免疫系统
靶向治疗
纳米技术
巨噬细胞
癌症治疗
癌症研究
癌症
材料科学
生物
免疫学
体外
遗传学
生物化学
作者
Yangyang Li,Zhaoqing Cong,Leiming Xie,Songsong Tang,Chunyu Ren,Xiqi Peng,D. Tang,Fangchen Wan,Hong Han,Xueji Zhang,Wei Gao,Song Wu
出处
期刊:Small
[Wiley]
日期:2023-06-10
卷期号:19 (42)
被引量:12
标识
DOI:10.1002/smll.202301489
摘要
Motile microrobots open a new realm for disease treatment. However, the concerns of possible immune elimination, targeted capability and limited therapeutic avenue of microrobots constrain its practical biomedical applications. Herein, a biogenic macrophage-based microrobot loaded with magnetic nanoparticles and bioengineered bacterial outer membrane vesicles (OMVs), capable of magnetic propulsion, tumor targeting, and multimodal cancer therapy is reported. Such cell robots preserve intrinsic properties of macrophages for tumor suppression and targeting, and bioengineered OMVs for antitumor immune regulation and fused anticancer peptides. Cell robots display efficient magnetic propulsion and directional migration in the confined space. In vivo tests show that cell robots can accumulate at the tumor site upon magnetic manipulation, coupling with tumor tropism of macrophages to greatly improve the efficacy of its multimodal therapy, including tumor inhibition of macrophages, immune stimulation, and antitumor peptides of OMVs. This technology offers an attractive avenue to design intelligent medical microrobots with remote manipulation and multifunctional therapy capabilities for practical precision treatment.
科研通智能强力驱动
Strongly Powered by AbleSci AI