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1.
Structure investigation of poly(vinyl alcohol)-collagen composite/Zhang, QQ; Ren, L; Liu, LR; Wang, C/Journal of Materials Science&Technology/1997, 13 (3): 179-183

2.
Preparation and characterization of collagen-hydroxyapatite composite used for bone tissue engineering scaffold/Liu, LR; Zhang, LH; Ren, BZ; Wang, FJ; Zhang, QQ/Artificial Cells Blood Substitutes and Immobilization Biotechnology/2003, 31 (4): 435-448

3.
The modification of scaffold material in building artificial dermis/Zhang, LH; Ma, DR; Wang, FJ; Zhang, QQ/Artificial Cells Blood Substitutes and Immobilization Biotechnology/2002, 30 (4): 319-332

4.
Preparation and characterization of self-aggregated nanoparticles of cholesterol-modified o-carboxymethyl chitosan conjugates/Wang, YS; Liu, LR; Weng, J; Zhang, QQ/Carbohydrate Polymers/2007, 69 (3): 597-606

5.
The study of improved controlled release of vincristine sulfate from collagen-chitosan complex film/Chen, HL; Chen, H; Liu, LR; Yuan, P; Zhang, QQ/Artificial Cells Blood Substitutes and Biotechnology/2008, 36 (4): 372-385

6.
Preparation of Folate-Modified Pullulan Acetate Nanoparticles for Tumor-Targeted Drug Delivery/Zhang, HZ; Li, XM; Gao, FP; Liu, LR; Zhou, ZM; Zhang, QQ/Drug Delivery/2010, 17 (1): 48-57
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FN Thomson Reuters Web of Knowledge
VR 1.0
PT  J
AU  Liu, LR
Zhang, LH
Ren, BZ
Wang, FJ
Zhang, QQ
AF  Liu, LR
Zhang, LH
Ren, BZ
Wang, FJ
Zhang, QQ
TI  Preparation and characterization of collagen-hydroxyapatite composite used for bone tissue engineering scaffold
SO  ARTIFICIAL CELLS BLOOD SUBSTITUTES AND IMMOBILIZATION BIOTECHNOLOGY
AB  In this study, highly porous collagen-HA scaffolds were prepared by solid-liquid phase separation method. Microstructure of the composites was characterized by SEM, TEM and XRD. The results show that collagen-HA scaffolds are porous with three-dimension interconnected fiber microstructure, pore sizes are 50 - 150 mum, and HA particles are dispersed evenly among collagen fiber. Compared with pure collagen, the mechanical property of collagen-HA composite improves significantly. To gain further insight into cell growth throughout 3D scaffolds, the cell proliferation and attachment on the scaffold in vitro was investigated. The collagen-HA composite has good biocompatibility, and adding HA does not affect the histocompatibility of the scaffold materials. The porous collagen-HA composite is suitable as scaffold used for bone tissue engineering.
SN  1073-1199
PY  2003
VL  31
IS  4
BP  435
EP  448
DI  10.1081/BIO-120025414
UT  WOS:000186820300005
ER
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3Â¥2012-05-13 13:21:17
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eleanor_cmm

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2Â¥: Originally posted by jiawenlong at 2012-05-13 13:16:53:
1 A1997WX54700003
2  000186820300005
3  000178067000006

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