Author
Listed:
- Yuanyuan Gao
(Harbin Institute of Technology)
- Meng Mao
(Harbin Institute of Technology
HIT Zhengzhou Research Institute)
- Yue Li
(Harbin Institute of Technology)
- Mingjun Xuan
(University of Chinese Academy of Sciences)
- Yingjie Wu
(Harbin Institute of Technology
HIT Zhengzhou Research Institute)
- Qiang He
(Harbin Institute of Technology
HIT Zhengzhou Research Institute
University of Chinese Academy of Sciences)
Abstract
Chemotherapy is an important treatment for glioblastoma (GBM) and a key component of comprehensive GBM therapy. However, the blood-brain barrier (BBB) and complex tumor microenvironment (TME) restrict the diffusion of drugs, which greatly reduces the chemotherapeutic effect on GBM. Single strategies, such as cell-based nanobots to cross the BBB or enzymatic nanobots propelled by enriched substrates in the TME for deep tumor penetration, remain inadequate to address multiple barriers and achieve precise targeting. Here, we develop a Trojan horse-inspired enzymatic nanobot-in-neutrobot system (Trojanbot) to greatly enhance targeted GBM therapy. Trojanbots traverse the BBB by leveraging positive chemotaxis in response to tumor-derived chemokine gradients, after which the released catalase-driven nanobots (CatNbot) undergo directional movement along the H2O2 gradients in TME, facilitating deep tumor penetration. This multi-stage targeting strategy improves drug delivery efficiency, providing considerable potential as a clinical approach for brain tumor treatment.
Suggested Citation
Yuanyuan Gao & Meng Mao & Yue Li & Mingjun Xuan & Yingjie Wu & Qiang He, 2025.
"A self-directed Trojanbot-enzymatic nanobot in neutrobot for active target therapy of glioblastoma,"
Nature Communications, Nature, vol. 16(1), pages 1-20, December.
Handle:
RePEc:nat:natcom:v:16:y:2025:i:1:d:10.1038_s41467-025-60422-z
DOI: 10.1038/s41467-025-60422-z
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