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Lessons in Microcapsule Assembly from Imaging Delivery of a Bioluminescent Enzyme

机译:微胶囊组件中的课程从成像酶的成像递送

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摘要

Layer-by-layer assembled microcapsules have potential applications as delivery and biosensing systems, which make them attractive tools for use in various aspects of nanomedicine. We examined the effect of microcapsule location on activity of the bioluminescent enzyme luciferase in both intact capsules and following cell uptake. In intact capsules, the rate of reaction of luciferase was greatest for luciferase in the outer layer and least in the core. Following cell uptake, luciferase in the outer layer was rapidly reactive, and a similar rate of reaction and activity was observed for luciferase placed in capsule interior (core). By contrast, there was minimal activity detected when microcapsules with luciferase sandwiched between polyelectrolytes in a middle layer were delivered to cells. This study informs us of the availability of bioactive molecules located in different positions within microcapsules and will enable better microcapsule construction in line with the intended application, particularly delivery of functional proteins to cells.
机译:逐层组装的微胶囊具有作为递送和生物传感系统的潜在应用,使其使其具有用于纳米医生的各个方面的有吸引力的工具。我们检查了微胶囊位置对完整胶囊和后续细胞吸收中的生物发光酶荧光素酶活性的影响。在完整的胶囊中,荧光素酶的反应速率对于外层中的荧光素酶最大,并且在芯中最少。在细胞吸收之后,外层中的荧光素酶快速反应,并观察到在胶囊内部(核心)中的荧光素酶观察到类似的反应和活性速率。相反,当用中间层中的聚电解质夹在中间层之间的荧光素酶的微胶囊被递送至细胞时,检测到最小的活性。本研究向我们介绍了在微胶囊内不同位置的生物活性分子的可用性,并能够与预期的应用,特别是递送功能蛋白质的更好的微胶囊结构。

著录项

  • 来源
    《Biomacromolecules》 |2013年第3期|共5页
  • 作者单位

    Queen Mary University of London/ School of Engineering &

    Materials Science London El 4NS U.K.;

    Queen Mary University of London/ School of Engineering &

    Materials Science London El 4NS U.K.;

    Queen Mary University of London Bone &

    Joint Research Unit William Harvey Research Institute London EC1M 6BQ U.K.;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子生物学;
  • 关键词

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