Browse By Person: Wu, Chengtie

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Number of items: 51.

2005

Wu, Chengtie, Chang, Jiang, Wang, Junying, Ni, Siyu, & Zhai, Wanyin (2005) Preparation and characteristics of a calcium magnesium silicate (bredigite) bioactive ceramic. Biomaterials, 26(16), pp. 2925-2931.
Number of citations in Scopus 112
Number of citations in Web of Science® 108

Wu, Chengtie, Chang, Jiang, & Zhai, Wanyin (2005) A novel hardystonite bioceramic: preparation and characteristics. Ceramics International, 31(1), pp. 27-31.
Number of citations in Scopus 34
Number of citations in Web of Science® 38

2006

Wu, Chengtie, Chang, Jiang, Ni, Siyu, & Wang, Junying (2006) In vitro bioactivity of akermanite ceramics. Journal of Biomedical Materials Research Part A, 76(1), pp. 73-80.
Number of citations in Scopus 107
Number of citations in Web of Science® 112

Wu, Chengtie, Chang, Jiang, Zhai, Wanyin, Ni, Siyu, & Wang, Junying (2006) Porous akermanite scaffolds for bone tissue engineering: Preparation, characterization, and in vitro studies. Journal of Biomedical Materials Research. Part B: Applied Biomaterials, 78(1), pp. 47-55.
Number of citations in Scopus 80
Number of citations in Web of Science® 84

Sun, Hongli, Wu, Chengtie, Dai, Kerong, Chang, Jiang, & Tang, Tingting (2006) Proliferation and osteoblastic differentiation of human bone marrow-derived stromal cells on akermanite-bioactive ceramics. Biomaterials, 27(33), pp. 5651-5657.
Number of citations in Scopus 205
Number of citations in Web of Science® 200

Wu, Chengtie & Chang, Jiang (2006) A novel akermanite bioceramic: Preparation and characteristics. Journal of Biomaterials Applications, 21(2), pp. 119-129.
Number of citations in Scopus 43
Number of citations in Web of Science® 57

2007

Wu, Chengtie & Chang, Jiang (2007) Bonelike apatite formation on carbon microspheres. Materials Letters, 61(11-12), pp. 2502-2505.
Number of citations in Scopus 14
Number of citations in Web of Science® 12

Wu, Chengtie & Chang, Jiang (2007) Degradation, bioactivity, and cytocompatibility of diopside, akermanite, and bredigite ceramics. Journal of Biomedical Materials Research. Part B: Applied Biomaterials, 83(1), pp. 153-160.
Number of citations in Scopus 107
Number of citations in Web of Science® 113

Wu, Chengtie & Zreiqat, Hala (2007) Preparation and characteristics of strontium containing bioactive CaSiO3 ceramics. Key Engineering Materials, 330-33(2007), pp. 499-502.
Number of citations in Scopus 5
Number of citations in Web of Science® 3

Wu, Chengtie & Chang, Jiang (2007) Synthesis and In vitro bioactivity of bredigite powders. Journal of Biomaterials Applications, 21(3), pp. 251-263.
Number of citations in Scopus 23
Number of citations in Web of Science® 28

Wu, Chengtie, Ramaswamy, Yogambha, Kwik, Danielle, & Zreiqat, Hala (2007) The effect of strontium incorporation into CaSiO3 ceramics on their physical and biological properties. Biomaterials, 28(21), pp. 3171-3181.
Number of citations in Scopus 112
Number of citations in Web of Science® 115

Wu, Chengtie, Chang, Jiang, Zhai, Wanyin, & Ni, Siyu (2007) A novel bioactive porous bredigite (Ca7MgSi4O16) scaffold with biomimetic apatite layer for bone tissue engineering. Journal of Materials Science-Materials in Medicine, 18(5), pp. 857-864.
Number of citations in Scopus 72
Number of citations in Web of Science® 75

2008

Ramaswamy, Yogambha, Wu, Chengtie, Zhou, Hong, & Zreiqat, Hala (2008) Biological response of human bone cells to zinc-modified Ca-Si-based ceramics. Acta Biomaterialia, 4(5), pp. 1487-1497.
Number of citations in Scopus 83
Number of citations in Web of Science® 87

Wu, Chengtie, Ramaswamy, Yogambha, Boughton, Philip, & Zreiqat, Hala (2008) Improvement of mechanical and biological properties of porous CaSiO3 scaffolds by poly(D,L-lactic acid) modification. Acta Biomaterialia, 4(2), pp. 343-353.
Number of citations in Scopus 90
Number of citations in Web of Science® 92

Wu, Chengtie, Ramaswamy, Yogambha, Soeparto, Andhika, & Zreiqat, Hala (2008) Incorporation of titanium into calcium silicate improved their chemical stability and biological properties. Journal of Biomedical Materials Research Part A, 86(2), pp. 402-410.
Number of citations in Scopus 55
Number of citations in Web of Science® 57

Wu, Chengtie, Ramaswamy, Yogambha, Gale, David, Yang, Wenrong, Xiao, Keqin, Zhang, Liangchi, et al. (2008) Novel sphene coatings on Ti-6Al-4V for orthopedic implants using sol-gel method. Acta Biomaterialia, 4(3), pp. 569-576.
Number of citations in Scopus 47
Number of citations in Web of Science® 38

Zhu, Yufang, Wu, Chengtie, Ramaswamy, Yogambha, Kockrick, Emanuel, Simon, Paul, Kaskel, Stefan, et al. (2008) Preparation, characterization and in vitro bioactivity of mesoporous bioactive glasses (MBGs) scaffolds for bone tissue engineering. Microporous and Mesoporous Materials, 112(1-3), pp. 494-503.
Number of citations in Scopus 97
Number of citations in Web of Science® 97

Wu, Chengtie, Ramaswamy, Yogambha, Chang, Jiang, Woods, Joy, Chen, Yiqing, & Zreiqat, Hala (2008) The effect of Zn contents on phase composition, chemical stability and cellular bioactivity in Zn-Ca-Si system ceramics. Journal of Biomedical Materials Research. Part B: Applied Biomaterials, 87(2), pp. 346-353.
Number of citations in Scopus 31
Number of citations in Web of Science® 35

Ramaswamy, Yogambha, Wu, Chengtie, Van Hummel, Annika, Combes, Valery, Grau, Georges, & Zreiqat, Hala (2008) The responses of osteoblasts, osteoclasts and endothelial cells to zirconium modified calcium-silicate-based ceramic. Biomaterials, 29(33), pp. 4392-4402.
Number of citations in Scopus 65
Number of citations in Web of Science® 69

2009

Wu , Chengtie & Xiao, Yin (2009) Evaluation of the in vitro bioactivity of bioceramics. Bone and Tissue Regeneration Insights, 2, pp. 25-29.
Number of full-text downloads 749

Wu, Chengtie (2009) Methods of improving mechanical and biomedical properties of Ca-Si-based ceramics and scaffolds. Expert Review of Medical Devices, 6(3), pp. 237-241.
Number of citations in Scopus 13
Number of citations in Web of Science® 14

Wu, Chengtie, Ramaswamy, Yogambha, Liu, Xuanyong, Wang, Guocheng, & Zreiqat, Hala (2009) Plasma-sprayed CaTiSiO5 ceramic coating on Ti-6Al-4V with excellent bonding strength, stability and cellular bioactivity. Journal of the Royal Society Interface, 6(31), pp. 159-168.
Number of citations in Scopus 38
Number of citations in Web of Science® 39

Wu, Chengtie, Ramaswamy, Yogambha, Zhu, Yufang, Zheng, Rongkun, Appleyard, Richard, Howard, Andrew, et al. (2009) The effect of mesoporous bioactive glass on the physiochemical, biological and drug-release properties of poly(dl-lactide-co-glycolide) films. Biomaterials, 30(12), pp. 2199-2208.
Number of citations in Scopus 95
Number of citations in Web of Science® 95

2010

Wu, Chengtie, Zhang, Yufeng, Ke, Xuebin, Zhu, Huai Yong, Crawford, Ross W., & Xiao, Yin (2010) Bioactive mesopore-glass microspheres with controllable protein-delivery properties by biomimetic surface modification. Journal of Biomedical Materials Research Part A, 95A(2), pp. 476-485.
Number of full-text downloads 1,172
Number of citations in Scopus 39
Number of citations in Web of Science® 37

Wu, Chengtie, Zhu, Yufeng, Chang, Jiang, Zhang, Yufeng, & Xiao, Yin (2010) Bioactive inorganic materials/alginate composite microspheres with controllable drug-delivery ability. Journal of Biomedical Materials Research Part B : Applied Biomateraials, 94(1), pp. 32-43.
Number of full-text downloads 505
Number of citations in Scopus 29
Number of citations in Web of Science® 22

Wu, Chengtie, Zhang, Yufeng, Zhu, Yufang, Friis, Thor, & Xiao, Yin (2010) Structure–property relationships of silk-modified mesoporous bioglass scaffolds. Biomaterials, 31(13), pp. 3429-3438.
Number of citations in Scopus 89
Number of citations in Web of Science® 88

Zhang, Yufeng, Wu , Chengtie, Friis, Thor, & Xiao, Yin (2010) The osteogenic properties of CaP/silk composite scaffolds. Biomaterials, 31(10), pp. 2848-2856.
Number of full-text downloads 233
Number of citations in Scopus 58
Number of citations in Web of Science® 58

Zhang, Yufeng, Fan, Wei, Ma, Zhaocheng, Wu , Chengtie, Fang, Wei, Liu, Gang, et al. (2010) The effects of pore architecture in silk fibroin scaffolds on the growth and differentiation of mesenchymal stem cells expressing BMP7. Acta Biomaterialia, 6(8), pp. 3021-3028.
Number of full-text downloads 1,009
Number of citations in Scopus 52
Number of citations in Web of Science® 50

Wu, Chengtie, Chang, Jiang, & Zreiqat, Hala (2010) Engineered Ca-Si based ceramics for skeletal tissue reconstruction. In Sooraj Hussain, N & Santos, J (Eds.) Biomaterials for Bone, Regenerative Medicine. Trans Tech Publications, Switzerland, pp. 121-149.

Wu, Chengtie & Zreiqat, Hala (2010) Porous bioactive diopside (CaMgSi2O6) ceramic microspheres for drug delivery. Acta Biomaterialia, 6(3), pp. 820-829.
Number of citations in Scopus 40
Number of citations in Web of Science® 40

Wu, Chengtie, Ramaswamy, Yogambha, & Zreiqat, Hala (2010) Porous diopside (CaMgSi2O6) scaffold: A promising bioactive material for bone tissue engineering. Acta Biomaterialia, 6(6), pp. 2237-2245.
Number of citations in Scopus 85
Number of citations in Web of Science® 88

Zreiqat, Hala, Ramaswamy, Yogambha, Wu, Chengtie, Paschalidis, Angelo, James, Barbara, Birke, Oliver, et al. (2010) The incorporation of strontium and zinc into a calcium-silicon ceramic for bone tissue engineering. Biomaterials, 31(12), pp. 3175-3184.
Number of citations in Scopus 113
Number of citations in Web of Science® 117

2011

Wu , Chengtie, Zhang, Yufeng, Fan, Wei, Ke, Xuebin, Hu, Xuye, Zhou, Yinghong, et al. (2011) CaSiO3 microstructure modulating the in vitro and in vivo bioactivity of poly (lactide-co-glycolide) microspheres. Journal of Biomedical Materials Research : Part A, 98(1), pp. 122-131.
Number of full-text downloads 129
Number of citations in Scopus 25
Number of citations in Web of Science® 26

Wu , Chengtie, Luo, Yongxiang, Cuniberti, Gianaurelio, Xiao, Yin, & Gelinsky, Michael (2011) Three-dimensional printing of hierarchical and tough mesoporous bioactive glass scaffolds with a controllable pore architecture, excellent mechanical strength and mineralization ability. Acta Biomaterialia, 7(6), pp. 2644-2650.
Number of full-text downloads 535
Number of citations in Scopus 115
Number of citations in Web of Science® 105

Wu , Chengtie, Fan, Wei, Gelinsky, Michael, Xiao, Yin, Chang, Jiang, Friis, Thor, et al. (2011) In situ preparation and protein delivery of silicate/alginate composite microspheres with core-shell structure. Journal of the Royal Society Interface, 8(65), 1804-1814 .
Number of citations in Scopus 20
Number of citations in Web of Science® 20

Wu , Chengtie, Zhang , Yufeng, Zhou, Yinghong, Fan, Wei, & Xiao, Yin (2011) A comparative study of mesoporous-glass/silk and non-mesoporous-glass/silk scaffolds : physiochemistry and in vivo osteogenesis. Acta Biomaterialia, 7(5), pp. 2229-2236.
Number of full-text downloads 253
Number of citations in Scopus 61
Number of citations in Web of Science® 61

Wu , Chengtie, Fan, Wei, Gelinsky, Michael, Xiao, Yin, Simon, Paul, Schulze, Renate, et al. (2011) Bioactive SrO–SiO2 glass with well-ordered mesopores : characterization, physiochemistry and biological properties. Acta Biomaterialia, 7(4), pp. 1797-1806.
Number of full-text downloads 297
Number of citations in Scopus 57
Number of citations in Web of Science® 57

Zhang, Yufeng, Fan, Wei, Nothdurft, Luke, Wu, Chengtie, Zhou, Yinghong, Crawford, Ross, et al. (2011) In vitro and in vivo evaluation of adenovirus combined silk fibroin scaffolds for BMP-7 gene delivery. Tissue Engineering Part C: Methods, 17(8), pp. 789-797.
Number of full-text downloads 206
Number of citations in Scopus 22
Number of citations in Web of Science® 25

Wu , Chengtie, Chang, Jiang, & Xiao, Yin (2011) Mesoporous bioactive glasses as drug delivery and bone tissue regeneration platforms. Therapeutic Delivery, 2(9), pp. 1189-1198.
Number of full-text downloads 455
Number of citations in Scopus 21

Wu , Chengtie & Xiao, Yin (2011) Mesoporous bioglass/silk composite scaffolds for bone tissue engineering. In Pignatello, Rosario (Ed.) Biomaterial (Book 2). INTECH Open Access Publisher, Croatia, pp. 269-286.
Number of citations in Web of Science® 1

Wu , Chengtie, Fan, Wei, Zhu, Yufang, Gelinsky, Michael, Chang, Jiang, Cuniberti, Gianaurelio, et al. (2011) Multifunctional magnetic mesoporous bioactive glass scaffolds with a hierarchical pore structure. Acta Biomaterilia, 7(10), pp. 3563-3572.
Number of full-text downloads 526
Number of citations in Scopus 75
Number of citations in Web of Science® 73

Wu , Chengtie, Fan, Wei, Chang, Jiang, & Xiao, Yin (2011) Mussel-inspired porous SiO2 scaffolds with improved mineralization and cytocompatibility for drug delivery and bone tissue engineering. Journal of Materials Chemistry, 21, pp. 18300-18307.
Number of full-text downloads 271
Number of citations in Scopus 58
Number of citations in Web of Science® 62

Liu, Gang, Wu , Chengtie, Fan, Wei, Miao, Xigen, Dong-Choon , Sin, Crawford, Ross W., et al. (2011) The effects of bioactive akermanite on physiochemical, drug-delivery and biological properties of poly (lactide-co-glycolide) beads. Journal of Biomedical Materials Research. Part B: Applied Biomaterials, 96 B(2), pp. 360-368.
Number of full-text downloads 292
Number of citations in Scopus 12
Number of citations in Web of Science® 10

2012

Zhang, Meili, Wu , Chengtie, Li , Haiyan, Yuen, Jones, Chang, Jiang, & Xiao, Yin (2012) Preparation, characterization and in vitro angiogenic capacity of cobalt substituted β-tricalcium phosphate ceramics. Journal of Materials Chemistry, 22(40), pp. 21686-21694.
Number of citations in Scopus 15
Number of citations in Web of Science® 16

Wu, Chengtie, Zhou, Yinghong, Fan, Wei, Han , Pingping, Chang, Jiang, Yuen, Jones, et al. (2012) Hypoxia-mimicking mesoporous bioactive glass scaffolds with controllable cobalt ion release for bone tissue engineering. Biomaterials, 33(7), pp. 2076-2085.
Number of full-text downloads 330
Number of citations in Scopus 129
Number of citations in Web of Science® 114

Zhang, Meili, Wu, Chengtie, Lin, Kaili, Fan, Wei, Chen, Lei, Xiao, Yin, et al. (2012) Biological responses of human bone marrow mesenchymal stem cells to Sr-M-Si (M = Zn, Mg) silicate bioceramics. Journal of Biomedical Materials Research : Part A, 100(11), pp. 2979-2990.
Number of citations in Scopus 32
Number of citations in Web of Science® 29

2013

Fan, Wei, Wu , Chengtie, Miao , Xigeng, Liu, Gang, Saifzadeh, Siamak, Sugiyama, Sadahiro, et al. (2013) Biomaterial scaffolds in cartilage-subchondral bone defects influencing the repair of autologous articular cartilage transplants. Journal of Biomaterials Applications, 27(8), pp. 979-989.
Number of full-text downloads 106
Number of citations in Scopus 3
Number of citations in Web of Science® 2

Wu , Chengtie, Chang, Jiang, & Xiao, Yin (2013) Advanced Bioactive Inorganic Materials for Bone Regeneration and Drug Delivery. CRC Press, Boca Raton.

Wu , Chengtie, Chang, Jiang, & Xiao, Yin (2013) Mesoporous Bioactive Glasses for Drug Delivery and Bone Tissue Regeneration. In Wu , Chengtie, Chang, Jiang, & Xiao, Yin (Eds.) Advanced Bioactive Inorganic Materials for Bone Regeneration and Drug Delivery. CRC Press (Taylor & Francis Group), Boca Raton , pp. 1-24.

Wu , Chengtie, Xiao, Yin, & Chang, Jiang (2013) Silicate-Based Bioactive Ceramics for Bone Regeneration Application. In Wu , Chengtie, Chang, Jiang, & Xiao, Yin (Eds.) Advanced Bioactive Inorganic Materials for Bone Regeneration and Drug Delivery. CRC Press (Taylor & Francis Group), Boca Raton , pp. 25-46.
Number of citations in Web of Science® 5

2017

Chen, Zetao, Wu, Chengtie, & Xiao, Yin (2017) Convergence of osteoimmunology and immunomodulation for the development and assessment of bone biomaterials. In Corradetti, Bruna (Ed.) The Immune Response to Implanted Materials and Devices. Springer International Publishing, Switzerland, pp. 107-124.

This list was generated on Sun Mar 26 07:35:40 2017 AEST.