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Hybridoma technology is used for the large-scale production of monoclonal antibodies. Monoclonal antibodies bind to only a single antigenic determinant or epitope. Such antibodies are used in research, diagnostics, and disease therapy. The hybridoma technology established in 1975 by Georges Köhler and Cesar Milstein was awarded the Nobel Prize in Medicine in 1984 for revolutionizing research and therapy.
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Commonly used fusion techniques — electroporation,...
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微生物材料混合物用于治疗应用.

Meng Chen1,2, Lili Xia1, Chenyao Wu1

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微生物-物质杂交利用独特的微生物特性来实现先进的纳米医学. 这些活生生的生物材料为各种疾病提供了增强的药物输送和治疗潜力.

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科学领域:

  • 生物医学工程 生物医学工程
  • 纳米技术 纳米技术
  • 微生物学 微生物学

背景情况:

  • 微生物是天然的生物物质,在医学中用于制造微生物-物质混合体.
  • 工程微生物参与纳米医学利用独特的微生物生理属性,包括缺氧倾向和氧气生产.
  • 这些特性可以实现协同增强,以改善药物输送,特定部位治疗和治疗监测.

研究的目的:

  • 审查生物医学中使用的微生物和微生物衍生物.
  • 概述构建微生物材料混合物的策略.
  • 为了说明各种生物医学应用,并讨论临床翻译的挑战.

主要方法:

  • 关于生物医学中的微生物和微生物衍生物的文献综述.
  • 描述构建微生物材料混合物的策略和机制.
  • 生物医学应用的详尽说明,包括生物成像和各种疗法.

主要成果:

  • 微生物材料混合物为治疗应用提供了协同增强.
  • 不同的应用包括生物成像,抗瘤,抗菌和抗炎疗法.
  • 微生物-物质混合体显示出下一代纳米医学的前景,具有超神学性质.

结论:

  • 微生物-物质混合体为扩大疾病治疗疗效提供了巨大的机会.
  • 这些混合物的独特多功能性使他们成为先进纳米医学的有希望的候选人.
  • 需要对临床翻译进行进一步的研究,才能充分发挥其潜力.