2008Chemistry LettersRequires access

Development of a Collagen Hydrogel with High Mechanical Strength by a Simple Orientation Method for Triple-helix

Chizuru Hongo, Michiya Matsusaki, Kohji Nishida, Mitsuru Akashi

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Abstract

Abstract Collagen hydrogels with oriented triple-helix were fabricated simply via the axial orientation of a dense collagen solution onto a glass plate and cross-linking. The orientation of the collagen triple-helix in the gels was clearly confirmed by X-ray diffraction measurements. The tensile strength of the oriented collagen gels in parallel was twofold higher than that of non-oriented gels as a control. Our collagen gels with oriented triple-helix can be useful as novel scaffolds in the tissue engineering field.

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What this paper is about

Abstract Collagen hydrogels with oriented triple-helix were fabricated simply via the axial orientation of a dense collagen solution onto a glass plate and cross-linking. The orientation of the collagen triple-helix in the gels was clearly confirmed by X-ray diffraction measurements. The tensile strength of the oriented collagen gels in parallel was twofold higher than that of non-oriented gels as a control. Our collagen gels with oriented triple-helix can be useful as novel scaffolds in the tissue engineering field.

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Available abstract

Abstract Collagen hydrogels with oriented triple-helix were fabricated simply via the axial orientation of a dense collagen solution onto a glass plate and cross-linking. The orientation of the collagen triple-helix in the gels was clearly confirmed by X-ray diffraction measurements. The tensile strength of the oriented collagen gels in parallel was twofold higher than that of non-oriented gels as a control. Our collagen gels with oriented triple-helix can be useful as novel scaffolds in the tissue engineering field.

Key concepts: Chemistry, Triple helix, Collagen helix, Orientation (vector space), Simple (philosophy), Mechanical strength, Composite material, Stereochemistry

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