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Polymer-based delivery systems for support and delivery of bacteriophages.

机译:基于聚合物的输送系统,用于支持和输送噬菌体。

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摘要

One of the most urgent problems in the fields of medicine and agriculture is the decreasing effectiveness of antibiotics. Once a miracle drug, antibiotics have recently become associated with the creation of antibiotic-resistant bacteria. The main limitations of these treatments include lack of both adaptability and specificity. To overcome these shortcomings of current antibiotic treatments, there has been a renewed interest in bacteriophage research.;Bacteriophages are naturally-occurring viruses that lyse bacteria. They are highly specific, with each bacteriophage type lysing a narrow range of bacteria strains. Bacteriophages are also ubiquitous biological entities, populating environments where bacterial growth is supported. Just as humans are exposed to bacteria in their daily lives, we are exposed to bacteriophages as well.;To use bacteriophages in practical applications, they must be delivered to the site of an infection in a controlled-release system. Two systems were studied to observe their support of bacteriophage lytic activity, as well as investigate the possibility of controlling bacteriophage release rates. First, hydrogels were studied, using crosslinking and blending techniques to achieve a range of release profiles. Second, polyanhydride microparticles were studied, evaluating release rates as a function of monomer chemistries.
机译:在医学和农业领域中最紧迫的问题之一是抗生素效力的下降。曾经是一种奇迹药物,最近抗生素已与抗药性细菌的产生联系在一起。这些治疗方法的主要局限性包括缺乏适应性和特异性。为了克服当前抗生素治疗的这些缺点,对噬菌体的研究有了新的兴趣。噬菌体是裂解细菌的天然存在的病毒。它们是高度特异性的,每种噬菌体均能溶解范围很窄的细菌菌株。噬菌体也是无处不在的生物实体,位于支持细菌生长的环境中。正如人类在日常生活中暴露于细菌一样,我们也暴露在噬菌体中;要在实际应用中使用噬菌体,必须将它们通过控释系统运送到感染部位。研究了两个系统以观察其对噬菌体裂解活性的支持,以及研究控制噬菌体释放速率的可能性。首先,使用交联和共混技术研究了水凝胶,以实现一定范围的释放曲线。其次,研究了聚酸酐微粒,评估了释放速率与单体化学性质的关系。

著录项

  • 作者

    Brown, Alyssa Marie.;

  • 作者单位

    Iowa State University.;

  • 授予单位 Iowa State University.;
  • 学科 Materials science.;Biomedical engineering.;Microbiology.
  • 学位 M.S.
  • 年度 2014
  • 页码 78 p.
  • 总页数 78
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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