Jiang Fengqi, Zheng Qiuyan, Zhao Qingsong, Qi Zijuan, Wu Di, Li Wenzhong, Wu Xiaoke, Han Conghui
Department of Urology, Xuzhou Clinical School of Xuzhou Medical University, Xuzhou Central Hospital, Xuzhou, Jiangsu, China.
Department of General Surgery, Heilongjiang Provincial Hospital, Harbin, China.
Front Bioeng Biotechnol. 2024 Feb 21;12:1361617. doi: 10.3389/fbioe.2024.1361617. eCollection 2024.
Research and development in the field of micro/nano-robots have made significant progress in the past, especially in the field of clinical medicine, where further research may lead to many revolutionary achievements. Through the research and experiment of microrobots, a controllable drug delivery system will be realized, which will solve many problems in drug treatment. In this work, we design and study the ability of magnetic-driven hydrogel microrobots to carry Lycorine hydrochloride (LH) to inhibit colorectal cancer (CRC) cells. We have successfully designed a magnetic field driven, biocompatible drug carrying hydrogel microsphere robot with FeO particles inside, which can achieve magnetic field response, and confirmed that it can transport drug through fluorescence microscope. We have successfully demonstrated the motion mode of hydrogel microrobots driven by a rotating external magnetic field. This driving method allows the microrobots to move in a precise and controllable manner, providing tremendous potential for their use in various applications. Finally, we selected drug LH and loaded it into the hydrogel microrobot for a series of experiments. LH significantly inhibited CRC cells proliferation in a dose- and time-dependent manner. LH inhibited the proliferation, mobility of CRC cells and induced apoptosis. This delivery system can significantly improve the therapeutic effect of drugs on tumors.
在过去,微纳机器人领域的研发取得了重大进展,尤其是在临床医学领域,进一步的研究可能会带来许多革命性的成果。通过对微机器人的研究和实验,将实现可控的药物递送系统,这将解决药物治疗中的许多问题。在这项工作中,我们设计并研究了磁驱动水凝胶微机器人携带盐酸石蒜碱(LH)抑制结肠直肠癌(CRC)细胞的能力。我们成功设计了一种内部含有FeO颗粒的磁场驱动、生物相容性载药水凝胶微球机器人,它能够实现磁场响应,并通过荧光显微镜证实了其能够运输药物。我们成功展示了由旋转外部磁场驱动的水凝胶微机器人的运动模式。这种驱动方式使微机器人能够精确可控地移动,为其在各种应用中的使用提供了巨大潜力。最后,我们选择了药物LH并将其加载到水凝胶微机器人中进行了一系列实验。LH以剂量和时间依赖性方式显著抑制CRC细胞增殖。LH抑制了CRC细胞的增殖、迁移并诱导凋亡。这种递送系统可以显著提高药物对肿瘤的治疗效果。