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Microuidics-Generated Biodegradable Polymeric Microparticles for Controlled Drug Delivery.

机译:Microuidics生成的可生物降解的聚合物微粒,用于控制药物的输送。

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摘要

While drug-loaded biodegradable polymer microparticles have found many therapeutic applications, bulk manufacturing methods produce heterogeneous populations of particles. A more highly controlled manufacturing method may provide the ability improve the microparticle characteristics such as the drug release profile. Microfluidic droplet-makers manipulate liquids on the scale of tens of microns and can produce highly regular and controlled emulsions. However, microfluidic droplet manufacturing is not typically designed for clinical translation and the chemicals used are often not biocompatible.;I developed a two-chip PDMS-based microfluidic device that can manufacture PLGA microparticle loaded with hydrophilic or hydrophobic drugs. I characterized protein-loaded microparticles made using this device and compared them with bulk-generated microparticles. The microfluidics-generated microparticles had similar release curves and encapsulation efficiencies as bulk-generated microparticles but a much narrower size distribution. I generated peanut protein-loaded microparticles with this device and tested them in a mouse model of peanut allergy, improving the particles as the project evolved to have a higher loading level and lower burst release. The microparticles improved the safety and efficacy of an immunotherapy protocol. I also encapsulated hydrophilic and hydrophobic chemotherapeutic drugs for a brain cancer model.
机译:尽管载有药物的可生物降解的聚合物微粒已经发现了许多治疗应用,但批量生产方法却产生了异质的粒子群。受到更高控制的制造方法可以提供改善微粒特性(如药物释放曲线)的能力。微流控滴液机可处理数十微米大小的液体,并可以产生高度规则和受控的乳液。但是,微流体液滴的制造通常不是为临床翻译而设计的,并且所使用的化学药品通常也不具有生物相容性。我开发了一种基于两芯片PDMS的微流体设备,该设备可以制造载有亲水性或疏水性药物的PLGA微粒。我表征了使用该设备制造的负载蛋白质的微粒,并将其与大量生成的微粒进行了比较。微流体产生的微粒具有与本体产生的微粒相似的释放曲线和包封效率,但是尺寸分布窄得多。我使用此设备生成了花生蛋白负载的微粒,并在对花生过敏的小鼠模型中对其进行了测试,随着项目的发展,该微粒具有更高的负载水平和更低的爆发释放,从而对其进行了改进。微粒提高了免疫疗法方案的安全性和有效性。我还封装了用于脑癌模型的亲水性和疏水性化学治疗药物。

著录项

  • 作者

    Roberts, Emily R. H.;

  • 作者单位

    Duke University.;

  • 授予单位 Duke University.;
  • 学科 Biomedical engineering.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 162 p.
  • 总页数 162
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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