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Stabilization benefits of single and multi-layer self-nanoemulsifying pellets: A poorly-water soluble model drug with hydrolytic susceptibility

机译:单层和多层自纳米乳化丸剂的稳定化益处:水溶性差的模型药物具有水解敏感性

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摘要

Solidified self-nanoemulsifying drug delivery systems (SNEDDS) offer strong option to enhance both drug aqueous solubility and stability. The current study was designed to evaluate the potential stabilization benefits of solidifying cinnarizine (CN) liquid SNEDDS into single and multi-layer self-nanoemulsifying pellets (SL-SNEP and ML-SNEP, respectively). The selected formulations were enrolled into accelerated, intermediate and long-term stability studies. The chemical stability was assessed based on the % of intact CN remaining in formulation. The physical stability was assessed by monitoring the in-vitro dissolution and physical appearance of the formulations. The degradation pathway of CN within lipid-based formulation was proposed to involve a hydroxylation reaction of CN molecule. The chemical stability study revealed significant CN degradation in liquid SNEDDS, SL-SNEP and ML-SNEP (lacking moisture-sealing) within all the storage conditions. In contrast, the moisture sealed ML-SNEP showed significant enhancement of CN chemical stability within the formulation. In particular, ML-SNEP coated with Kollicoat Smartseal 30D showed superior CN stabilization and no significant decrease in dissolution efficiency, at all the storage conditions. The observed stability enhancement is owing to the complete isolation between CN and SNEDDS layer as well as the effective moisture protection provided by Kollicoat Smartseal 30D. Hence, the degradation problem could be eradicated completely. The incorporation of silicon dioxide had an important role in the inhibition of pellet agglomeration upon storage. Accordingly, ML-SNEP coated with Kollicoat Smartseal 30D and/or silicon dioxide could be an excellent dosage form that combine dual enhancement of CN solubilization and stabilization.
机译:固化的自纳米乳化药物递送系统(SNEDDS)为增强药物的水溶性和稳定性提供了强大的选择。本研究旨在评估将肉桂酸(CN)液体SNEDDS固化成单层和多层自纳米乳化小丸(分别为SL-SNEP和ML-SNEP)的潜在稳定效果。选定的制剂被纳入加速,中期和长期稳定性研究中。基于制剂中剩余的完整CN的百分比评估化学稳定性。通过监测制剂的体外溶解和物理外观来评估物理稳定性。提出基于脂质的制剂中CN的降解途径涉及CN分子的羟基化反应。化学稳定性研究表明,在所有储存条件下,液体SNEDDS,SL-SNEP和ML-SNEP(缺少水分密封)中的CN都会显着降解。相反,湿气密封的ML-SNEP在配方中显示出CN化学稳定性的显着提高。特别是,在所有储存条件下,涂有Kollicoat Smartseal 30D的ML-SNEP表现出优异的CN稳定性,且溶解效率没有明显降低。观察到的稳定性增强归因于CN和SNEDDS层之间的完全隔离以及Kollicoat Smartseal 30D提供的有效防潮功能。因此,可以完全消除退化问题。二氧化硅的掺入在储存时抑制颗粒团聚中起重要作用。因此,用Kollicoat Smartseal 30D和/或二氧化硅包衣的ML-SNEP可能是结合了CN增溶和稳定双重增强的极佳剂型。

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