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The design and scale-up of spray dried particle delivery systems

机译:喷雾干燥颗粒递送系统的设计和扩展

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Introduction: The rising demand for pharmaceutical particles with tailored physicochemical properties has opened new markets for spray drying especially for solubility enhancement, improving inhalation medicines and stabilization of biopharmaceuticals. Despite this, the spray drying literature is scattered and often does not address the principles underpinning robust development of Pharmaceuticals. It is therefore necessary to present clearer picture of the field and highlight the factors influencing particle design and scale-up. Areas covered: The review presents a systematic analysis of the trends in development of particle delivery systems using spray drying. This is followed by exploring the mechanisms governing particle formation in the process stages. Particle design factors including those of equipment configurations and feed/process attributes were highlighted. Finally, the review summarises the current industrial approaches for upscaling pharmaceutical spray drying. Expert opinion: Spray drying provides the ability to design particles of the desired functionality. This greatly benefits the pharmaceutical sector especially as product specifications are becoming more encompassing and exacting. One of the biggest barriers to product translation remains one of scale-up/scale-down. A shift from trial and error approaches to model-based particle design helps to enhance control over product properties. To this end, process innovations and advanced manufacturing technologies are particularly welcomed.
机译:简介:具有量身定制的物理化学性质的药物颗粒的需求上升开启了用于喷雾干燥的新市场,特别是对于溶解性提高,改善吸入药物和生物药物稳定性。尽管如此,喷雾干燥文献分散,往往不会解决药物的强大发展的原理。因此,有必要呈现明确的场景,并突出影响粒子设计和扩展的因素。涵盖地区:审查提出了对使用喷雾干燥的粒子输送系统发展趋势的系统分析。随后探索过程阶段中的粒子形成的机制。突出显示包括设备配置和进料/过程属性的粒子设计因素。最后,审查总结了目前升高药物喷雾干燥的工业方法。专家意见:喷雾干燥提供了设计所需功能粒子的能力。这极大地利用了制药部门,特别是产品规格变得越来越多,而且严格。产品翻译最大的壁垒之一仍然是扩展/缩放的一个。从试验和错误方法转移到基于模型的粒子设计有助于增强对产品性质的控制。为此,特别欢迎流程创新和先进的制造技术。

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