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Featured researches published by Siyu Ni.


Journal of Biomaterials Applications | 2009

In vitro Degradation, Bioactivity, and Cytocompatibility of Calcium Silicate, Dimagnesium Silicate, and Tricalcium Phosphate Bioceramics:

Siyu Ni; Jiang Chang

CaSiO3 (CS) ceramics have been regarded as a potential bioactive material for bone regeneration. Mg2SiO4 (M2S) ceramic has been reported as a novel bioceramic with higher mechanical properties and good biocompatibility recently. β-Ca2(PO4) 2 (β-TCP) ceramic is a well-known bioactive and degradable material for bone repair. The aim of this study is to investigate and compare the effect of three bioceramics with different chemical composition on the in vitro degradation, apatite-forming ability in simulated body fluid (SBF) and cytocompatibility. The degradation was evaluated through the activation energy of Si or P ion released from ceramics and the weight loss of the ceramics in TrisHCl buffer solution. Formation of bone-like apatite on different bioceramic surfaces was investigated in SBF. The presence of bone-like apatite layer on the material surface after soaking in SBF was demonstrated by X-ray diffraction (XRD), field emission scanning electron microscopy (FESEM). The effect of ionic products from the three kinds of material dissolution on osteoblast-like cell proliferation was investigated. The results showed that the degradation rate of CS was much faster than that of β-TCP and M2S ceramics. Apatite formation occurred on the CS ceramics quickly. However, it was less likely to occur on the surfaces of β-TCP and M2S ceramics. The ionic products from extracts of CS and M2S could stimulate osteoblast-like cell proliferation at certain concentration range throughout the 6-day culture period.


Biomaterials | 2005

Preparation and characteristics of a calcium magnesium silicate (bredigite) bioactive ceramic

Chengtie Wu; Jiang Chang; Junying Wang; Siyu Ni; Wanyin Zhai


Journal of Biomedical Materials Research Part A | 2006

A novel bioactive porous CaSiO3 scaffold for bone tissue engineering

Siyu Ni; Jiang Chang; Lee Chou


Journal of Biomedical Materials Research Part A | 2006

In vitro bioactivity of akermanite ceramics

Chengtie Wu; Jiang Chang; Siyu Ni; Junying Wang


Journal of Biomedical Materials Research Part B | 2007

Comparison of osteoblast‐like cell responses to calcium silicate and tricalcium phosphate ceramics in vitro

Siyu Ni; Jiang Chang; Lee Chou; Wanyin Zhai


Ceramics International | 2005

Study of the mechanical property and in vitro biocompatibility of CaSiO3 ceramics

Kaili Lin; Wanyin Zhai; Siyu Ni; Jiang Chang; Yi Zeng; Weijun Qian


Ceramics International | 2007

Preparation and characterization of forsterite (Mg2SiO4) bioceramics

Siyu Ni; Lee Chou; Jiang Chang


Journal of Biomedical Materials Research Part B | 2006

Porous akermanite scaffolds for bone tissue engineering: preparation, characterization, and in vitro studies.

Chengtie Wu; Jiang Chang; Wanyin Zhai; Siyu Ni; Junying Wang


Journal of Materials Science: Materials in Medicine | 2007

A novel bioactive porous bredigite (Ca7MgSi4O16) scaffold with biomimetic apatite layer for bone tissue engineering

Chengtie Wu; Jiang Chang; Wanyin Zhai; Siyu Ni


Journal of Biomedical Materials Research Part A | 2008

β-CaSiO3/β-Ca3(PO4)2 composite materials for hard tissue repair: In vitro studies

Siyu Ni; Kaili Lin; Jiang Chang; Lee Chou

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Jiang Chang

Chinese Academy of Sciences

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Wanyin Zhai

Chinese Academy of Sciences

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Chengtie Wu

Chinese Academy of Sciences

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Junying Wang

East China Normal University

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Kaili Lin

Chinese Academy of Sciences

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Weijun Qian

Chinese Academy of Sciences

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Yi Zeng

Chinese Academy of Sciences

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