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Selective Deformation of Single Macromolecules and Biomolecular Structures as a Method for Remote Control of Their Properties and Functions for Next-Generation Medicine

机译:单次大分子和生物分子结构的选择性变形作为远程控制其下一代药物的性能和功能的方法

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摘要

An innovative nanomechanical strategy for in vivo biomedical applications is reviewed. The strategy is based on the use of complexes of special functionalized magnetic nanoparticles controlled by an external low-frequency nonheating magnetic field as deformation machines. The advantages of the strategy are the possibility of easily achieved nanoscale locality and molecular selectivity of action (at the level of individual macromolecules and macromolecular structures such as liposomes, living cells, cell organelles), multimodality, safety, and a high potential of therapeutic application, in particular, for noninvasive oncotherapy without drugs.
机译:综述了体内生物医学应用的创新纳米力学策略。 该策略基于使用由外部低频非热磁场控制的特殊功能化磁性纳米粒子的复合物作为变形机。 该策略的优点是易于实现纳米级局部性和分子选择性的可能性(在单个大分子和大分子结构的水平,例如脂质体,活细胞,细胞器),多模,安全性和治疗应用的高潜力 但特别是没有毒品的非侵入性疾病。

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