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首页> 外文期刊>Journal of Drug Delivery and Therapeutics >A Design of Experiment Approach for Optimization and Characterization of Clarithromycin Ternary System Using Spray Drying
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A Design of Experiment Approach for Optimization and Characterization of Clarithromycin Ternary System Using Spray Drying

机译:一种使用喷雾干燥优化和表征实验方法的实验方法

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The aim of present work was to characterize Clarithromycin (CLT), Polyvinyl pyrrolidone K30 (PVP K30) and Hydroxypropyl β-cyclodextrin (HPB) ternary system so as to check the effect of complexation on solubility of CLT. Physical mixtures of a drug and polymers in several weight ratios (1:1, 1:2) were prepared to check the effect of individual polymers on solubility of CLT. Spray drying method was accustomed investigate the combined effect of PVP K30 and HPB on Drug release (DR), Dissolution efficiency (DE) and mean dissolution time (MDT) of CLT. For the preparation and optimization of ternary system the Design of experiment (DoE) was used . Drug polymer interactions were analyzed with Fourier transform infrared spectroscopy (FTIR), Differential scanning calorimetry (DSC), X-ray diffraction (XRD) and particle size analysis. Results of solubility study suggested that there was significant increase in solubility of CLT with increase within the concentration of PVP K30 and HPB (*p0.05). This may be thanks to the solubilizing effect of PVP K30 and sophisticated formation of CLT with HPB. Various combinations of PVP K30 and HPB prepared using DoE approach by spray drying method showed greater solubility of CLT than its physical mixtures (*p0.05). Results of FTIR, DSC, XRD and particle size analysis revealed the interaction between CLT, PVP K30 and HPB. This suggested formation of amorphous ternary system with mean particle diameter within the range of 312±1.35 nm. Combine use of PVP K30 and HPB with DoE approach was an efficient tool for formulating ternary system of CLT.
机译:目前工作的目的是表征克拉霉素(CLT),聚乙烯吡咯烷酮K30(PVP K30)和羟丙基β-环糊精(HPB)三元体系,以检查络合对CLT溶解度的影响。制备药物和聚合物的物理混合物,以几种重量比(1:1,1:2),以检查各种聚合物对CLT的溶解度的影响。习惯喷雾干燥方法研究PVP K30和HPB对药物释放(DR),溶出效率(DE)和平均溶解时间(MDT)的综合作用。对于三元系统的制备和优化,使用实验(DOE)的设计。用傅里叶变换红外光谱(FTIR),差示扫描量热法(DSC),X射线衍射(XRD)和粒度分析分析药物聚合物相互作用。溶解度研究的结果表明,CLT的溶解度显着增加,PVP K30和HPB浓度增加(* P <0.05)。这可能是由于PVP K30和HPB复杂形成的溶解作用。使用喷雾干燥方法使用DOE方法制备的PVP K30和HPB的各种组合表现出与其物理混合物的更大溶解度(* P <0.05)。 FTIR,DSC,XRD和粒度分析的结果显示CLT,PVP K30和HPB之间的相互作用。这表明非晶三元系统的形成,平均粒径在312±1.35nm的范围内。结合PVP K30和HPB与DOE方法的使用是制定CLT三元系统的有效工具。

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