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首页> 外文期刊>BioMedical Engineering OnLine >Heparinized silk fibroin hydrogels loading FGF1 promote the wound healing in rats with full-thickness skin excision
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Heparinized silk fibroin hydrogels loading FGF1 promote the wound healing in rats with full-thickness skin excision

机译:载有FGF1的肝素化丝素蛋白水凝胶促进全层皮肤切除大鼠的伤口愈合

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Silk fibroin hydrogel, derived from Bombyx mori cocoons, has been shown to have potential effects on wound healing due to its excellent biocompatibility and less immunogenic and biodegradable properties. Many studies suggest silk fibroin as a promising material of wound dressing and it can support the adhesion and proliferation of a variety of human cells in vitro. However, lack of translational evidence has hampered its clinical applications for skin repair. Herein, a heparin-immobilized fibroin hydrogel was fabricated to deliver FGF1 (human acidic fibroblast growth factor 1) on top of wound in rats with full-thickness skin excision by performing comprehensive preclinical studies to fully evaluate its safety and effectiveness. The wound-healing efficiency of developed fibroin hydrogels was evaluated in full-thickness wound model of rats, compared with the chitosan used clinically. The water absorption, swelling ratio, accumulative FGF1 releasing rate and biodegradation ratio of fabricated hydrogels were measured. The regenerated fibroin hydrogels with good water uptake properties rapidly swelled to a 17.3-fold maximum swelling behavior over 12?h and a total amount of 40.48?±?1.28% hydrogels was lost within 15?days. Furthermore, accumulative releasing data suggested that heparinized hydrogels possessed effective release behavior of FGF1. Then full-thickness skin excision was created in rats and left untreated or covered with heparinized fibroin hydrogels-immobilized recombinant human FGF1. The histological evaluation using hematoxylin and eosin (HE) and Masson’s trichrome (MT) staining was performed to observe the dermic formation and collagen deposition on the wound-healing site. To evaluate the wound-healing mechanisms induced by fibroin hydrogel treatment, wound-healing scratch and cell proliferation assay were performed. it was found that both fibroin hydrogels and FGF1 can facilitate the migration of fibroblast L929 cells proliferation and migration. This study provides systematic preclinical evidence that the silk fibroin promotes wound healing as a wound-healing dressing, thereby establishing a foundation toward its further application for new treatment options of wound repair and regeneration.
机译:蚕丝蛋白水凝胶源自家蚕蚕茧,由于其优异的生物相容性以及较低的免疫原性和可生物降解性,已显示出对伤口愈合的潜在作用。许多研究表明,丝素蛋白是伤口敷料的一种有前途的材料,它可以在体外支持多种人类细胞的粘附和增殖。但是,缺乏翻译证据阻碍了其在皮肤修复中的临床应用。在此,通过进行全面的临床前研究以充分评估其安全性和有效性,制备了固定有肝素的纤维蛋白水凝胶,以在全层皮肤切除大鼠的伤口上方递送FGF1(人类酸性成纤维细胞生长因子1)。与临床使用的壳聚糖相比,在大鼠的全层伤口模型中评估了开发的纤维蛋白水凝胶的伤口愈合效率。测量了制备的水凝胶的吸水率,溶胀率,FGF1累积释放率和生物降解率。具有良好吸水性能的再生丝心蛋白水凝胶在12?h内迅速溶胀至最大溶胀行为的17.3倍,在15天之内损失了40.48?±1.28%的水凝胶。此外,累积释放数据表明肝素化水凝胶具有FGF1的有效释放行为。然后在大鼠中创建全厚度皮肤切除术,并未经治疗或用肝素化的丝蛋白水凝胶固定的重组人FGF1覆盖。使用苏木精和曙红(HE)以及Masson三色(MT)染色进行组织学评估,以观察伤口愈合部位的真皮形成和胶原蛋白沉积。为了评估纤维蛋白水凝胶处理诱导的伤口愈合机制,进行了伤口愈合刮擦和细胞增殖测定。已发现纤维蛋白水凝胶和FGF1均可促进成纤维细胞L929细胞的增殖和迁移。这项研究提供了系统的临床前证据,证明丝素蛋白可以作为伤口愈合敷料促进伤口愈合,从而为进一步应用于伤口修复和再生的新疗法奠定了基础。

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