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首页> 外文期刊>International Journal of Pharmaceutics >Micro/nanostructured inhalable formulation based on polysaccharides: Effect of a thermoprotectant on powder properties and protein integrity
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Micro/nanostructured inhalable formulation based on polysaccharides: Effect of a thermoprotectant on powder properties and protein integrity

机译:基于多糖的微/纳米结构可吸入配方:热保护剂对粉末性能和蛋白质完整性的影响

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摘要

Combined micro-and nanosystems are appealing for pulmonary protein delivery, fulfilling the specific physiological requirements for efficient outcomes in-vivo. However, fabrication of protein formulations may impose stresses perturbing protein conformational stability and, hence, biological activity. Herein, a protein, insulin (INS), was nanoencapsulated inside chitosan nanoparticles (CS NPs) by ionic gelation. By spray drying, the resultant protein-loaded NPs were further encapsulated with a thermoprotectant into powders bearing adequate aerodynamic properties for lung delivery. Structural modifications and interactions of the protein/carrier system were investigated following processing, with special emphasis on protein integrity. Accordingly, physicochemical, elemental, structural and thermal experiments were performed. The analyses revealed the localization of a proportion of the protein on the NPs' surface following nanoencapsulation, and the involved molecular interactions between the NPs and thermoprotectant after microencapsulation. Protein integrity was conserved throughout the preparation processes. This highlights the non-invasiveness of the fabrication techniques, particularly spray drying, for preparing micro-nanosystems for effective administration of inhalable macromolecules.
机译:组合的微型和纳米系统对肺蛋白递送吸引,满足了体内有效结果的特定生理要求。然而,蛋白质制剂的制备可能施加应力扰动蛋白质构象稳定性,因此,生物活性。这里,通过离子凝胶化在壳聚糖纳米粒子(CS NPS)内纳米载体含有蛋白质胰岛素(INS)。通过喷雾干燥,将所得蛋白质负载的NPS进一步用热保护剂包封成携带足够的气体动力学性能的肺部递送。蛋白质/载体系统的结构修饰和相互作用在加工后进行了调查,特别强调蛋白质完整性。因此,进行物理化学,元素,结构和热实验。分析揭示了纳米常设后NPS表面上的蛋白质比例的定位,并且在微胶囊化后NPS和热保护剂之间的涉及分子相互作用。在整个制备过程中保存蛋白质完整性。这突出了制造技术,特别是喷雾干燥的非侵袭性,用于制备用于有效施用可吸入的大分子的微纳米系统。

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