所有包装:在单个酶纳米颗粒中稳定酶
Robert Chapman1, Martina H Stenzel1
1Centre for Advanced Macromolecular Design (CAMD), School of Chemistry , University of New South Wales , Sydney , New South Wales 2052 , Australia.
Journal of the American Chemical Society
|January 10, 2019
概括
单个酶纳米颗粒 (SEN) 为酶提供了增强的稳定性和可调节的活性. 这种创新方法可以保护酶免受恶劣环境的影响,延长它们的催化寿命,并允许按需控制活性.
科学领域:
- 生物技术
- 材料科学
- 酶工程
背景情况:
- 酶是工业和制药中的重要催化剂, 但它们的稳定性往往有限.
- 传统的方法如固定和化学修饰旨在提高酶的寿命.
- 保持酶活性,稳定性和可调控性的平衡仍然是一个关键挑战.
研究的目的:
- 探索单个酶纳米颗粒 (SEN) 的潜力,以提高酶稳定性和活性控制.
- 研究SEN中的聚合物外如何在苛刻的环境中影响酶性能.
- 突出SEN作为先进生物催化剂的有前途平台.
主要方法:
- 酶被封装在单个纳米粒子中使用聚合物外.
- 制备方法包括现场聚合或在酶周围组装预制聚合物.
- 鉴定侧重于酶活性,稳定性和基质扩散控制.
主要成果:
- 即使对于敏感的酶,SEN也表现出了显著的稳定性,并保持了高的初始活性.
- 聚合物外可以防止溶剂,温度和pH的变质.
- 通过调整外材料的特性,可以有效地微调酶活性.
结论:
- 生物催化剂是一个新兴领域,具有显著的生物催化潜力.
- 这种技术可以在恶劣条件下延长酶的催化寿命.
- 通过外部调制,SEN可实现酶活性的可逆开启/关闭.
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