- [21]Wu Hong, Yin Yong, Hu Xiaobo, Peng Cheng, Liu Yong, Li Qingxiang, Huang Weidong, Huang Qianli#. Effects of environmental pH on macrophage polarization and osteoimmunomodulation. ACS Biomaterials Science & Engineering, 2019, 5.10: 5548-5557.
- [22]Chen Manke, Wu Shusong, Tan Yanni, Li Runcheng, Liu Yong#, Huang Qianli#. Rubidium-doped titanium surfaces with modulatory effects on MC3T3-E1 cell response and antibacterial capacity against Staphylococcus aureus. Biomedical Materials, 2019, 14.4: 045016.
- [23]Huang Qianli, Liu Xujie, Zhang Ranran, Yang Xing, Lan Chuwen, Feng Qingling, Liu Yong#. The development of Cu-incorporated micro/nano-topographical bio-ceramic coatings for enhanced osteoblast response. Applied Surface Science, 2019, 465: 575-583.
- [24]Huang Qianli, Li Xuezhong, Tarek A. Elkhooly, Liu Xujie, Zhang Ranran, Wu Hong, Feng Qingling#, Liu Yong#. The Cu-containing TiO2 coatings with modulatory effects on macrophage polarization and bactericidal capacity prepared by micro-arc oxidation on titanium substrates. Colloids and Surfaces B: Biointerfaces, 2018, 170: 242-250.
- [25]Ying Dawen, Ouyang Zhengxiao, Liu Tang, Liu Xujie, Huang Qianli#. Boron-containing micro/nano-structured TiO2/bioceramics coatings with modulatory effects on SaOS-2 cell response. Materials Letters, 2018, 228: 29-32.
- [26]Huang Qianli, Li Xuezhong, Tarek A. Elkhooly, Xu Shenghang, Liu Xujie, Feng Qingling, Wu Hong#, Liu Yong#. The osteogenic, inflammatory and osteo-immunomodulatory performances of biomedical Ti-Ta metal–metal composite with Ca-and Si-containing bioceramic coatings. Colloids and Surfaces B: Biointerfaces, 2018, 169: 49-59.
- [27]Huang Qianli, Li Xuezhong, Liu Tang, Wu Hong, Liu Xujie, Feng Qingling#, Liu Yong#. Enhanced SaOS-2 cell adhesion, proliferation and differentiation on Mg-incorporated micro/nano-topographical TiO2 coatings. Applied Surface Science, 2018, 447: 767-776.
- [28]Li Xuezhong*, Huang Qianli*, Tarek A. Elkhooly, Liu Yong, Wu Hong#, Feng Qingling, Liu Ling, Fang Yu, Zhu Weihong, Hu Tianrui. Effects of titanium surface roughness on the mediation of osteogenesis via modulating the immune response of macrophages. Biomedical Materials, 2018, 13.4: 045013.
- [29]Zhang Ranran*, Huang Qianli*, Liu Xujie, Yang Xing, Yan Hao, Xiong Zhiyuan, Xu Nan, Ma Jing, Feng Qingling#, Shen Zhijian#. ZnO nanostructures enhance the osteogenic capacity of SaOS-2 cells on acid-etched pure Ti. Materials Letters, 2018, 215: 173-175.
- [30]Huang Qianli, Hu Ningmin, Yang Xing, Zhang Ranran, Feng Qingling#. Microstructure and inclusion of Ti–6Al–4V fabricated by selective laser melting. Frontiers of Materials Science, 2016, 10.4: 428-431.
- [31]Huang Qianli, Tarek A. Elkhooly, Liu Xujie, Zhang Ranran, Yang Xing, Shen Zhijian, Feng Qingling#. SaOS-2 cell response to macro-porous boron-incorporated TiO2 coating prepared by micro-arc oxidation on titanium. Materials Science and Engineering: C, 2016, 67: 195-204.
- [32]Huang Qianli, Tarek A. Elkhooly, Liu Xujie, Zhang Ranran, Yang Xing, Shen Zhijian, Feng Qingling#. Effects of hierarchical micro/nano-topographies on the morphology, proliferation and differentiation of osteoblast-like cells. Colloids and Surfaces B: Biointerfaces, 2016, 145: 37-45.
- [33]Huang Qianli, Liu Xujie, Tarek A. Elkhooly, Zhang Ranran, Yang Xing, Shen Zhijian, Feng Qingling#. Preparation and characterization of TiO2/silicate hierarchical coating on titanium surface for biomedical applications. Materials Science and Engineering: C, 2016, 60: 308-316.
- [34]Huang Qianli, Liu Xujie, Yang Xing, Zhang Ranran, Shen Zhijian, Feng Qingling#. Specific heat treatment of selective laser melted Ti–6Al–4V for biomedical applications. Frontiers of Materials Science, 2015, 9.4: 373-381.
- [35]Huang Qianli, Liu Xujie, Tarek A. Elkhooly, Zhang Ranran, Yang Xing, Shen Zhijian, Feng Qingling#. A novel titania/calcium silicate hydrate hierarchical coating on titanium. Colloids and Surfaces B: Biointerfaces, 2015, 134: 169-177.
- [36]Huang Qianli, Yang Xing, Zhang Ranran, Liu Xujie, Shen Zhijian, Feng Qingling#. Enhanced hydrophilicity and in vitro bioactivity of porous TiO2 film through the incorporation of boron. Ceramics International, 2015, 41.3: 4452-4459.