School of Chemistry and Chemical Engineering, Harbin Institute of Technology, Harbin, 150001, China.
Emergency Department, Harbin First Hospital, Harbin, 150010, China.
ChemMedChem. 2024 Nov 4;19(21):e202400349. doi: 10.1002/cmdc.202400349. Epub 2024 Aug 23.
Bacterial infection, which can trigger varieties of diseases and tens of thousands of deaths each year, poses serious threats to human health. Particularly, the new dilemma caused by biofilms is gradually becoming a severe and tough problem in the biomedical field. Thus, the strategies to address these problems are considered an urgent task at present. Micro/nanomotors (MNMs), also named micro/nanoscale robots, are mostly driven by chemical energy or external field, exhibiting strong diffusion and self-propulsion in the liquid media, which has the potential for antibacterial applications. In particular, when MNMs are assembled in swarms, they become robust and efficient for biofilm removal. However, there is a lack of comprehensive review discussing the progress in this aspect. Bearing it in mind and based on our own research experience in this regard, the studies on MNMs driven by different mechanisms orchestrated for antibacterial activity and biofilm removal are timely and concisely summarized and discussed in this work, aiming to show the advantages of MNMs brought to this field. In addition, an outlook was proposed, hoping to provide the fundamental guidance for future development in this area.
细菌感染每年可引发多种疾病并导致数万人死亡,对人类健康构成严重威胁。特别是生物膜引起的新难题正逐渐成为生物医学领域的一个严峻问题。因此,解决这些问题的策略被认为是当前的一项紧迫任务。微/纳米马达(MNMs),也称为微/纳米级机器人,主要由化学能或外部场驱动,在液体介质中表现出强大的扩散和自推进能力,具有抗菌应用的潜力。特别是当 MNMs 组装成群时,它们在去除生物膜方面变得强大且高效。然而,目前缺乏全面的综述来讨论这方面的进展。考虑到这一点,并基于我们在这方面的研究经验,本文及时而简明地总结和讨论了不同机制驱动的 MNMs 在抗菌活性和生物膜去除方面的研究进展,旨在展示 MNMs 给该领域带来的优势。此外,还提出了展望,希望为该领域的未来发展提供基础指导。