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Factors Affecting Physical Properties of Prednisolone Loaded Nanoparticles Fabricated by Eletrohydrodynamic Atomization Technique

机译:影响Eletroydroynamic雾化技术制造的泼尼松龙纳米粒子物理性质的因素

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Recently, nanoparticulate system has been applied to deliver drug to colon because this system can increase drug absorption, prolong drug staying in gastrointestinal tract and also minimize chance of dose dumping effect. In this study, nanoparticles (NPs) developed for colonic drug delivery were fabricated via electrohydrodynamic atomization (EHDA) to find suitable formulation and preparation conditions. The NPs were prepared by dissolving prednisolone (model drug) and Eudragit S100 (EDS100) in methanol, ethanol, isopropanol, butanol and mixtures of ethanol with purified water in various drug/polymer weight ratio and polymer concentrations. After that, the prepared solution was injected using the EHDA machine. The preparation condition and the instrument parameters such as applied voltage, injected distance, feed rate, and drum collector rolling rate were delicately adjusted again to obtain blank and drug loaded NPs. The NPs papered from methanol offered spherical particles with diameter size of 422 nm. The products of isopropanol and butanol were shrinkage particles. The sprayed products were changed from particle to fiber when using the spraying solution prepared from high concentration of EDS 100. More fiber product was obtained when high applied voltage (20kV) was utilized. Prednisolone loaded NPs were also fabricated by EHDA. SEM and zeta-potential results reveal that prednisolone was entrapped in the NPs. All the drug loaded NPs products were in spherical shape with average diameter size of 448.60-660.98 nm and the maximum drug encapsulation was 92.65%. From the preliminary result, this nanoparticulate system expresses possibility to fabricate specific colonic drug delivery.
机译:最近,纳米颗粒系统已被应用于将药物递送给结肠,因为该系统可以增加吸毒,延长胃肠道的药物,并且还最大限度地减少剂量倾倾效应的可能性。在该研究中,通过电液动力学雾化(EHDA)制造用于结肠药物递送的纳米颗粒(NPS),以找到合适的制剂和制备条件。通过将甲醇,乙醇,异丙醇,丁醇和乙醇的混合物溶解在甲醇,乙醇,异丙醇,丁醇和各种药物/聚合物重量比和聚合物浓度的纯净水中来制备NPS。之后,使用EHDA机器注射制备的溶液。准备状况和仪器参数如施加的电压,注入距离,进料速率和鼓收集器滚动速率再次调节,以获得坯料和药物负载的NPS。从甲醇中纸张的NPS提供的球形颗粒直径尺寸为422nm。异丙醇和丁醇的产物是收缩颗粒。当使用由高浓度的EDS 100制备的喷涂溶液时,喷涂产物从颗粒变为纤维。当使用高施加的电压(20kV)时,获得更多纤维产品。泼尼松龙加载的NPS也由EHDA制造。 SEM和Zeta-潜在的结果表明,泼尼松龙被捕获在NPS中。所有药物负载的NPS产品均为球形形状,平均直径尺寸为448.60-660.98nm,最大药物包封为92.65%。从初步结果来看,该纳米颗粒系统表达了制造特异性结肠药物递送的可能性。

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