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Development of antiproliferative long-circulating liposomes co-encapsulating doxorubicin and curcumin, through the use of a quality-by-design approach

机译:通过使用按质量设计方法,将阿霉素和姜黄素共包裹的抗增殖长循环脂质体的开发

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The aim of this work was to use the quality-by-design (QbD) approach in the development of long-circulating liposomes co-loaded with curcumin (CUR) and doxorubicin (DOX) and to evaluate the cytotoxic potential of these liposomes in vitro using C26 murine colon carcinoma cell line. Based on a risk assessment, six parameters, namely the phospholipid, CUR and DOX concentrations, the phospholipid:cholesterol molar ratio, the temperature during the evaporation and hydration steps and the pH of the phosphate buffer, were identified as potential risk factors for the quality of the final product. The influence of these variables on the critical quality attributes of the co-loaded liposomal CUR and DOX was investigated: particle size, zeta potential, drug loading and entrapment efficiency. For this, a 26-2 factorial design was employed to establish a proper regression model and to generate the contour plots for the responses. The obtained data served to establish the design space for which different combinations of variables yielded liposomes with characteristics within predefined specifications. The validation of the model was carried out by preparing two liposomal formulations corresponding to the robust set point from within the design space and one outside the design space and calculating the percentage bias between the predicted and actual experimental results. The in vitro antiproliferative test showed that at higher CUR concentrations, the liposomes co-encapsulating CUR and DOX had a greater cytotoxic effect than DOX-loaded liposomes. Overall, this study showed that QbD is a useful instrument for controlling and optimizing the manufacturing process of liposomes co-loaded with CUR and DOX and that this nanoparticulate system possesses a great potential for use in colon cancer therapy.
机译:这项工作的目的是使用质量设计(QbD)方法开发与姜黄素(CUR)和阿霉素(DOX)共同负载的长循环脂质体,并评估这些脂质体的体外细胞毒性潜力使用C26鼠结肠癌细胞系。根据风险评估,确定了六个参数,即磷脂,CUR和DOX浓度,磷脂:胆固醇摩尔比,蒸发和水合步骤的温度以及磷酸盐缓冲液的pH值,是影响质量的潜在风险因素最终产品。研究了这些变量对共同负载脂质体CUR和DOX的关键质量属性的影响:粒径,ζ电位,载药量和包封效率。为此,采用2 6-2 析因设计来建立适当的回归模型并生成用于响应的等高线图。所获得的数据用于建立设计空间,通过该设计空间,变量的不同组合可产生具有预定规格内特性的脂质体。通过从设计空间内和设计空间外制备两种与稳固设定点相对应的脂质体制剂,并计算预测和实际实验结果之间的百分比偏差来进行模型验证。体外抗增殖试验表明,在较高的CUR浓度下,与CDO和DOX共同包裹的脂质体比载有DOX的脂质体具有更大的细胞毒性作用。总的来说,这项研究表明,QbD是控制和优化与CUR和DOX共同负载的脂质体制造工艺的有用工具,并且这种纳米微粒系统具有在结肠癌治疗中使用的巨大潜力。

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