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Formulating nanoparticles by flash nanoprecipitation for drug delivery and sustained release.

机译:通过快速纳米沉淀配制纳米颗粒,以实现药物递送和持续释放。

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This dissertation provides a fundamental understanding of the process for generating nanoparticles with controlled size distribution and of predicting nanoparticle stability for drug delivery and sustained release. We developed and characterized a novel technology to generate organic and inorganic nanoparticles protected by biocompatible and biodegradable polymers with precisely controlled size and size distribution. Computational fluid mechanics (CFD) together with experimental results provided details of the micromixing in the mixer. The particle size dependence on Reynolds number and supersaturation was illustrated.; The study of the fundamental mass transfer phenomena leading to Ostwald ripening enables quantitative prediction of the time evolution of nanoparticles with monodistribution and relatively broader multi-distribution using beta-carotene and polystyrene-b-poly(ethylene oxide) (PS-b-PEO) as a model system.; Negatively charged latex particles were used to exam the attachment of the diblock copolymer, PS-b-PEO, on the surface. The stability provided by the Columbic repulsion was replaced by steric stabilization. The attachment of the block copolymers on the surface of the colloids depends on the flow field, i.e. Reynolds number, of the mixing process. The slow degradation of poly(epsilon-caprolactone) (PCL) and poly(gamma-methyl-epsilon-caprolactone) (PMCL) was demonstrated. The slow degradation ensures long-term stability and long-term blood circulation of the polymeric nanoparticles.; As a practical application, we formulate the anti-tuberculosis drug, rifampicin, into nanoparticles by conjugation to other hydrophobic molecules (such as vitamin E, PCL and 2-ethylhexyl vinyl ether) by pH sensitive cleavable chemical bonds to increase the drug loading, return stability of the nanoparticle suspension, and control drug release. The in vitro release profiles were provided by using HPLC and E.coli growth inhibition on LB agar plates. The prodrug nanoparticle suspensions were spray dried to form low density porous micro-particles for the purpose of aerosol drug delivery. The simultaneous encapsulation of imaging agents and therapeutic agents provides a method for studying the fate of nanoparticles and for medical imaging with treatment.; As another example, bifenthrin nanoparticle suspensions with various stabilizers were formulated. The pesticide, bifenthrin, was used to test whether nanoparticles provided an advantage in increasing the effectiveness of pesticide formulations. Larvae mortality with the application of nanoparticle suspension was about 2.5 times of the mortality with the application of bifenthrin mineral oil solution. Nanoparticles at very low bifenthrin concentration showed sustained release for fourteen days.
机译:本论文对产生具有受控尺寸分布的纳米颗粒的过程以及预测用于药物递送和持续释放的纳米颗粒稳定性提供了基本的了解。我们开发并表征了一种新技术,该技术可生成受生物相容性和可生物降解的聚合物保护的有机和无机纳米粒子,并精确控制尺寸和尺寸分布。计算流体力学(CFD)以及实验结果提供了混合器中微混合的详细信息。说明了粒度对雷诺数和过饱和度的依赖性。对导致奥斯特瓦尔德熟化的基本传质现象的研究使得能够定量预测使用β-胡萝卜素和聚苯乙烯-b-聚环氧乙烷(PS-b-PEO)的具有单分布和相对较宽的多分布的纳米粒子的时间演化作为模型系统。带负电的乳胶颗粒用于检查二嵌段共聚物PS-b-PEO在表面上的附着。哥伦布排斥力所提供的稳定性被空间稳定所取代。嵌段共聚物在胶体表面上的附着取决于混合过程的流场,即雷诺数。证明了聚(ε-己内酯)(PCL)和聚(γ-甲基-ε-己内酯)(PMCL)的缓慢降解。缓慢的降解确保了聚合物纳米颗粒的长期稳定性和长期血液循环。作为实际应用,我们通过pH敏感的可裂解化学键与其他疏水性分子(例如维生素E,PCL和2-乙基己基乙烯基醚)结合,将抗结核药物利福平制成纳米颗粒,从而增加了药物的载量,回收率纳米颗粒悬浮液的稳定性,并控制药物释放。通过使用HPLC和在LB琼脂平板上的大肠杆菌生长抑制来提供体外释放曲线。将前药纳米颗粒悬浮液喷雾干燥以形成低密度多孔微粒,以用于气雾剂给药。成像剂和治疗剂的同时包封提供了一种研究纳米颗粒的命运以及用于治疗医学成像的方法。作为另一个实例,配制了具有各种稳定剂的联苯菊酯纳米颗粒悬浮液。使用农药联苯菊酯(Bifenthrin)来测试纳米颗粒是否在提高农药配方的有效性方面具有优势。使用纳米颗粒悬浮液的幼虫死亡率约为联苯菊酯矿物油溶液死亡率的2.5倍。联苯菊酯浓度极低的纳米颗粒显示持续释放十四天。

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