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首页> 外文期刊>Colloids and Surfaces, B. Biointerfaces >Wound healing properties of a 3-D scaffold comprising soluble silkworm gland hydrolysate and human collagen
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Wound healing properties of a 3-D scaffold comprising soluble silkworm gland hydrolysate and human collagen

机译:包含可溶性蚕腺水解产物和人类胶原蛋白的3-D支架的伤口愈合特性

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摘要

Biomaterials that serve as scaffolds for cell proliferation and differentiation are increasingly being used in wound repair. In this study, the potential regenerative properties of a 3-D scaffold containing soluble silkworm gland hydrolysate (SSGH) and human collagen were evaluated. The scaffold was generated by solid-liquid phase separation and a freeze-drying method using a homogeneous aqueous solution. The porosity, swelling behavior, protein release, cytotoxicity, and antioxidative properties of scaffolds containing various ratios of SSGH and collagen were evaluated. SSGH/collagen scaffolds had a high porosity of 61-81% and swelling behavior studies demonstrated a 50-75% increase in swelling, along with complete protein release in the presence of phosphate-buffered saline. Cytocompatibility of the SSGH/collagen scaffold was demonstrated using mesenchymal stem cells from human umbilical cord. Furthermore, SSGH/collagen efficiently attenuated oxidative stress-induced cell damage. In an in vivo mouse model of wound healing, the SSGH/collagen scaffold accelerated wound re-epithelialization over a 15-day period. Overall, the microporous SSGH/collagen 3-D scaffold maintained optimal hydration of the exposed tissues and decreased wound healing time. These results contribute to the generation of advanced wound healing materials and may have future therapeutic implications.
机译:用作细胞增殖和分化支架的生物材料正越来越多地用于伤口修复。在这项研究中,评估了包含可溶性蚕腺水解产物(SSGH)和人类胶原蛋白的3-D支架的潜在再生特性。通过固-液相分离和使用均匀水溶液的冷冻干燥方法产生支架。评估了不同比例的SSGH和胶原蛋白的支架的孔隙率,溶胀行为,蛋白质释放,细胞毒性和抗氧化性能。 SSGH /胶原蛋白支架的孔隙率较高,为61-81%,溶胀行为研究表明,在存在磷酸盐缓冲液的情况下,溶胀增加了50-75%,并且蛋白质完全释放。使用来自人脐带的间充质干细胞证明了SSGH /胶原蛋白支架的细胞相容性。此外,SSGH /胶原蛋白可有效减轻氧化应激诱导的细胞损伤。在伤口愈合的体内小鼠模型中,SSGH /胶原蛋白支架在15天的时间内加速了伤口的上皮形成。总体而言,微孔SSGH /胶原蛋白3-D支架可保持暴露组织的最佳水合作用,并缩短伤口愈合时间。这些结果有助于先进的伤口愈合材料的产生,并可能具有未来的治疗意义。

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