Mazdutide, also widely known under the research codes IBI-362, LY-3305677 and OXM-3, is a newly developed synthetic long-acting dual-receptor agonist peptide material designed and synthesized for professional biochemical laboratory research and academic experimental applications. This compound possesses a complete polypeptide molecular structure with stable chemical properties, high structural purity and excellent batch repeatability, making it one of the most popular novel peptide research materials in global biochemistry, molecular biology and pharmaceutical mechanism research fields. The corresponding CAS registration number of Mazdutide is 2259884-03-0, which uniquely identifies the chemical structure and ensures standardization and traceability in international raw material trading, laboratory testing and academic data recording. All products provided by our factory belong to strict research-grade raw materials, which are exclusively suitable for in vitro laboratory experimental use, scientific mechanism exploration, university teaching experiments, biochemical contrast testing and compound structural analysis research. The entire production, purification, testing and packaging processes are implemented in accordance with international chemical raw material laboratory standards, without any medical-grade production declaration, without involving clinical application behaviors, and are completely compliant with cross-border e-commerce platform rules and global chemical product sales specifications.
In terms of basic chemical properties, Mazdutide features a complete and stable polypeptide molecular chain, accurate amino acid sequence arrangement, low structural fragmentation rate and extremely low residual synthesis impurities. The molecular formula is C192H295N55O59 and the molecular weight is 4302.78 Dalton. The finished product appears as uniform white crystalline powder with loose texture, good fluidity and no caking phenomenon under standard sealed storage conditions. After professional freeze-drying treatment, the product effectively avoids molecular denaturation, structural damage and moisture absorption problems that are common in ordinary synthetic peptides. The whole production process adopts mature solid-phase peptide synthesis technology (SPPS), which is the mainstream and most reliable synthetic process for high-purity polypeptide raw materials in the international biochemical industry. Through stepwise amino acid coupling, resin cleavage, crude peptide synthesis, multi-stage gradient elution purification, desalting treatment, sterile freeze-drying and fine impurity removal procedures, the final finished powder achieves ultra-high purity level and extremely stable physical and chemical properties, fully meeting the strict experimental index requirements of high-precision scientific research institutions, university laboratories and biotechnology R&D companies all over the world.
Our factory strictly implements standardized production and quality control management for every batch of Mazdutide raw materials. All synthetic workshops are independent dust-free purification workshops with 100,000-class clean grade, which are completely isolated from food additives, cosmetic raw materials, pharmaceutical intermediates and other production lines to prevent cross-contamination of microorganisms, foreign proteins and heterogeneous impurities. In the whole production link, we strictly control reaction temperature, reaction time, solvent ratio, coupling efficiency and purification gradient parameters to ensure that the difference of molecular structure, purity index and impurity content between different batches is controlled within the minimum range. The finished products are tested by high-performance liquid chromatography (HPLC) for purity detection, amino acid composition analysis, moisture content detection, residual solvent detection, heavy metal limit detection and microbial limit detection one by one. Only the products that fully meet the research-grade standard indexes can be packaged and put into storage, which fundamentally guarantees the stability, safety and experimental repeatability of the products for laboratory research use.