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Tissue engineering : Frontiers in biotechnology

R. Langer, +1 more
- 01 Jan 1993 - 
- Vol. 260, Iss: 5110, pp 920-926
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This article is published in Science.The article was published on 1993-01-01 and is currently open access. It has received 5981 citations till now.

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Porous poly(α-hydroxyacid)/Bioglass® composite scaffolds for bone tissue engineering. I: preparation and in vitro characterisation

TL;DR: The presence of the bioactive filler was found to delay the degradation rate of the polymer as compared to the neat polymer foams and to a larger extent in absence of Bioglass.
Journal ArticleDOI

Tissue engineering of electrically responsive tissues using polyaniline based polymers: a review.

TL;DR: It is concluded that electroactive PANI and its derivatives show great promise in eliciting favorable responses from various cell lines that respond to electrical stimuli, and are therefore effective biomaterials for the engineering of electrically responsive biological tissues and organs.
Journal ArticleDOI

Tissue engineering: current state and perspectives.

TL;DR: This approach seeks to promote an environment which permits the native capacity of cells to integrate, differentiate, and develop new tissues which promote the development of new tissues whose properties more closely match their native counterparts.
Journal ArticleDOI

Recent development on computer aided tissue engineering--a review.

TL;DR: Recent development and application of enabling computer technology, imaging technology, computer-aided design and computer- aided manufacturing, and rapid prototyping technology in tissue engineering are reviewed.
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