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Nanomaterials (Basel, Switzerland)|March 26, 2022
The Precise Detection of HER-2 Expression in Breast Cancer Cell via Au25 ProbesXu Han, Zhesheng He, Wenchao Niu, et al.Archives of Toxicology|September 2, 2011
Variation in the internalization of differently sized nanoparticles induces different DNA-damaging effects on a macrophage cell lineMingyi Zhang, Juan Li, Gengmei Xing, et al.Journal of Nanoscience and Nanotechnology|December 3, 2010
Transmembrane delivery of aggregated [Gd@C82(OH)22]n nanoparticlesMingyi Zhang, Gengmei Xing, Hui Yuan, et al.The Journal of Physical Chemistry. B|April 25, 2008
The strong MRI relaxivity of paramagnetic nanoparticlesGengmei Xing, Hui Yuan, Rui He, et al.Toxicology Letters|November 21, 2007
Ultrahigh reactivity provokes nanotoxicity: explanation of oral toxicity of nano-copper particlesHuan Meng, Zhen Chen, Gengmei Xing, et al.Journal of Nanoscience and Nanotechnology|March 28, 2019
Interaction Principle Between Coagulation Factor X and Fullerene Derivatives with Different Hydrophilic-Hydrophobic Properties for AnticoagulationJinke Liu, Ru Liu, Lin Li, et al.Journal of Materials Chemistry. B|April 9, 2020
Engineered design of theranostic upconversion nanoparticles for tri-modal upconversion luminescence/magnetic resonance/X-ray computed tomography imaging and targeted delivery of combined anticancer drugsGan Tian, Wenyan Yin, Junjiang Jin, et al.Biomaterials Science|April 30, 2025
10Boron-doped carbon nanoparticles as delivery platforms for boron neutron capture therapy and photothermal therapyJiacheng Li, Ziteng Chen, Zhijie Wang, et al.Oncology Letters|September 12, 2012
[Gd@C(82)(OH)(22)](n) nanoparticles inhibit the migration and adhesion of glioblastoma cellsJing Wang, Feng Gu, Ting Ding, et al.Plos One|October 12, 2013
Adjusting the balance between effective loading and vector migration of macrophage vehicles to deliver nanoparticlesYa-Nan Chang, Haili Guo, Juan Li, et al.Pageof 10