Beijing Key Laboratory of Bioelectromagnetism, Institute of Electrical Engineering, Chinese Academy of Sciences, Beijing 100190, China.
France-China International Laboratory of Evolution and Development of Magnetotactic Multicellular Organisms, Beijing 100190, China.
ACS Appl Mater Interfaces. 2022 Mar 30;14(12):14049-14058. doi: 10.1021/acsami.1c24154. Epub 2022 Mar 21.
Magnetotactic bacteria are ubiquitous microorganisms in nature that synthesize intracellular magnetic nanoparticles called magnetosomes in a gene-controlled way and arrange them in chains. From in vitro to in vivo, we demonstrate that the intact body of AMB-1 has potential as a natural magnetic hyperthermia material for cancer therapy. Compared to chains of magnetosomes and individual magnetosomes, the entire AMB-1 cell exhibits superior heating capability under an alternating magnetic field. When incubating with tumor cells, the intact AMB-1 cells disperse better than the other two types of magnetosomes, decreasing cellular viability under the control of an alternating magnetic field. Furthermore, in vivo experiments in nude mice with neuroblastoma found that intact AMB-1 cells had the best antitumor activity with magnetic hyperthermia therapy compared to other treatment groups. These findings suggest that the intact body of magnetotactic bacteria has enormous promise as a natural material for tumor magnetic hyperthermia. In biomedical applications, intact and living magnetotactic bacteria play an increasingly essential function as a targeting robot due to their magnetotaxis.
趋磁细菌是自然界中普遍存在的微生物,它们通过基因控制的方式合成细胞内的磁性纳米颗粒,称为磁小体,并将它们排列成链。从体外到体内,我们证明 AMB-1 的完整菌体具有作为癌症治疗天然磁热疗材料的潜力。与磁小体链和单个磁小体相比,完整的 AMB-1 细胞在交变磁场下表现出更好的加热能力。当与肿瘤细胞孵育时,完整的 AMB-1 细胞比其他两种类型的磁小体分散得更好,在交变磁场的控制下降低细胞活力。此外,在携带神经母细胞瘤的裸鼠体内实验中发现,与其他治疗组相比,完整的 AMB-1 细胞在磁热疗治疗中具有最佳的抗肿瘤活性。这些发现表明,趋磁细菌的完整菌体作为一种天然的肿瘤磁热疗材料具有巨大的潜力。在生物医学应用中,由于趋磁细菌的趋磁性,完整的活趋磁细菌作为靶向机器人发挥着越来越重要的作用。