首页> 美国卫生研究院文献>International Journal of Nanomedicine >Anesthetics and human epidermal growth factor incorporated into anti-adhesive nanofibers provide sustained pain relief and promote healing of surgical wounds
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Anesthetics and human epidermal growth factor incorporated into anti-adhesive nanofibers provide sustained pain relief and promote healing of surgical wounds

机译:麻醉剂和人类表皮生长因子结合到抗粘纳米纤维中可以持续缓解疼痛并促进手术伤口的愈合

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摘要

>Background: This study exploited sheath-core-structured lidocaine/human EGF (hEGF)-loaded anti-adhesive poly[(d,l)-lactide-co-glycolide] (PLGA) nanofibrous films for surgical wounds via a co-axial electrospinning technique.>Materials and methods: After spinning, the properties of the co-axially spun membranes were characterized by scanning electron microscopy, laser-scanning confocal microscopy, Fourier Transform Infrared spectrometry, water contact angle measurements, and tensile tests. Furthermore, a HPLC analysis and an ELISA evaluated the in vitro and in vivo release curves of lidocaine and hEGF from the films.>Results: PLGA anti-adhesion nanofibers eluted high levels of lidocaine and hEGF for over 32 and 27 days, respectively, in vitro. The in vivo evaluation of post-surgery recovery in a rat model demonstrated that no adhesion was noticed in tissues at 2 weeks after surgery illustrating the anti-adhesive performance of the sheath-core-structured nanofibers. Nanofibrous films effectively released lidocaine and hEGF for >2 weeks in vivo. In addition, rats implanted with the lidocaine/hEGF nanofibrous membranes exhibited greater activities than the control demonstrating the pain relief efficacy of the films.>Conclusion: The empirical outcomes suggested that the anti-adhesive nanofibrous films with extended release of lidocaine and hEGF offer post-operative pain relief and wound healing.
机译:>背景:这项研究利用了皮芯结构的利多卡因/人EGF(hEGF)负载的抗粘聚[(d,l)-丙交酯-乙交酯乙交酯)(PLGA)纳米纤维膜。 >材料和方法:纺丝后,通过扫描电子显微镜,激光扫描共聚焦显微镜,傅立叶变换红外光谱法对同轴纺膜的特性进行表征。水接触角测量和拉伸试验。此外,HPLC分析和ELISA评估了膜中利多卡因和hEGF在体内和体外的释放曲线。>结果: PLGA抗粘附纳米纤维洗脱了32多种高水平的利多卡因和hEGF。分别在体外27天。在大鼠模型中进行的手术后恢复的体内评估表明,手术后2周在组织中未观察到粘附现象,这说明了皮芯结构纳米纤维的抗粘附性能。纳米纤维膜可在体内> 2周内有效释放利多卡因和hEGF。此外,植入利多卡因/ hEGF纳米纤维膜的大鼠表现出比对照组更大的活性,证明该膜具有减轻疼痛的功效。>结论:实验结果表明,缓释纳米纤维膜具有缓释作用利多卡因和hEGF可减轻术后疼痛和伤口愈合。

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