首页> 外文期刊>International Journal of Pharmaceutics >A novel bottom-up process to produce nanoparticles containing protein and peptide for suspension in hydrofluoroalkane propellants.
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A novel bottom-up process to produce nanoparticles containing protein and peptide for suspension in hydrofluoroalkane propellants.

机译:一种新的自下而上的方法,用于生产包含蛋白质和多肽的纳米颗粒,用于悬浮在氢氟烷烃推进剂中。

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To overcome the disadvantages of microemulsion and nanoprecipitation methods to produce protein-containing nanoparticles, a novel bottom-up process was developed to produce nanoparticles containing the model protein lysozyme. The nanoparticles were generated by freeze-drying a solution of lysozyme, lecithin and lactose in tert-butyl alcohol (TBA)/water co-solvent system and washing off excess lecithin in lyophilizate by centrifugation. Formulation parameters such as lecithin concentration in organic phase, water content in TBA/water co-solvent, and lactose concentration in water were optimized so as to obtain desired nanoparticles with retention of the bioactivity of lysozyme. Based on the results, 24.0% (w/v) of lecithin, 37.5% (v/v) of water content, and 0.56% (w/v) of lactose concentration were selected to generate spherical nanoparticles with approximately 200 nm in mean size, 0.1 in polydispersity index (PI), and 99% retained bioactivity of lysozyme. These nanoparticles rinsed with ethanol containing dipalmitoylphosphatidylcholine (DPPC), Span 85 or oleic acid (3%, w/v) could readily be dispersed in HFA 134a to form a stable suspension with good redispersibility and 98% retained bioactivity of lysozyme. The study indicates there is a potential to produce pressed metered dose inhaler (pMDI) formulations containing therapeutic protein and peptide nanoparticles.
机译:为了克服微乳液和纳米沉淀法生产含蛋白质纳米粒子的缺点,开发了一种新的自下而上的方法来生产含有模型蛋白质溶菌酶的纳米粒子。通过将溶菌酶,卵磷脂和乳糖在叔丁醇(TBA)/水共溶剂系统中的溶液冷冻干燥,并通过离心除去冻干物中的过量卵磷脂来生成纳米颗粒。优化配方参数,例如有机相中的卵磷脂浓度,TBA /水共溶剂中的水分含量和水中的乳糖浓度,以获得保留溶菌酶生物活性的所需纳米颗粒。根据结果​​,选择24.0%(w / v)卵磷脂,37.5%(v / v)的水含量和0.56%(w / v)的乳糖浓度以生成平均粒径约为200 nm的球形纳米颗粒,多分散指数(PI)为0.1和99%的溶菌酶保留了生物活性。这些用含二棕榈酰磷脂酰胆碱(DPPC),Span 85或油酸(3%,w / v)的乙醇冲洗的纳米颗粒可以很容易地分散在HFA 134a中,形成稳定的悬浮液,具有良好的再分散性和98%的溶菌酶保留的生物活性。研究表明,有可能生产包含治疗性蛋白质和肽纳米粒子的加压计量吸入器(pMDI)制剂。

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