hyaluronic acid benzyl ester

Known as: hyaluronan benzyl ester, HYAFF 11, hyaluronan total benzyl ester HYAFF11 
 
National Institutes of Health

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Topic mentions per year

1993-2016
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Papers overview

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2010
2010
Engineering cartilage tissue is challenging, mainly because chondrocytes lose their differentiated phenotype when cultured in… (More)
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2009
2009
Neovascularization can be improved using polymer scaffolds supporting endothelial progenitor cells (EPCs). The aim of the present… (More)
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2007
2007
Scaffolds with 400 microm pores constructed from hyaluronan modified by benzyl esterification of the carboxylic acid groups… (More)
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2005
2005
OBJECTIVE The natural repair of osteochondral defects can be enhanced with biocompatible, biodegradable materials that support… (More)
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2005
2005
Tissue engineering is a promising approach to developing hepatic tissue suitable for the functional replacement of a failing… (More)
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2003
2003
The re-differentiation capacities of human articular and chick embryo sternal chondrocytes were evaluated by culture on HYAFF-11… (More)
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2003
2003
In chronic wounds, factors are released which perpetuate inflammatory processes, including polymorphonuclear leukocyte (PMN… (More)
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2000
2000
Articular cartilage in adults has limited ability for self-repair. Some methods devised to augment the natural healing response… (More)
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Highly Cited
1998
Highly Cited
1998
The aim of this study was to investigate the possibility of using the benzyl ester of hyaluronic acid (HYAFF 11), a recently… (More)
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1996
1996
Membranes of 75% and 100% benzyl hyaluronate esters (percentage of total carboxylate groups esterified) were prepared and their… (More)
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