作者
Hajar Seyednejad, Debby Gawlitta, Raoul V Kuiper, Alain de Bruin, Cornelus F van Nostrum, Tina Vermonden, Wouter JA Dhert, Wim E Hennink
发表日期
2012/6/1
期刊
Biomaterials
卷号
33
期号
17
页码范围
4309-4318
出版商
Elsevier
简介
The aim of this study was to evaluate the in vivo biodegradation and biocompatibility of three-dimensional (3D) scaffolds based on a hydroxyl-functionalized polyester (poly(hydroxymethylglycolide-co-ε-caprolactone), PHMGCL), which has enhanced hydrophilicity, increased degradation rate, and improved cell–material interactions as compared to its counterpart poly(ε-caprolactone), PCL. In this study, 3D scaffolds based on this polymer (PHMGCL, HMG:CL 8:92) were prepared by means of fiber deposition (melt-plotting). The biodegradation and tissue biocompatibility of PHMGCL and PCL scaffolds after subcutaneous implantation in Balb/c mice were investigated. At 4 and 12 weeks post implantation, the scaffolds were retrieved and evaluated for extent of degradation by measuring the residual weight of the scaffolds, thermal properties (DSC), and morphology (SEM) whereas the polymer was analyzed for both its …
引用总数
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