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2018

Journal Article

Accelerated host angiogenesis and immune responses by ion release from mesoporous bioactive glass

Zhou, Yinghong, Han, Shengwei, Xiao, Lan, Han, Pingping, Wang, Shengfang, He, Jie, Chang, Jiang, Wu, Chengtie and Xiao, Yin (2018). Accelerated host angiogenesis and immune responses by ion release from mesoporous bioactive glass. Journal of Materials Chemistry B, 6 (20), 3274-3284. doi: 10.1039/c8tb00683k

Accelerated host angiogenesis and immune responses by ion release from mesoporous bioactive glass

2016

Journal Article

Multi-elemental profiling of tibial and maxillary trabecular bone in ovariectomised rats

Han, Pingping, Lu, Shifeier, Zhou, Yinghong, Moromizato, Karine, Du, Zhibin, Friis, Thor and Xiao, Yin (2016). Multi-elemental profiling of tibial and maxillary trabecular bone in ovariectomised rats. International Journal of Molecular Sciences, 17 (6) 977, 977. doi: 10.3390/ijms17060977

Multi-elemental profiling of tibial and maxillary trabecular bone in ovariectomised rats

2013

Journal Article

The ionic products from bredigite bioceramics induced cementogenic differentiation of periodontal ligament cells via activation of the Wnt/β-catenin signalling pathway

Zhou, Yinghong, Wu, Chengtie, Zhang, Xufang, Han, Pingping and Xiao, Yin (2013). The ionic products from bredigite bioceramics induced cementogenic differentiation of periodontal ligament cells via activation of the Wnt/β-catenin signalling pathway. Journal of Materials Chemistry B, 1 (27), 3380-3389. doi: 10.1039/c3tb20445f

The ionic products from bredigite bioceramics induced cementogenic differentiation of periodontal ligament cells via activation of the Wnt/β-catenin signalling pathway

2013

Journal Article

Nagelschmidtite bioceramics with osteostimulation properties: material chemistry activating osteogenic genes and WNT signalling pathway of human bone marrow stromal cells

Wu, Chengtie, Han, Pingping, Xu, Mengchi, Zhang, Xufang, Zhou, Yinghong, Xue, Guangda, Chang, Jiang and Xiao, Yin (2013). Nagelschmidtite bioceramics with osteostimulation properties: material chemistry activating osteogenic genes and WNT signalling pathway of human bone marrow stromal cells. Journal of Materials Chemistry B, 1 (6), 876-885. doi: 10.1039/c2tb00391k

Nagelschmidtite bioceramics with osteostimulation properties: material chemistry activating osteogenic genes and WNT signalling pathway of human bone marrow stromal cells

2013

Journal Article

Copper-containing mesoporous bioactive glass scaffolds with multifunctional properties of angiogenesis capacity, osteostimulation and antibacterial activity

Wu, Chengtie, Zhou, Yinghong, Xu, Mengchi, Han, Pingping, Chen, Lei, Chang, Jiang and Xiao, Yin (2013). Copper-containing mesoporous bioactive glass scaffolds with multifunctional properties of angiogenesis capacity, osteostimulation and antibacterial activity. Biomaterials, 34 (2), 422-433. doi: 10.1016/j.biomaterials.2012.09.066

Copper-containing mesoporous bioactive glass scaffolds with multifunctional properties of angiogenesis capacity, osteostimulation and antibacterial activity

2012

Journal Article

Porous Ca-Si-based nanospheres: a potential intra-canal disinfectant-carrier for infected canal treatment

Fan, Wei, Wu, Chengtie, Han, Pingping, Zhou, Yinghong and Xiao, Yin (2012). Porous Ca-Si-based nanospheres: a potential intra-canal disinfectant-carrier for infected canal treatment. Materials Letters, 81, 16-19. doi: 10.1016/j.matlet.2012.04.142

Porous Ca-Si-based nanospheres: a potential intra-canal disinfectant-carrier for infected canal treatment

2012

Journal Article

Hypoxia-mimicking mesoporous bioactive glass scaffolds with controllable cobalt ion release for bone tissue engineering

Wu, Chengtie, Zhou, Yinghong, Fan, Wei, Han, Pingping, Chang, Jiang, Yuen, Jones, Zhang, Meili and Xiao, Yin (2012). Hypoxia-mimicking mesoporous bioactive glass scaffolds with controllable cobalt ion release for bone tissue engineering. Biomaterials, 33 (7), 2076-2085. doi: 10.1016/j.biomaterials.2011.11.042

Hypoxia-mimicking mesoporous bioactive glass scaffolds with controllable cobalt ion release for bone tissue engineering