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王良梦、罗明等撰写的综述论文被Interdisciplinary Materials接收

发布时间:2022-02-24

祝贺王良梦、郝晓蒙、高志雪、杨自立和罗明等撰写的综述论文“Artificial Nanomotors: Fabrication, Locomotion Characterization, Motion Manipulation and Biomedical Applications.”Wiley出版集团与武汉理工大学联合创办的开放获取式高水平学术期刊Interdisciplinary Materials正式接收!纳米马达是能够将周围其他形式能量转化为机械运动,主动进入生物体病变组织和细胞的纳米机器。它们有可能给疾病的诊断和治疗带来变革性新技术,是纳米科学极具挑战性的研究前沿领域。在这篇论文中,我们讨论了微纳米马达作为主动靶向药物递送系统应该具备的条件,详细综述了纳米马达的制备技术、运动表征技术、运动控制策略以及主动给药应用的研究现状,指出了该领域研究目前存在的问题及未来的发展方向。

    原文的详细摘要如下:Artificial nanomotors are nanoscale machines capable of converting surrounding other energy into mechanical motion and thus entering the tissues and cells of organisms. They hold great potentials to revolutionize the diagnosis and treatment of diseases by actively targeting to the lesion location, though there are many new challenges that arise with decreasing the size to nanoscale. This review summarizes and comments the state-of-the-art artificial nanomotors with advantages and limitations. It starts with the fabrication methods including commonly physical vapor deposition and colloidal chemistry methods, followed by the locomotion characterization and motion manipulation. Then, the in vitro and in vivo biomedical applications are introduced in detail. The challenges and future prospects are discussed in the end.



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