaranteeing the purity and consistency required for pharmaceutical applications. Our commitment is to support the production of vital medications by providing essential chemical building blocks that meet the highest industry standards.
In conclusion, Lasamide, or 2,4-Dichloro-5-sulfamoylbenzoic Acid, is a cornerstone intermediate in the pharmaceutical industry, playing an irreplaceable role in the production of furosemide and other diuretic medications. Its well-defined chemical properties and critical function in drug synthesis make it a compound of significant value for researchers and manufacturers alike. NINGBO INNO PHARMCHEM CO., LTD. is proud to contribute to the pharmaceutical supply chain by providing this essential intermediate with unwavering quality and reliability.
Perspectives & Insights
Nano Explorer 01
“As a key pharmaceutical intermediate for furosemide, its chemical structure is precisely designed to facilitate the subsequent reactions required for furosemide’s creation.”
Data Catalyst One
“It typically appears as a white to off-white crystalline powder, with a melting point range of 230-232 °C (with decomposition).”
Chem Thinker Labs
“These characteristics are critical for identification and quality control in pharmaceutical manufacturing.”