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首页> 外文期刊>Pharmaceutical research >Engineering of an inhalable dda/tdb liposomal adjuvant: A quality-by-design approach towards optimization of the spray drying process
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Engineering of an inhalable dda/tdb liposomal adjuvant: A quality-by-design approach towards optimization of the spray drying process

机译:可吸入的dda / tdb脂质体佐剂的工程设计:一种通过质量优化喷雾干燥工艺的方法

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Purpose: The purpose of this study was to identify and optimize spray drying parameters of importance for the design of an inhalable powder formulation of a cationic liposomal adjuvant composed of dimethyldioctadecylammonium (DDA) bromide and trehalose-6,6′-dibehenate (TDB). Methods: A quality by design (QbD) approach was applied to identify and link critical process parameters (CPPs) of the spray drying process to critical quality attributes (CQAs) using risk assessment and design of experiments (DoE), followed by identification of an optimal operating space (OOS). A central composite face-centered design was carried out followed by multiple linear regression analysis. Results: Four CQAs were identified; the mass median aerodynamic diameter (MMAD), the liposome stability (size) during processing, the moisture content and the yield. Five CPPs (drying airflow, feed flow rate, feedstock concentration, atomizing airflow and outlet temperature) were identified and tested in a systematic way. The MMAD and the yield were successfully modeled. For the liposome size stability, the ratio between the size after and before spray drying was modeled successfully. The model for the residual moisture content was poor, although, the moisture content was below 3% in the entire design space. Finally, the OOS was drafted from the constructed models for the spray drying of trehalose stabilized DDA/TDB liposomes. Conclusions: The QbD approach for the spray drying process should include a careful consideration of the quality target product profile. This approach implementing risk assessment and DoE was successfully applied to optimize the spray drying of an inhalable DDA/TDB liposomal adjuvant designed for pulmonary vaccination. [Figure not available: see fulltext.]
机译:目的:本研究的目的是确定和优化喷雾干燥参数,这些参数对于设计由溴化二甲基二十八烷基cy(DDA)和海藻糖-6,6'-二山be酸酯(TDB)组成的阳离子脂质体佐剂的可吸入粉剂设计至关重要。方法:通过风险评估和实验设计(DoE),采用质量设计(QbD)方法来识别喷雾干燥过程的关键过程参数(CPP)并将其链接到关键质量属性(CQA),然后确定最佳操作空间(OOS)。进行了中心复合面心设计,然后进行了多元线性回归分析。结果:确定了四个CQA;质量中位数空气动力学直径(MMAD),加工过程中的脂质体稳定性(大小),水分含量和产量。确定并测试了五种CPP(干燥气流,进料流速,原料浓度,雾化气流和出口温度)并进行了测试。 MMAD和产量已成功建模。对于脂质体的尺寸稳定性,成功模拟了喷雾干燥前后的尺寸比。剩余水分含量的模型很差,尽管在整个设计空间中水分含量都低于3%。最后,从用于海藻糖稳定的DDA / TDB脂质体喷雾干燥的模型中绘制了OOS。结论:喷雾干燥过程的QbD方法应包括对质量目标产品特性的仔细考虑。这种实施风险评估和DoE的方法已成功应用于优化为肺疫苗接种设计的可吸入DDA / TDB脂质体佐剂的喷雾干燥。 [图不可用:请参见全文。]

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