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首页> 外文期刊>Journal of biomedical materials research, Part A >Genipin-crosslinked silk fibroin/hydroxybutyl chitosan nanofibrous scaffolds for tissue-engineering application.
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Genipin-crosslinked silk fibroin/hydroxybutyl chitosan nanofibrous scaffolds for tissue-engineering application.

机译:Genipin交联的丝素蛋白/羟丁基壳聚糖纳米纤维支架,用于组织工程应用。

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摘要

To improve water-resistant ability and mechanical properties of silk fibroin (SF)/hydroxybutyl chitosan (HBC) nanofibrous scaffolds for tissue-engineering applications, genipin, glutaraldehyde (GTA), and ethanol were used to crosslink electrospun nanofibers, respectively. The mechanical properties of nanofibrous scaffolds were obviously improved after 24 h of crosslinking with genipin and were superior to those crosslinked with GTA and ethanol for 24 h. SEM indicated that crosslinked nanofibers with genipin and GTA vapor had good water-resistant ability. Characterization of the microstructure (porosity and pore structure) demonstrated crosslinked nanofibrous scaffolds with genipin and GTA vapor had lager porosities and mean diameters than those with ethanol. Characterization of FTIR-ATR and (13)C NMR clarified both genipin and GTA acted as crosslinking agents for SF and HBC. Furthermore, genipin could induce SF conformation from random coil or alpha-helix to beta-sheet. Although GTA could also successfully crosslink SF/HBC nanofibrous scaffolds, in long run, genipin maybe a better method due to lower cytotoxicity than GTA. Cell viability studies and wound-healing test in rats clarified that the genipin-crosslinked SF/HBC nanofibrous scaffolds had a good biocompatibility both in vitro and in vivo. These results suggested that genipin-crosslinked SF/HBC nanofibrous scaffolds might be potential candidates for wound dressing and tissue-engineering scaffolds.
机译:为了提高用于组织工程应用的丝素蛋白(SF)/羟丁基壳聚糖(HBC)纳米纤维支架的防水性能和机械性能,分别使用genipin,戊二醛(GTA)和乙醇交联静电纺丝纳米纤维。与Genipin交联24 h后,纳米纤维支架的力学性能得到明显改善,并优于GTA和乙醇交联24 h。 SEM表明,具有genipin和GTA蒸气的交联纳米纤维具有良好的耐水性。微观结构(孔隙和孔结构)的表征表明,与Genipin和GTA蒸气交联的纳米纤维支架比具有乙醇的支架具有更大的孔隙率和平均直径。 FTIR-ATR的表征和(13)C NMR证实,京尼平和GTA均充当SF和HBC的交联剂。此外,genipin可以诱导从无规卷曲或α-螺旋到β-折叠的SF构象。尽管GTA也可以成功地交联SF / HBC纳米纤维支架,但从长远来看,由于比GTA更低的细胞毒性,因此Genipin可能是更好的方法。在大鼠中进行的细胞生存力研究和伤口愈合试验表明,该Genipin交联的SF / HBC纳米纤维支架在体外和体内均具有良好的生物相容性。这些结果表明,Genipin交联的SF / HBC纳米纤维支架可能是伤口包扎和组织工程支架的潜在候选者。

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