首页> 外文期刊>International Journal of Pharmaceutics >Production of dry-state ketoprofen-encapsulated PMMA NPs by coupling micromixer-assisted nanoprecipitation and spray drying
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Production of dry-state ketoprofen-encapsulated PMMA NPs by coupling micromixer-assisted nanoprecipitation and spray drying

机译:通过偶联微混装器辅助纳米沉淀和喷雾干燥生产干式酮丁丁烯包装的PMMA NPS

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摘要

We present a two-step process to produce dry-state Ketoprofen-loaded poly(methyl methacrylate) nanoparticles (NPs) with controllable size and tunable drug release profile. A colloidal suspension of drug-loaded nanoparticles was first obtained from a nanoprecipitation process and then transferred into a commercial spray dryer. Three micromixers of different designs and mixing principles (molecular diffusion and impact mixing) were tested. After the first step, highly monomodal NPs in the size range 100 to 210 nm were obtained as seen by the low polydispersity index value (ca. PDI similar to 0.2) returned by a dynamic light scattering detector. Physicochemical properties, encapsulation efficiency/ratio and drug release kinetics of NPs before and after drying were determined. For similar operating conditions, the best micromixer tested (impact mixing) allowed concluding that the NPs size was not significantly affected by the spray drying while encapsulation parameters and drug release rate were slightly decreased compared to the non spray-dried NPs. A sustained drug release was observed over 6 h and the drug release rate (up to 70%) was found to vary with the size of the NPs which in turn was a function of the flow rate ratio between the polymer solution and the non-solvent solution.
机译:我们介绍了一种两步方法,生产具有可控尺寸和可调药物释放曲线的干式酮加载的纳米颗粒(NPS)。首先从纳米沉淀方法获得药物负载纳米颗粒的胶体悬浮液,然后转移到商用喷雾干燥器中。测试了三种不同设计和混合原理(分子扩散和冲击混合)的微混合物。在第一步之后,通过动态光散射检测器返回的低多分散性指数值(CA.PDI类似于0.2),获得尺寸范围100至210nm的高度单兆位的NP。测定了干燥前后NPS的物理化学性质,封装效率/比和药物释放动力学。对于类似的操作条件,测试所测试的最佳微混合物(冲击混合)的结论使得NPS尺寸不会受到喷雾干燥的显着影响,而与非喷雾干燥的NP相比,封装参数和药物释放速率略微降低。观察到持续的药物释放超过6小时,发现药物释放速率(高达70%)随着NP的尺寸而变化,这反过来是聚合物溶液和非溶剂之间的流速比的函数解决方案。

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