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Blow-Spun Nanofibers Embedded with Clay Nanotubes for Biomedical Applications

机译:嵌入粘土纳米管的吹气纳米纤维用于生物医学应用

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Nanofiber scaffolds have been studied extensively for a variety of biomedical applications. Traditional nanofiber production methods have relied heavily on electrically conductive targets, as seen with electrospinning. The solution blow-spin technique is a new, more rapid and versatile nanofiber production method that allows for fibers to be sprayed onto any surface geometry. Halloysite nanotubes (HNTs) are naturally formed alumina silicate clay tubes, which offer tremendous potential as a multifunctional and cytocompatible nanomaterial. This study showed cellular interactions and responses to blow-spun nanofibers loaded with halloysite nanotubes. Additionally, the study showed antibacterial effects of antibiotic loaded versions. Control poly (lactic-co-glycolide) (PLG) fibers and PLG fibers loaded with HNTs were monitored through scanning and transmission electron microscopy. NucBlue??, Picrosirius Red, Von Kossa, and Alcian Blue assays were used to monitor cell attachment, penetration, and growth on the scaffolds during the course of one week. Drug-loaded versions were tested against Escherichia coli in nutrient broth and agar disc diffusion assays. In the first-ever recorded account, electron micrographs showed that solution blow spinning could encapsulate HNTs within nanofibers networks. Histological assays showed that cellular adhesion and growth was maintained on all nanofiber scaffolds, and drug-loaded versions displayed antibacterial effects. It is suggested that solution blow-spun HNT-nanofibers may have significant potential uses in three-dimensional tissue engineering, medical device nanostructured coatings, wound dressings, and modular drug delivery systems.
机译:已经广泛研究了纳米纤维脚手架,用于各种生物医学应用。传统的纳米纤维生产方法在静电纺丝中看到导电靶标很大依赖。溶液吹塑技术是一种新的,更快速而通用的纳米纤维生产方法,允许喷涂到任何表面几何形状上的纤维。 Halloysite Nanotubes(HNT)天然形成氧化铝硅酸盐粘土管,其作为多功能和细胞相容的纳米材料提供巨大的潜力。该研究表明细胞相互作用和对装载霍罗铁纳米管的吹气纳米纤维的反应。此外,该研究表明抗生素负载型型抗菌作用。通过扫描和透射电子显微镜监测控制聚(乳酸二乙醚)(PLG)纤维和用HNT负载的PLG纤维。 Nucblue ??,Picrosirius Red,Von Kossa和Alcian蓝色测定用于在一周内监测支架上的细胞附着,渗透和生长。在营养肉汤和琼脂盘扩散测定中针对大肠杆菌测试了药物载体的版本。在首次录制的账户中,电子显微照片显示溶液吹纺可以封装纳米纤维网络中的HNT。组织学测定表明,在所有纳米纤维支架上保持细胞粘附和生长,并呈现出抗菌作用的药物载体。建议溶液吹气HNT-纳米纤维可能具有在三维组织工程,医疗装置纳米结构涂层,伤口敷料和模块化药物递送系统中的显着潜在用途。

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