The in vitro enzymatic degradation of cross-linked poly(trimethylene carbonate) networks (PTMC-Ns) was performed in lipase solutions at 37 °C, and the effect of the initial molecular weight and cross-linker amount as well as the cross-linker type on the degradation rate of PTMC-Ns was investigated. Due to their denser structure and more hydrophobic surface as well as the higher glass transition temperature, a slower degradation rate was seen for PTMC-Ns with high initial molecular weight at a given cross-linker amount. Similar results could be observed as the cross-linker amount increased, and cross-linker type also influenced the degradation rate of PTMC-Ns. Furthermore, the enzymatic degradation of PTMC-Ns was accelerated by the surfactants role of lipase via surface erosion mechanism, the enzymatic degradation rate was higher than that of hydrolysis case. The results indicated that PTMC-Ns were promising candidates for clinical subcutaneous implants, especially due to their tunable degradation rate and enhanced form-stability as well as no acidic degradation products.
The In Vitro Enzymatic Degradation of Cross-Linked Poly(trimethylene carbonate) Networks.
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作者:Hou Zhipeng, Hu Jianshe, Li Jianxin, Zhang Wei, Li Miao, Guo Jing, Yang Liqun, Chen Zhangpei
| 期刊: | Polymers | 影响因子: | 4.900 |
| 时间: | 2017 | 起止号: | 2017 Nov 13; 9(11):605 |
| doi: | 10.3390/polym9110605 | ||
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