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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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Fast setting calcium phosphate-chitosan scaffold: mechanical properties and biocompatibility.

TL;DR: Substantial reinforcement and macroporosity were imparted to a moldable, fast-setting, biocompatible, and resorbable hydroxyapatite graft and the two to three times increase in strength may help extend the use of CPC to larger repairs in moderately stress-bearing locations.
Journal ArticleDOI

Design and preparation of polymeric scaffolds for tissue engineering

TL;DR: The adaptation of conventional preparation methods, such as electrospinning, induced phase separation of polymer solutions or porogen leaching, and the utilization of novel fabrication techniques, with their many different methods to generate or to embody scaffold structures are described.
Journal ArticleDOI

Macro/microporous silk fibroin scaffolds with potential for articular cartilage and meniscus tissue engineering applications.

TL;DR: The scaffolds developed in this study are proposed to be suitable for use in meniscus and cartilage tissue-engineered scaffolding as their structure integrity, morphology and mechanical properties were maintained after in vitro degradation for 30 days.
Journal ArticleDOI

A nanofibrous composite membrane of PLGA-chitosan/PVA prepared by electrospinning

TL;DR: In this paper, poly(lactide-co-glycolide) (PLGA) and chitosan/poly(vinyl alcohol) (PVA) were simultaneously electrospun from two different syringes and mixed on the rotating drum to prepare the nanofibrous composite membrane.
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