School of Biomedical Engineering, Anhui Medical University, Hefei 230032, China.
ACS Biomater Sci Eng. 2024 Sep 9;10(9):5562-5594. doi: 10.1021/acsbiomaterials.4c01191. Epub 2024 Aug 15.
As a new micromanipulation tool with the advantages of small size, flexible movement and easy manipulation, light-driven microrobots have a wide range of prospects in biomedical fields such as drug targeting and cell manipulation. Recently, microrobots have been controlled in various ways, and light field has become a research hotspot by its advantages of noncontact manipulation, precise localization, fast response, and biocompatibility. It utilizes the force or deformation generated by the light field to precisely control the microrobot, and combines with the drug release technology to realize the targeted drug application. Therefore, this paper provides an overview of light-driven microrobots with drug targeting to provide new ideas for the manipulation of microrobots. Here, this paper briefly categorizes the driving mechanisms and materials of light-driven microrobots, which mainly include photothermal, photochemical, and biological. Then, typical designs of light-driven microrobots with different driving mechanisms and control strategies for multiple physical fields are summarized. Finally, the applications of microrobots in the fields of drug targeting and bioimaging are presented as well as the future prospects of light-driven microrobots in the biomedical field are demonstrated.
作为一种具有体积小、运动灵活、易于操作等优点的新型微操纵工具,光驱动微型机器人在药物靶向和细胞操作等生物医学领域具有广泛的应用前景。最近,微型机器人已经通过各种方式得到了控制,而光场因其非接触式操作、精确定位、快速响应和生物相容性等优点,成为了一个研究热点。它利用光场产生的力或变形来精确控制微型机器人,并结合药物释放技术实现靶向药物应用。因此,本文综述了具有药物靶向功能的光驱动微型机器人,为微型机器人的操纵提供了新的思路。本文简要分类了光驱动微型机器人的驱动机制和材料,主要包括光热、光化学和生物学。然后,总结了不同驱动机制和多种物理场控制策略的光驱动微型机器人的典型设计。最后,介绍了微型机器人在药物靶向和生物成像领域的应用,并展示了光驱动微型机器人在生物医学领域的未来前景。