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The design, characteristics, and application of polyurethane dressings using the electrospinning process.

机译:使用静电纺丝工艺的聚氨酯敷料的设计,特性和应用。

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In general, a dressing is used to protect and help heal wounds. There are several types of dressings on the market such as hydrocolloid, hydrogel, and medicated dressings. One technique for making a dressing is electrospinning, which is a very simple procedure used to produce fibers. Due to much smaller fiber-diameters than produced with the conventional technique, the fibers from electrospinning have unique properties: high porosity and high surface areas, which are advantageous for wound healing.; In this research, the fibers were electrospun using polyurethane, TecophilicRTM or TecoflexRTM, with various additives. First, multilayer transdermal electrospun dressings, four and five-layers, were developed that allowed for the controlled release of nitric oxide (NO) from a NO2 -/ascorbic acid system encapsulated in polymer nanofibers. The amount of NO released from each wound dressing was investigated. Both the four and five-layer dressings were tested for morphology of fibers, water absorption, nitrite distribution, NO release profile after sterilization by gamma radiation, and stability. In the case of the four-layer transdermal dressing, the dressing was tested in diabetic, periodontal, and cutaneous leishmaniasis patients. Furthermore, the color change of dressing was investigated.; TecophilicRTM was also spun with an antimicrobial agent, which was added to the TecophilicRTM solution to electrospin an antimicrobial dressing. The morphology of fibers was tested using an optical microscope and the water absorption, uniformity, and percent extraction of dressing were also determined. In addition, the efficiency of the antimicrobial agent in the dressing was determined according to SN 195920-1994 and ASTM 2149-01.; Another NO-releasing dressing was developed employing the NO donor molecules, sodium salt of linear polyethylenimine NONOates (LPEINO-Na) and calcium salt of linear polyethylenimine NONOates (LPEINO-Ca), which were electrospun with TecophilicRTM. The NO release profiles for the LPEINO fibers were generated using a nitric oxide analyzer (NOA) and distribution of the particles in the dressing was examined. Moreover, the amount of NO released after patch storage for 1 and 2 months was determined.
机译:通常,敷料用于保护和帮助伤口愈合。市场上有几种敷料,例如水胶体,水凝胶和药用敷料。制造敷料的一种技术是静电纺丝,这是用于生产纤维的非常简单的程序。由于电纺丝的纤维直径比传统技术小得多,电纺丝纤维具有独特的性能:高孔隙率和高表面积,有利于伤口愈合。在这项研究中,使用聚氨酯,TecophilicRTM或TecoflexRTM以及各种添加剂对纤维进行了电纺。首先,开发了四层和五层的多层透皮电纺敷料,可以从包裹在聚合物纳米纤维中的NO2- /抗坏血酸系统中释放一氧化氮(NO)。研究了每种伤口敷料释放的NO量。测试了四层和五层敷料的纤维形态,吸水率,亚硝酸盐分布,经伽马射线灭菌后的NO释放曲线以及稳定性。对于四层透皮敷料,在糖尿病,牙周病和皮肤利什曼病患者中测试了该敷料。此外,研究了敷料的颜色变化。 TecophilicRTM也用抗菌剂纺丝,将其添加到TecophilicRTM溶液中以静电纺丝抗菌敷料。使用光学显微镜测试纤维的形态,并确定吸水率,均匀性和敷料的提取率。另外,根据SN 195920-1994和ASTM 2149-01确定抗微生物剂在敷料中的效率。还开发了另一种释放NO的敷料,使用NO供体分子,线性聚乙烯亚胺NONOates的钠盐(LPEINO-Na)和线性聚乙烯亚胺NONOates的钙盐(LPEINO-Ca),它们通过TecophilicRTM进行电纺丝。使用一氧化氮分析仪(NOA)生成LPEINO纤维的NO释放曲线,并检查敷料中的颗粒分布。此外,测定了贴剂储存1个月和2个月后释放的NO的量。

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