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首页> 外文期刊>Acta biomaterialia >Hyperbranched polyglycerol electrospun nanofibers for wound dressing applications.
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Hyperbranched polyglycerol electrospun nanofibers for wound dressing applications.

机译:超支化聚甘油电纺纳米纤维,用于伤口敷料。

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This study reports on the performance of electrospun hyperbranched polyglycerol nanofibers capable of providing an active agent delivery for wound dressing applications. The aim of this work was to prepare electrospun HPGL nanofibers containing Calendula officinalis as a wound-healing and anti-inflammatory agent. The morphology of the electrospun HPGL-C. officinalis nanofibers was analyzed using a scanning electron microscope. The results showed that the diameters of the fibers were in nanoscales. The release of C. officinalis from the electrospun HPGL fibers was determined by HPLC at a physiological temperature (37 degrees C). Rapid release of the C. officinalis from the electrospun HPGL-C. officinalis nanofibers was exhibited as result of the high swelling ability as well as the high porosity of the electrospun HPGL-C. officinalis membranes. The degree of swelling, and the mechanical and biocompatible properties of the electrospun HPGL fibers were determined. The results showed that, in physiological conditions, the water absorption into the HPGL electrospun fibers slowed down, governed by the rate at which the electrospun HPGL-C. officinalis membranes interacted with the physiological fluid. The rate of release of C. officinalis seemed to depend on the C. officinalis content in the HPGL nanofibers. From the elastic modulus, it could be seen that elastic electrospun HPGL fibers were obtained with increments of C. officinalis content in the HPGL-C. officinalis membranes. The results of in vivo experiments in rats suggested that HPGL-C. officinalis might be an interesting bioactive wound dressing material for clinical applications.
机译:这项研究报告了能够为伤口敷料应用提供活性剂递送的电纺超支化聚甘油纳米纤维的性能。这项工作的目的是制备包含金盏菊作为伤口愈合和抗炎剂的静电纺丝HPGL纳米纤维。静电纺丝HPGL-C的形态。使用扫描电子显微镜分析了药用纳米纤维。结果表明,纤维的直径为纳米级。通过HPLC在生理温度(37℃)下测定从电纺HPGL纤维中的C.officinalis的释放。从电纺HPGL-C中快速释放C. officinalis。由于电纺HPGL-C的高溶胀能力和高孔隙率,其具有药用的纳米纤维。厚朴膜。测定了电纺HPGL纤维的溶胀度以及机械和生物相容性。结果表明,在生理条件下,对HPGL电纺纤维的吸水速度减慢,这取决于电纺HPGL-C的速率。厚朴膜与生理液相互作用。 C. officinalis的释放速率似乎取决于HPGL纳米纤维中C. officinalis的含量。从弹性模量可以看出,获得的弹性电纺丝HPGL纤维的HPGL-C中山茱。含量增加。厚朴膜。大鼠体内实验结果提示HPGL-C。厚朴可能是一种有趣的生物活性伤口敷料,可用于临床。

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