Sports Medicine Dubai
Friday, April 22, 2011
NATURE MATERIALS
|
ARTICLE
Nanofibrous hollow microspheres self-assembled from star-shaped polymers as injectable cell carriers for knee repair
Xiaohua Liu
,
Xiaobing Jin
&
Peter X. Ma
Affiliations
Contributions
Corresponding author
Nature Materials
10
,
398–406
(2011)
doi:10.1038/nmat2999
Received
19 December 2009
Accepted
01 March 2011
Published online
17 April 2011
To repair complexly shaped tissue defects, an injectable cell carrier is desirable to achieve an accurate fit and to minimize surgical intervention. However, the injectable carriers available at present have limitations, and are not used clinically for cartilage regeneration. Here, we report nanofibrous hollow microspheres self-assembled from star-shaped biodegradable polymers as an injectable cell carrier. The nanofibrous hollow microspheres, integrating the extracellular-matrix-mimicking architecture with a highly porous injectable form, were shown to efficiently accommodate cells and enhance cartilage regeneration, compared with control microspheres. The nanofibrous hollow microspheres also supported a significantly larger amount of, and higher-quality, cartilage regeneration than the chondrocytes-alone group in an ectopic implantation model. In a critical-size rabbit osteochondral defect-repair model, the nanofibrous hollow microspheres/chondrocytes group achieved substantially better cartilage repair than the chondrocytes-alone group that simulates the clinically available autologous chondrocyte implantation procedure. These results indicate that the nanofibrous hollow microspheres are an excellent injectable cell carrier for cartilage regeneration.
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For further information:
http://www.nature.com/nmat/journal/v10/n5/abs/nmat2999.html
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