首页> 外文期刊>Biomaterials >Mesoscopic spatial designs of nano- and microfiber meshes for tissue-engineering matrix and scaffold based on newly devised multilayering and mixing electrospinning techniques.
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Mesoscopic spatial designs of nano- and microfiber meshes for tissue-engineering matrix and scaffold based on newly devised multilayering and mixing electrospinning techniques.

机译:基于新设计的多层和混合电纺技术的用于组织工程基质和支架的纳米和超细纤维网的介观空间设计。

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摘要

To design a mesoscopically ordered structure of the matrices and scaffolds composed of nano- and microscale fiber meshes for artificial and tissue-engineering devices, two new electrospinning techniques are proposed: multilayering electrospinning and mixing electrospinning. First, the following four kinds of component polymers were individually electrospun to determine the conditions for producing stable nano- and microfibers by optimizing the formulation parameters (solvent and polymer concentration) and operation parameters (voltage, air gap, and flow rate) for each polymer: (a) type I collagen, (b) styrenated gelatin (ST-gelatin), (c) segmented polyurethane (SPU), and (d) poly(ethylene oxide). A trilayered electrospun mesh, in which individual fiber meshes (type I collagen, ST-gelatin, and SPU) were deposited layer by layer, was formed by sequential electrospinning; this was clearly visualized by confocal laser scanning microscopy. The mixed electrospun-fiber mesh composed of SPU and PEO was prepared by simultaneous electrospinning on a stainless-steel mandrel with high-speed rotation and traverse movement. A bilayered tubular construct composed of a thick SPU microfiber mesh as an outer layer and a thin type I collagen nanofiber mesh as an inner layer was fabricated as a prototype scaffold of artificial grafts, and visualized by scanning electron microscopy.
机译:为了设计由纳米和微米级纤维网构成的基质和支架的介观有序结构,用于人工和组织工程设备,提出了两种新的电纺技术:多层电纺和混合电纺。首先,通过优化每种聚合物的配方参数(溶剂和聚合物浓度)和操作参数(电压,气隙和流速),分别对以下四种组分聚合物进行静电纺丝,以确定生产稳定的纳米纤维和微纤维的条件:(a)I型胶原蛋白,(b)苯乙烯化明胶(ST-明胶),(c)分段聚氨酯(SPU),和(d)聚环氧乙烷。通过依次电纺形成三层电纺网,其中逐层沉积单个纤维网(I型胶原,ST明胶和SPU)。通过共聚焦激光扫描显微镜可以清楚地看到这一点。由SPU和PEO组成的混合电纺纤维网是通过在高速旋转和往复运动的不锈钢心轴上同时静电纺丝而制备的。将由厚的SPU超细纤维网作为外层和薄的I型胶原纳米纤维网作为内层组成的双层管状构造作为人造移植物的原型支架,并通过扫描电子显微镜观察。

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