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首页> 外文期刊>Journal of Analytical Science and Technology >Comprehensive stability-indicating method development of Avanafil Phosphodiesterase type 5 inhibitor using advanced Quality-by-Design approach
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Comprehensive stability-indicating method development of Avanafil Phosphodiesterase type 5 inhibitor using advanced Quality-by-Design approach

机译:综合稳定性指示方法开发Avanafil磷酸二酯酶5型抑制剂采用先进质量求解方法

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Avanafil (AV) is the phosphodiesterase (PDE) type 5 inhibitor drug used in erectile dysfunction, having pyrrolidine, pyrimidine, carboxamide, and chlorine as functional groups which can easily break by environmental changes and cause toxicity. Henceforth, in detail, HPLC stability study with the Quality-by-Design (QbD) approach is presented which leads to recommended storage conditions. The stability of AV was analyzed in hydrolysis, photolysis, and thermal and oxidative conditions. The application of the QbD approach during the stability method development comprises steps as screening and optimization. Quality target product profile (QTPP) was defined, and critical quality attributes (CQAs) were assigned to meet the QTPP requirements. Primary parameters obtained from the Ishikawa diagram were studied via Placket–Burman, and four critical factors were optimized through the central composite design (CCD). The finalized method includes mobile phase [10?mM ammonium acetate, pH 4.5 adjusted by acetic acid:ACN (60:40, v/v)] at 0.9-mL/min flow rate and 239-nm wavelength. A control strategy was set up to ensure that the method repeatedly meets the acceptance criteria. Overall, 16 degradation product peaks of AV in all conditions (solid and solution state) were identified with optimized method and evaluated by HPLC-PDA study. A comprehensive systemic optimization of AV stability study is stated for the first time, which reveals that AV is prone to degrade in sunlight, moisture, and temperature. Global regulators and manufacturers should take care of the packaging, handling, and labeling of AV. A fully validated LC–MS compatible stability method can be successfully applied to monitor AV stability from its formulation which can be wisely extrapolated to assess the AV from biological samples. Graphical abstract
机译:Avanafil(AV)是磷酸二酯酶(PDE)型5型抗插孔功能障碍的抑制剂药物,具有吡咯烷,嘧啶,甲酰胺和氯作为官能团,其可以容易地通过环境变化和引起毒性。因此,提出了具有质量逐设计(QBD)方法的HPLC稳定性研究,这导致推荐的储存条件。在水解,光解和热和氧化条件下分析AV的稳定性。 QBD方法在稳定方法开发期间的应用包括筛选和优化的步骤。质量目标产品简介(QTPP)定义,并分配了关键质量属性(CQAS)以满足QTPP要求。通过Placket-Burman研究了从Ishikawa图获得的主要参数,通过中央复合设计(CCD)优化了四种关键因素。最终方法包括流动相[乙酸铵,pH 4.5由乙酸调节:ACN(60:40,v / v)],流量为0.9-mL / min流速和239nm波长。设置控制策略以确保该方法反复符合验收标准。总体而言,通过优化方法鉴定了所有条件(固体和溶液状态)中AV的16种降解产物峰,并通过HPLC-PDA研究评估。第一次说明AV稳定性研究的全面全身优化,这揭示了AV在阳光下倾向于降低阳光,水分和温度。全球监管机构和制造商应处理AV的包装,处理和标签。可以成功地应用完全验证的LC-MS兼容稳定性方法以从其制剂中监测AV稳定性,这可以明智地推断为评估生物样品的AV。图形概要

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