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Excipient-excipient interactions in the development of nanocarriers: an innovative statistical approach for formulation decisions

机译:纳米载波发展中的辅助赋形剂相互作用:制定决策的创新统计方法

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Excipient interaction has become essential knowledge for rational formulation design of nanoparticles. Nanostructured lipid carriers (NLCs) include at least three types of excipient, which enhance excipient interaction possibilities and relevance. The present article introduces an alternative approach for evaluating a great number of excipients with few samples, using NLC as a model delivery system. This approach is based on two sequential experiments using Hall-2 experimental design and analysis of excipient interactions in respect to their physicochemical properties by multilevel statistics. NLCs were prepared using a hot emulsification-ultrasonication method with lidocaine and nine excipients (solid lipids, oils and surfactants). The evaluated parameters were z-average size (DLS), dispersity (DLS), zeta potential (electrophoretic mobility) and entrapment efficiency (HPLC). Cetyl palmitate, beeswax, castor oil, capric/caprylic acid and polysorbate 80 all presented larger effects amongst the studied factors as well as a clear pattern of synergistic interactions. Following the verified trends, we produced an optimized NLC that exhibited all desirable physicochemical characteristics and a modified drug release profile. Our results demonstrate the methodology's robustness, which can be applied to other nanoparticles and establish a cost-effective excipient evaluation.
机译:赋形剂相互作用已成为纳米粒子合理配方设计的基本知识。纳米结构脂质载体(NLC)包括至少三种类型的赋形剂,其增强赋形剂相互作用可能性和相关性。本文介绍了使用NLC作为模型输送系统的少量样本评估大量赋形剂的替代方法。这种方法基于使用HALL-2实验设计的两个顺序实验,并通过多级统计分析其物理化学性质的赋形剂相互作用。使用具有利多卡因和九种赋形剂(固体脂质,油和表面活性剂)的热乳化 - 超声法制备NLC。评估的参数是Z平均尺寸(DLS),分散度(DLS),Zeta电位(电泳迁移率)和熵效率(HPLC)。十六烷基棕榈酸酯,蜂蜡,蓖麻油,癸酸和聚山梨醇酸和多山梨醇酯80在研究的因素中呈现出较大的效果以及明确的协同相互作用模式。在经过验证的趋势之后,我们生产了一种优化的NLC,其表现出所有所需的物理化学特性和修饰的药物释放曲线。我们的结果证明了方法论的鲁棒性,可应用于其他纳米粒子并建立具有成本效益的辅料评估。

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