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Development of greener and safer assays for hydrochloride drugs: photometric microtitration of phenylpropanolamine hydrochloride and metformin hydrochloride

机译:盐酸药物的更环保和更安全的测定:盐酸苯基丙醇胺的光度微量滴定和盐酸二甲双胍

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An environmentally friendlier, safer and saver method is described for the assay of drugs as hydrochloride salts namely metformin hydrochloride and phenylpropanolamine hydrochloride via the determination of their chloride contents. In this method, an aqueous solution of drug was treated with measured excess of silver nitrate in the presence of nitric acid, followed by the determination of unreacted silver nitrate by Volhard's method using ammonium thiocyanate titrant and iron(III) alum indicator. To minimize the reagents consumed and wastes generated, the reactions were scaled down to less than 2 mL carried out in microcentrifuge tubes and using micropipettes for the transfer of reagents. The equivalence point was determined by spectrophotometry to diminish visual errors by reading the absorbance of red iron(III) thiocyante complex at 450 nm on microplates, which quickened the measurements of multi-samples. After validation, the method showed satisfactory accuracy and precision and was successfully applied for the assay of both drugs in raw materials, giving the results comparable to the pharmacopeial methods. In addition, the proposed assay was free from the use of harsh, toxic and environmentally harmful chemicals i.e. glacial acetic acid, acetic anhydride, mercuric acetate which are employed in the USP non-aqueous titration methods. Thus, it is considerably safer for analysts and is a cost-effective and green analytical method suitable for a sustainable environment.
机译:描述了一种环境更友好,更安全和节省的方法,用于通过测定其氯化物含量,将药物作为盐酸盐和苯基丙醇胺盐酸盐和苯基丙醇胺盐酸盐的测定。在该方法中,在硝酸存在下用测量过量的硝酸盐处理药物水溶液,然后通过使用硫氰酸铵滴定剂和铁(III)明矾指示剂的Volhard方法测定未反应的硝酸盐。为了最小化所消耗的试剂和产生的废物,将反应缩小至小于2ml,在微量离心管中进行,并使用微量化用于转移试剂。通过分光光度法测定等效点,以通过读取在450nm上的微孔板上的红色铁(III)硫氰酸酯络合物的吸光度来减小视觉误差,从而加快了多样品的测量。验证后,该方法显示出令人满意的精度和精度,并成功地应用于原料中药物的测定,从而使结果与药长方法相当。此外,所提出的测定没有使用刺激性,有毒和无害的化学品I.。冰醋酸,乙酸酐,乙酸乙酯,其在USP非水滴定方法中使用。因此,对于分析师来说,它具有很强更安全的,并且是一种适合可持续环境的成本效益和绿色的分析方法。

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