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Dive into the research topics where Zou Qin is active.

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Featured researches published by Zou Qin.


Journal of Biomaterials Applications | 2009

Development of Nanohydroxyapatite/Polycarbonate Composite for Bone Repair:

Liao Jianguo; Zhang Li; Zuo Yi; Wang Huanan; Li Jidong; Zou Qin; Li Yubao

In this study, nano-hydroxyapatite (n-HA) combined polycarbonate was synthesized by a novel method. The physical and chemical property of the composite was tested. The results indicated the n-HA a crystal has the similar grain size, phase composition and crystal structure as. TEM photos results show the n-HA crystals were uniformly distributed in the polymer matrix. Then, the chemical bond between inorganic n-HA and polycarbonate was investigated and discussed. Proliferation of MSCs/composite cultured for up to 11 days the adhesion were tested by MTT and SEM. The in vitro test confirmed that the n-HA/PC composite was biocompatible and no negative effect on MSCs has found. The composite is proved to be osteoconductive, and can stimulate the growth of new bone. These results indicated that the composite meet the basic requirement of bone substitute material, and be potentially applied for clinic.In this study, nano-hydroxyapatite (n-HA) combined polycarbonate was synthesized by a novel method. The physical and chemical property of the composite was tested. The results indicated the n-HA a crystal has the similar grain size, phase composition and crystal structure as. TEM photos results show the n-HA crystals were uniformly distributed in the polymer matrix. Then, the chemical bond between inorganic n-HA and polycarbonate was investigated and discussed. Proliferation of MSCs/composite cultured for up to 11 days the adhesion were tested by MTT and SEM. The in vitro test confirmed that the n-HA/PC composite was biocompatible and no negative effect on MSCs has found. The composite is proved to be osteoconductive, and can stimulate the growth of new bone. These results indicated that the composite meet the basic requirement of bone substitute material, and be potentially applied for clinic.


Archive | 2014

Injectable type fast curing medical polyurethane compound and preparation method thereof

Zuo Yi; Li Yubao; Sun Bin; Wang Li; Li Jidong; Zou Qin


Archive | 2015

Fluorescent graft degradable block polyurethane, bone repair material and preparation method thereof

Li Yubao; Yang Boyuan; Zuo Yi; Li Limei; Li Jidong; Zou Qin


Archive | 2015

Preparation method of self-foaming porous composite bone repair bracket

Li Jidong; Li Gen; Zuo Yi; Li Yubao; Zou Qin; Zhang Li


Archive | 2014

Microsphere tissue engineering scaffold used in beauty filling, and preparation method of microsphere tissue engineering scaffold

Zhang Li; Gong Mei; Li Yubao; Xie Huiqi; Zou Qin; Wang Yanying


Archive | 2017

Porous scaffold provided with surface oriented functionally modified coating and preparation method of porous scaffold

Zuo Yi; Hu Fu; Li Yubao; Chen Jie; Zou Qin; Li Jidong


Archive | 2017

METHOD FOR PREPARING SELF-FOAMING POROUS COMPOSITE BONE REPAIR SCAFFOLD

Li Jidong; Li Gen; Zuo Yi; Li Yubao; Zou Qin; Zhang Li


Gongneng Cailiao | 2016

いずれも自発的気泡形成法による多孔性骨修復ステントを作製した。【JST・京大機械翻訳】

Li Gen; Li Limei; Jiang Jiaxing; Li Jiongjiong; Zuo Yi; Li Yubao; Zou Qin; Zhang Li; Li Jidong


Frontiers in Bioengineering and Biotechnology | 2016

Effects of hydroxyapatite on cell response on HA/GCPU composite scaffolds in vitro

Zou Qin; Zuo Yi; Li Yubao


Frontiers in Bioengineering and Biotechnology | 2016

Biomimetic n-HA/GCO-PU composite scaffold with hierarchical structure for bone regeneration

Li Yubao; Li Limei; Zuo Yi; Zou Qin; Li Jidong

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