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Optimization of Diclofenac-Loaded Bicomponent Nanofibers: Effect of Gelatin on In Vitro and In Vivo Response

机译:负载双氯芬酸的双组分纳米纤维的优化:明胶对体外和体内反应的影响

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摘要

The use of electrospun fibers as anti-inflammatory drug carriers is currently one of the most interesting approaches for the design of drug delivery systems. In recent years, biodegradable polymers blended with naturally derived ones have been extensively studied to fabricate bioinspired platforms capable of driving biological responses by releasing selected molecular/pharmaceutical signals. Here, sodium diclofenac (DicNa)-loaded electrospun fibers, consisting of polycaprolactone (PCL) or gelatin-functionalized PCL, were studied to evaluate fibroblasts’ in vitro and in vivo response. In vitro studies demonstrated that cell adhesion of L929 cells (≈70%) was not affected by the presence of DicNa after 4 h. Moreover, the initial burst release of the drug from PD and PGD fibers, e.g., 80 and 48%, respectively, after 5 h—combined with its sustained release—did not produce any cytotoxic effect and did not negatively influence the biological activity of the cells. In particular, it was demonstrated that the addition of gelatin concurred to slow down the release mechanism, thus limiting the antiproliferative effect of DicNa, as confirmed by the significant increase in cell viability and collagen deposition after 7 days, with respect to PCL alone. In vivo studies in a rat subcutaneous model also confirmed the ability of DicNa-loaded fibers to moderate the inflammatory/foreign body response independently through the presence of gelatin that played a significant role in supporting the formation of small-caliber vessels after 10 days of implantation. All of these results suggest using bicomponent fibers loaded with DicNa as a valid therapeutic tool capable of supporting the wound healing process and limiting in vivo inflammation and rejection phenomena.
机译:使用静电纺丝纤维作为抗炎药物载体是目前设计药物输送系统最有趣的方法之一。近年来,可生物降解聚合物与天然衍生聚合物的混合物已被广泛研究,以制造能够通过释放选定的分子/药物信号来驱动生物反应的生物启发平台。在这里,研究了由聚己内酯 (PCL) 或明胶功能化 PCL 组成的双氯芬酸钠 (DicNa) 负载静电纺丝纤维,以评估成纤维细胞的体外和体内反应。体外研究表明,4 小时后 L929 细胞 (≈70%) 的细胞粘附不受 DicNa 存在的影响。此外,药物在 5 小时后从 PD 和 PGD 纤维的初始爆发释放,例如分别为 80% 和 48% - 结合其持续释放 - 没有产生任何细胞毒作用,也没有对细胞的生物活性产生负面影响。特别是,事实证明,添加明胶同时减慢释放机制,从而限制了 DicNa 的抗增殖作用,就单独使用 PCL 而言,7 天后细胞活力和胶原蛋白沉积的显着增加证实了这一点。大鼠皮下模型的体内研究还证实了载有 DicNa 的纤维能够通过明胶的存在独立调节炎症/异物反应,明胶在支持植入 10 天后小口径血管的形成中发挥重要作用。所有这些结果表明,使用载有 DicNa 的双组分纤维作为一种有效的治疗工具,能够支持伤口愈合过程并限制体内炎症和排斥现象。

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