Key Laboratory of Clinical Laboratory Diagnostics (Ministry of Education), College of Laboratory Medicine, Chongqing Medical University, Chongqing 400016, China.
Sauvage Laboratory for Smart Materials, School of Materials Science and Engineering, Harbin Institute of Technology (Shenzhen), Shenzhen 518055, China.
J Mater Chem B. 2023 Sep 27;11(37):8897-8915. doi: 10.1039/d3tb01163a.
In the microscopic world, synthetic micro/nanomotors (MNMs) can convert a variety of energy sources into driving forces to help humans perform a number of complex tasks with greater ease and efficiency. These tiny machines have attracted tremendous attention in the field of drug delivery, minimally invasive surgery, sampling, and environmental management. By modifying their surface materials and functionalizing them with bioactive agents, these MNMs can also be transformed into dynamic micro/nano-biosensors that can detect biomolecules in real-time with high sensitivity. The extensive range of operations and uses combined with their minuscule size have opened up new avenues for tackling intricate analytical difficulties. Here, in this review, various driving methods are briefly introduced, followed by a focus on intelligent detection techniques based on MNMs. And we discuss the distinctive advantages, current issues, and challenges associated with MNM-based intelligent detection. It is believed that the future advancements of MNMs will greatly impact the diagnosis, treatment, and prevention of diseases.
在微观世界中,合成微/纳米马达(MNMs)可以将各种能源转化为驱动力,帮助人类更轻松、更高效地完成许多复杂任务。这些微小的机器在药物输送、微创手术、采样和环境管理等领域引起了极大的关注。通过修饰其表面材料并将生物活性物质功能化,这些 MNMs 还可以转化为动态微/纳米生物传感器,以高灵敏度实时检测生物分子。广泛的操作和用途结合其微小的尺寸,为解决复杂的分析难题开辟了新途径。在这篇综述中,简要介绍了各种驱动方法,然后重点介绍了基于 MNMs 的智能检测技术。我们讨论了基于 MNM 的智能检测的独特优势、当前问题和挑战。相信 MNMs 的未来发展将极大地影响疾病的诊断、治疗和预防。