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首页> 外文期刊>RSC Advances >An asymmetric wettable chitosan–silk fibroin composite dressing with fixed silver nanoparticles for infected wound repair: in vitro and in vivo evaluation
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An asymmetric wettable chitosan–silk fibroin composite dressing with fixed silver nanoparticles for infected wound repair: in vitro and in vivo evaluation

机译:固定银纳米颗粒的不对称可湿性壳聚糖-丝素蛋白复合敷料用于感染伤口修复:体外体内评估

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The treatment of large-area infected wounds remains a significant challenge, as there is no effective wound dressing for infected wound healing applicable to clinical applications. In this study, chitosan–silk fibroin composite scaffolds containing silver nanoparticles (AgNP) that underwent asymmetric modification were fabricated for tissue engineering dressings. The scaffolds were prepared from a solution containing a chitosan–silk–fibroin emulsion with added AgNPs using a lyophilization approach and with an asymmetric coating on the surface of one side. Transmission electron microscopy images and laser particle size analysis showed the AgNP distribution, scanning electron microscopy images showed the surface morphology of the dressings, and inductively coupled plasma mass spectrometry showed the silver content. The asymmetric wettability of the dressings was measured using a contact angle meter. High porosity, good moisture retention capability and appropriate tensile strength were observed by measuring the physical and mechanical properties. Good antimicrobial properties towards various bacteria were observed via in vitro antibacterial effect analysis. Controlled AgNP release by the dressings and their resistance to the infiltration of microorganisms were also observed in our experiments. A highly biocompatible dressing was observed by the MTT assay experiment and subcutaneous sensitization test. Moreover, the effects of the dressings on infected wound healing were measured in mice infected wound models. Analysis of the wound healing rate, bacterial cultures of the exudate, blood samples and histological examination all provided satisfactory results. These results demonstrate that the dressings we prepared offer the potential for infected wound tissue repair and regeneration.
机译:大面积感染伤口的治疗仍然是一项重大挑战,因为没有可用于临床应用的有效伤口敷料来感染伤口愈合。在这项研究中,壳聚糖-丝素蛋白复合支架包含经过不对称修饰的银纳米颗粒(AgNP),用于组织工程敷料。支架是用冻干法从含有壳聚糖-丝素-丝蛋白乳剂和添加的AgNPs的溶液中冻干制备的,并且该溶液的一侧表面不对称。透射电子显微镜图像和激光粒度分析显示AgNP分布,扫描电子显微镜图像显示敷料的表面形态,电感耦合等离子体质谱法显示银含量。使用接触角仪测量敷料的不对称润湿性。通过测量物理和机械性能,观察到高孔隙率,良好的保水能力和适当的拉伸强度。通过体外抗菌作用分析,观察到了对各种细菌的良好抗菌性能。在我们的实验中还观察到敷料控制的AgNP释放及其对微生物渗透的抵抗力。通过MTT测定实验和皮下致敏试验观察到高度生物相容的敷料。此外,在感染小鼠的伤口模型中测量了敷料对感染伤口愈合的影响。伤口愈合率,渗出液细菌培养,血样和组织学检查分析均提供了令人满意的结果。这些结果表明,我们制备的敷料为感染的伤口组织修复和再生提供了潜力。

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