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多通道胶原-磷酸钙支架:其物理性质及人体细胞反应

Multi-channelled collagen-calcium phosphate scaffolds: their physical properties and human cell response.

作者信息

Keeney Michael, Collin Estelle, Pandit Abhay

机构信息

National Centre for Biomedical Engineering Science, National University of Ireland, Galway, Ireland .

出版信息

Tissue Eng Part C Methods. 2009 Jun;15(2):265-73. doi: 10.1089/ten.tec.2008.0365.

Abstract

An ideal collagen scaffold for bone tissue engineering should possess micro- and macro-porosity to promote tissue ingrowth within the scaffold. The introduction of this pore structure should not compromise the mechanical strength of the scaffold. A multi-channelled collagen-calcium phosphate scaffold was designed by complexing collagen solution with calcium phosphate and then introducing macro pores using a forging technique. Synthetic hydroxyapatite formed in the presence of collagen was confirmed using X-ray diffraction, whereas Fourier transform infrared showed the interaction between the synthetic and organic components. The porosity of the resulting scaffold increased more than 25% as determined using micro-computed tomography. There was no significant change in compression properties (p < 0.05) tested using American Society for Testing and Materials standard F451-95. The presence of macro pore channels facilitated human osteosarcoma cell infiltration into pores and maintained cellular viability and ability to differentiate. Cell surface morphology and gene expression for osteocalcin, alkaline phosphatase, and collagen type I were also preserved. In conclusion, a multi-channel collagen-calcium phosphate scaffold was designed to encourage cellular infiltration in vitro without weakening the mechanical strength of the composite.

摘要

用于骨组织工程的理想胶原支架应具备微孔和大孔结构,以促进组织在支架内生长。这种孔隙结构的引入不应损害支架的机械强度。通过将胶原溶液与磷酸钙络合,然后使用锻造技术引入大孔,设计了一种多通道胶原 - 磷酸钙支架。利用X射线衍射确认了在胶原存在下形成的合成羟基磷灰石,而傅里叶变换红外光谱显示了合成成分与有机成分之间的相互作用。使用微计算机断层扫描测定,所得支架的孔隙率增加超过25%。按照美国材料与试验协会标准F451 - 95进行测试,压缩性能没有显著变化(p < 0.05)。大孔通道的存在促进了人骨肉瘤细胞向孔隙内浸润,并维持了细胞活力和分化能力。细胞表面形态以及骨钙素、碱性磷酸酶和I型胶原的基因表达也得以保留。总之,设计了一种多通道胶原 - 磷酸钙支架,以在体外促进细胞浸润,同时不削弱复合材料的机械强度。

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