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Straintronics for Nanomedicine: Manipulating Biochemical Systems via Controllable Macromolecular Nanodeformation
Bulletin of the Russian Academy of Sciences: Physics Pub Date : 2020-08-20 , DOI: 10.3103/s1062873820070102
Yu. I. Golovin , A. O. Zhigachev , D. Y. Golovin , S. L. Gribanovsky , A. V. Kabanov , N. L. Klyachko

Abstract

An analysis of the current strategy of the nano-magnetomechanical actuation of biochemical systems by utilizing the concept of straintronics for nanomedicine is performed. Such systems use magnetic nanoparticles controlled by nonheating low-frequency magnetic field. Theoretical models of targeted strain nanoactuation of biomolecular systems and recent experimental results are considered.


中文翻译:

用于纳米医学的Straintronics:通过可控的大分子纳米变形来操纵生化系统

摘要

利用用于纳米医学的应变电子学的概念,对生化系统的纳米磁机械致动的当前策略进行了分析。这样的系统使用受非加热低频磁场控制的磁性纳米颗粒。考虑了生物分子系统的靶向应变纳米驱动的理论模型和最近的实验结果。
更新日期:2020-08-20
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