作为离子选择性传送器和单分子传感器的罗塞特纳米管波林
Prabhat Tripathi1, Liang Shuai2, Himanshu Joshi3
1Department of Physics , Northeastern University , Boston , Massachusetts 02115 , United States.
Journal of the American Chemical Society
|January 9, 2020
概括
迷纳米管 (RNTs) 显示为合成的跨膜. 这些氨酸-氨酸基组合纳米管可以实现精确的离子传输和分子传感应用.
科学领域:
- 生物材料科学
- 纳米技术
- 分子生物物理学
背景情况:
- 迷彩纳米管 (RNTs) 是由合的关氨酸-氨酸基的分子自组组成的.
- 它们精确的原子结构使得它们适合设计合成的跨膜.
- RNTs提供了一个非蛋白质替代生物通道.
研究的目的:
- 通过不同长度的RNT孔隙 (RNTP) 实验性地研究离子运输.
- 描述RNTP的电导率和离子传输速率.
- 探索RNTP作为传感器和纳米过器的潜力.
主要方法:
- 在脂质囊中插入定制的脂性RNTP.
- 囊泡与平面脂质双层的融合以测量离子电流.
- 在1M KCl溶液中进行导电性测量.
- 分析α-环氧与RNTP的相互作用时间.
- 来自全原子分子动力学模拟的支持.
主要成果:
- 在脂质双层中观察到离子电流的逐步增加.
- 测量了大约50个离子的离子传输速率.
- 在短的RNTP通道中发现约1nS的导电率值.
- 两种不同的α- 环氧释时间表表明面部特异性相互作用.
结论:
- RNTPs具有与α-hemolysin等自然通道相似的离子传输特性.
- 这些结果表明RNTP在单分子传感方面的潜力.
- RNTP可以作为具有可调节性质的选择性纳米波器.
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