2008International Journal of StomatologyRequires access

Application of fibrin glue in tissue engineering

Tang Xiu-f

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Abstract

Scaffold, which has well biocompatibility and bioactivity, is one of the focal point of tissue engineering research. Fibrin glue, which is mainly composed of natural extracellular matrix and characterized with the good biocompatibility, effective bioactivity, biodegradability, as well as three dimensional porous structure and fine plasticity, is widely applied to tissue engineering research as scaffold recently. Even with inadequate mechanical strength, it still plays an important role in the formation of muscle, bone, cartilage and epithelial tissue.

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What this paper is about

Scaffold, which has well biocompatibility and bioactivity, is one of the focal point of tissue engineering research. Fibrin glue, which is mainly composed of natural extracellular matrix and characterized with the good biocompatibility, effective bioactivity, biodegradability, as well as three dimensional porous structure and fine plasticity, is widely applied to tissue engineering research as scaffold recently. Even with inadequate mechanical strength, it still plays an important role in the formation of muscle, bone, cartilage and epithelial tissue.

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Available abstract

Scaffold, which has well biocompatibility and bioactivity, is one of the focal point of tissue engineering research. Fibrin glue, which is mainly composed of natural extracellular matrix and characterized with the good biocompatibility, effective bioactivity, biodegradability, as well as three dimensional porous structure and fine plasticity, is widely applied to tissue engineering research as scaffold recently. Even with inadequate mechanical strength, it still plays an important role in the formation of muscle, bone, cartilage and epithelial tissue.

Key concepts: Biocompatibility, Scaffold, Fibrin glue, Tissue engineering, Extracellular matrix, Biomedical engineering, Cartilage, Materials science

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