Guo Zhenhu, Lu Jingsong, Wang Dan, Xie Wensheng, Chi Yongjie, Xu Jianzhong, Takuya Nonaka, Zhang Junxin, Xu Wanling, Gao Fei, Wu Hong, Zhao Lingyun
State Key Laboratory of Powder Metallurgy, Powder Metallurgy Research Institute, Central South University, Changsha, Hunan, 410083, China.
Key Laboratory of Advanced Materials, Ministry of Education of China, School of Materials Science and Engineering, Tsinghua University, Beijing, 100084, China.
Bioact Mater. 2020 Sep 18;6(3):602-612. doi: 10.1016/j.bioactmat.2020.08.033. eCollection 2021 Mar.
With tremendous research advances in biomedical application, liquid metals (LM) also offer fantastic chemistry for synthesis of novel nano-composites. Herein, as a pioneering trial, litchi-shaped heterogeneous eutectic gallium indium-Au nanoparticles (EGaIn-Au NPs), served as effective radiosensitizer and photothermal agent for radio-photothermal cancer therapy, have been successfully prepared using in situ interfacial galvanic replacement reaction. The enhanced photothermal conversion efficiency and boosted radio-sensitization effect could be achieved with the reduction of Au nanodots onto the eutectic gallium indium (EGaIn) NPs surface. Most importantly, the growth of tumor could be effectively inhibited under the combined radio-photothermal therapy mediated by EGaIn-Au NPs. Inspired by this approach, in situ interfacial galvanic replacement reaction may open a novel strategy to fabricate LM-based nano-composite with advanced multi-functionalities.
随着生物医学应用领域取得巨大的研究进展,液态金属(LM)在新型纳米复合材料的合成方面也展现出出色的化学性能。在此,作为一项开创性试验,已通过原位界面电置换反应成功制备出荔枝状异质共晶镓铟 - 金纳米颗粒(EGaIn - Au NPs),其可作为用于放射 - 光热癌症治疗的有效放射增敏剂和光热剂。通过将金纳米点还原到共晶镓铟(EGaIn)纳米颗粒表面,可实现增强的光热转换效率和增强的放射增敏效果。最重要的是,在EGaIn - Au NPs介导的联合放射 - 光热疗法下,肿瘤生长可得到有效抑制。受此方法启发,原位界面电置换反应可能为制造具有先进多功能性的基于液态金属的纳米复合材料开辟一种新策略。