Literature DB >> 10654741

Transdermal photopolymerization of poly(ethylene oxide)-based injectable hydrogels for tissue-engineered cartilage.

J Elisseeff1, K Anseth, D Sims, W McIntosh, M Randolph, M Yaremchuk, R Langer.   

Abstract

Transdermal photopolymerization, a minimally invasive method for implantation, was used to subcutaneously place a mixture of polymer and isolated chondrocytes to regenerate cartilage tissue in vivo. Semi-interpenetrating networks of varying proportions of poly(ethylene oxide)-dimethacrylate and poly(ethylene oxide) and primary bovine articular chondrocytes were implanted in athymic mice. Four mice (12 implants) were harvested at 2, 4, and 7 weeks. Chondrocytes survived implantation and photopolymerization and formed neocartilage containing 1.5 to 2.9% wet weight collagen and 4 to 7% glycosaminoglycan. Thirty-five percent of the total collagen was type II collagen. Histologic analysis exhibited tissue structure resembling neocartilage, and safranin O staining demonstrated glycosaminoglycan distribution throughout the hydrogels. This study demonstrates the potential use of transdermal photopolymerization for minimally invasive subcutaneous implantation of hydrogels and chondrocytes for in vivo cartilage regeneration.

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Year:  1999        PMID: 10654741     DOI: 10.1097/00006534-199909040-00017

Source DB:  PubMed          Journal:  Plast Reconstr Surg        ISSN: 0032-1052            Impact factor:   4.730


  40 in total

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2.  Engineering biological structures of prescribed shape using self-assembling multicellular systems.

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3.  The effect of 3D hydrogel scaffold modulus on osteoblast differentiation and mineralization revealed by combinatorial screening.

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4.  Photo-crosslinked alginate hydrogels support enhanced matrix accumulation by nucleus pulposus cells in vivo.

Authors:  A I Chou; S O Akintoye; S B Nicoll
Journal:  Osteoarthritis Cartilage       Date:  2009-05-04       Impact factor: 6.576

5.  In vitro evaluation of macroporous hydrogels to facilitate stem cell infiltration, growth, and mineralization.

Authors:  Vandana Keskar; Nicholas W Marion; Jeremy J Mao; Richard A Gemeinhart
Journal:  Tissue Eng Part A       Date:  2009-07       Impact factor: 3.845

6.  Cytocompatibility studies of an in situ photopolymerized thermoresponsive hydrogel nanoparticle system using human aortic smooth muscle cells.

Authors:  Abhimanyu Sabnis; Maham Rahimi; Christopher Chapman; Kytai T Nguyen
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7.  Tissue engineering for skeletal muscle regeneration.

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8.  Hydrogels for osteochondral repair based on photocrosslinkable carbamate dendrimers.

Authors:  Lovorka Degoricija; Prashant N Bansal; Serge H M Söntjens; Neel S Joshi; Masaya Takahashi; Brian Snyder; Mark W Grinstaff
Journal:  Biomacromolecules       Date:  2008-09-19       Impact factor: 6.988

Review 9.  Biomaterials for vaccine-based cancer immunotherapy.

Authors:  Rui Zhang; Margaret M Billingsley; Michael J Mitchell
Journal:  J Control Release       Date:  2018-10-09       Impact factor: 9.776

10.  An adhesive bone marrow scaffold and bone morphogenetic-2 protein carrier for cartilage tissue engineering.

Authors:  Jacob A Simson; Iossif A Strehin; Qiaozhi Lu; Manuel O Uy; Jennifer H Elisseeff
Journal:  Biomacromolecules       Date:  2013-02-04       Impact factor: 6.988

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