1、

Conclusion The chitin coated with LEC and PLYS can be used as scaffolds in tissue engineering.

结论聚乳酸、卵磷脂及多聚赖氨酸共同包埋几丁质具有作为组织工程技术中细胞培养支架的应用前景.

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2、

After 28 days of cells and large amount of matrix on the scaffolds.

至28天,瓣膜支架上可见大量细胞黏附,细胞融合成片,表面可见基质形成.

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3、

To mount the scaffolds . To advance to the muzzles of guns wit perfect nonchalance.

走上绞刑台,行至枪口, 我安之若泰.

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4、

The electrospun scaffolds were applied to the cartilage, bone, vessel, heart, and nerve tissue engineering fields.

阐述电纺支架在软骨 、 骨 、 血管 、 心脏 、 神经等组织工程领域的应用.

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5、

Objective: To study the biocompatibility of polyglycolic acid ( PGA) scaffolds with fetal dermal follicle cell ( FDPC) and its growth characters in PGA, then provide the possibility for fabricating living tissue engineering skin with hair follicle and PGA.

目的:观察人胎儿毛乳头细胞(FDPC)在生物可降解材料聚羟基乙酸(PGA)支架材料中的生长情况,探讨其作为组织工程皮肤种子细胞和真皮支架的可行性。

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6、

Results: Cell adhesion rate of FDPC in PGA was 28.6%, and the cells attached and grew well on the PGA scaffolds.

结果:PGA材料浸提液对于FDPC生长没有抑制,FDPC与PGA的黏附率为28.6%,细胞在支架上三维立体培养符合正常生长曲线,HE染色和电镜显示细胞生长良好,形态正常,黏附牢固。

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7、

One of the research high lights of bone tissue engineering is to design and manufacture scaffolds for cell attaching, migrating, and proliferating.

研制合适的细胞外支架材料一直是骨组织工程研究的一个热点课题。

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8、

Preparation and Properties of a Novel Chitosan Based Scaffolds for Corneal Stroma in Tissue Engineering

新型壳聚糖基组织工程角膜基质支架的制备和性质研究

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9、

Research Progresses on Electroactive and Electrically Conductive Polymers for Tissue Engineering Scaffolds

电活性导电聚合物组织工程支架材料研究进展

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10、

Preparation and Properties of Human Fibrin Gel and Its Composite Scaffolds; hand-made cellulose acetate spectacle frame

人纤维蛋白凝胶及其复合支架的制备与性能乙酸纤维手工胶板镜架

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11、

Objective To investigate the feasibility of using poly acid ( PLGA ) as corneal stroma scaffolds in vivo.

目的探讨以可降解高分子材料聚羟基乙醇 ( PLGA ) 为支架体外构建组织工程化角膜基质的可行性.

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12、

This study indicates the promising prospect of porous laminated composite scaffolds in bone tissue engin. . .

显示了这种材料在骨组织工程领域的广阔应用前景。

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13、

Scaffolds shall not be loaded in excess of the working load for which they are intended.

脚手架不得承受超过其设计能力的工作负荷.

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14、

The honeycomb pore structure can adjust the distribution of osteoblasts on the scaffolds.

支架类蜂巢状孔结构能够调节成骨细胞在支架内的分布.

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