Celik Onar Hulya, Ergin Mustafa Fatih, Yasa Hasniye
Engineering Faculty, Department of Chemistry, Istanbul University-Cerrahpasa, 34320 Avcılar, Istanbul, Türkiye.
Engineering Faculty, Department of Chemical Engineering, Istanbul University-Cerrahpasa, 34320 Avcılar, Istanbul, Türkiye.
ACS Omega. 2023 Sep 20;8(39):36344-36354. doi: 10.1021/acsomega.3c04965. eCollection 2023 Oct 3.
This study investigates the use of environmentally friendly citric acid as the main player in the process, rather than as an additive, to remove impurities from amoxicillin trihydrate (AMCT) crystals, aiming to optimize their purity and yield. By manipulating the concentration of citric acid, mixing speed, crystallization time, and pH, the researchers conducted experiments using a full factorial design. The dissolution stage was analyzed in both batch and continuous crystallization processes, emphasizing the significance of citric acid in enhancing crystallization. HPLC analyses were performed on the resulting crystals, and the data were analyzed using the Multi-Vari Chart program. The findings demonstrated that higher citric acid concentrations positively affected the yield, while factors such as crystallization time, mixing speed, and pH also contributed to the increased yield. The crystals obtained exhibited desirable dimensions sought after in the pharmaceutical industry, eliminating the need for additional purification steps. This study showcased the potential of citric acid in AMCT crystallization, offering advantages in product design, purification, and synthesis. The optimized conditions included a citric acid concentration of 2.0 M, mixing speed of 1000 rpm, crystallization time of 120 min, and pH of 5.5. Notably, the developed process proved to be environmentally friendly by avoiding the use of harmful chemicals, serving as a green alternative for crystallization processes, and producing purer AMCT products. Overall, this research contributes to the existing literature by highlighting the efficacy of citric acid in impurity removal and the optimization of AMCT crystal purity and yield.
本研究探讨使用环境友好型柠檬酸作为该过程的主要成分而非添加剂,以去除三水合阿莫西林(AMCT)晶体中的杂质,旨在优化其纯度和产率。通过控制柠檬酸浓度、混合速度、结晶时间和pH值,研究人员采用全因子设计进行实验。在间歇和连续结晶过程中均对溶解阶段进行了分析,强调了柠檬酸在促进结晶方面的重要性。对所得晶体进行了高效液相色谱(HPLC)分析,并使用多变量图程序对数据进行了分析。研究结果表明,较高的柠檬酸浓度对产率有积极影响,而结晶时间、混合速度和pH值等因素也有助于提高产率。所获得的晶体呈现出制药行业所追求的理想尺寸,无需额外的纯化步骤。本研究展示了柠檬酸在AMCT结晶中的潜力,在产品设计、纯化和合成方面具有优势。优化条件包括柠檬酸浓度为2.0 M、混合速度为1000 rpm、结晶时间为120分钟和pH值为5.5。值得注意的是,所开发的工艺通过避免使用有害化学物质被证明是环境友好的,可作为结晶过程的绿色替代方案,并生产出更纯的AMCT产品。总体而言,本研究通过突出柠檬酸在去除杂质以及优化AMCT晶体纯度和产率方面的功效,为现有文献做出了贡献。