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首页> 外文期刊>International Journal of Nanomedicine >Preparation and in vivo evaluation of a topical hydrogel system incorporating highly skin-permeable growth factors, quercetin, and oxygen carriers for enhanced diabetic wound-healing therapy
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Preparation and in vivo evaluation of a topical hydrogel system incorporating highly skin-permeable growth factors, quercetin, and oxygen carriers for enhanced diabetic wound-healing therapy

机译:结合高度皮肤可渗透性生长因子,槲皮素和氧气载体的局部水凝胶系统的制备和体内评估,用于增强糖尿病伤口的治疗

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Purpose: We created and evaluated an enhanced topical delivery system featuring a combination of highly skin-permeable growth factors (GFs), quercetin (QCN), and oxygen; these synergistically accelerated re-epithelialization and granulation tissue formation of/in diabetic wounds by increasing the levels of GFs and antioxidants, and the oxygen partial pressure, at the wound site. Methods: To enhance the therapeutic effects of exogenous administration of GFs for the treatment of diabetic wounds, we prepared highly skin-permeable GF complexes comprised of epidermal growth factor (EGF), insulin-like growth factor-I (IGF-I), platelet-derived growth factor-A (PDGF-A), and basic fibroblast growth factor (bFGF), genetically attached, via the N-termini, to a low-molecular-weight protamine (LMWP) to form LMWP-EGF, LMWP-IGF-I, LMWP-PDGF-A, and LMWP-bFGF, respectively. Furthermore, quercetin (QCN)- and oxygen-carrying 1-bromoperfluorooctane (PFOB)-loaded nanoemulsions (QCN-NE and OXY-PFOB-NE) were developed to improve the topical delivery of QCN and oxygen, respectively. After confirming the enhanced penetration of LMWP-GFs, QCN-NE, and oxygen delivered from OXY-PFOB-NE across human epidermis, we evaluated the effects of combining LMWP-GFs, QCN-NE, and OXY-PFOB-NE on proliferation of keratinocytes and fibroblasts, and the chronic wound closure rate of a diabetic mouse model. Results: The optimal ratios of LMWP-EGF, LMWP-IGF-I, LMWP-PDGF-A, LMWP-bFGF, QCN-NE, and OXY-PFOB-NE were 1, 1, 0.02, 0.02, 0.2, and 60, respectively. Moreover, a Carbopol hydrogel containing LMWP-GFs, QCN-NE, and OXY-PFOB-NE (LMWP-GFs/QCN-NE/OXY-PFOB-NE-GEL) significantly improved scratch-wound recovery of keratinocytes and fibroblasts in vitro compared to that afforded by hydrogels containing each component alone. LMWP-GFs/QCN-NE/OXY-PFOB-NE-GEL significantly accelerated wound-healing in a diabetic mouse model, decreasing wound size by 54 and 35% compared to the vehicle and LMWP-GFs, respectively. Conclusion: LMWP-GFs/QCN-NE/OXY-PFOB-NE-GEL synergistically accelerated the healing of chronic wounds, exerting both rapid and prolonged effects.
机译:目的:我们创建并评估了一种增强的局部给药系统,该系统结合了高皮肤渗透性生长因子(GFs),槲皮素(QCN)和氧气的功能;通过增加伤口处的GFs和抗氧化剂的含量以及氧分压,这些协同作用加速了糖尿病伤口的上皮再生和肉芽组织形成。方法:为了增强外源性GFs治疗糖尿病伤口的治疗效果,我们制备了由表皮生长因子(EGF),胰岛素样生长因子-I(IGF-I),血小板组成的高皮肤渗透性GF复合物。衍生的生长因子-A(PDGF-A)和碱性成纤维细胞生长因子(bFGF),通过N-末端与低分子量鱼精蛋白(LMWP)遗传相连,形成LMWP-EGF,LMWP-IGF -I,LMWP-PDGF-A和LMWP-bFGF。此外,开发了槲皮素(QCN)和载氧的1-溴全氟辛烷(PFOB)载纳米乳剂(QCN-NE和OXY-PFOB-NE),分别改善了QCN和氧的局部递送。在确认LMWP-GFs,QCN-NE和从OXY-PFOB-NE输送的氧气跨人表皮渗透的增强后,我们评估了LMWP-GFs,QCN-NE和OXY-PFOB-NE联合使用对人皮肤增殖的影响角质形成细胞和成纤维细胞,以及糖尿病小鼠模型的慢性伤口闭合率。结果:LMWP-EGF,LMWP-IGF-1,LMWP-PDGF-A,LMWP-bFGF,QCN-NE和OXY-PFOB-NE的最佳比例分别为1、1、0.02、0.02、0.2和60,分别。此外,与LMWP-GFs,QCN-NE和OXY-PFOB-NE(LMWP-GFs / QCN-NE / OXY-PFOB-NE-GEL)相比,Carbopol水凝胶可显着改善体外角质形成细胞和成纤维细胞的划伤恢复。达到仅包含每种成分的水凝胶所提供的水平。 LMWP-GFs / QCN-NE / OXY-PFOB-NE-GEL可显着加速糖尿病小鼠模型的伤口愈合,与溶媒和LMWP-GFs相比,伤口大小分别减少了54%和35%。结论:LMWP-GFs / QCN-NE / OXY-PFOB-NE-GEL可协同促进慢性伤口的愈合,并具有快速和长期的作用。

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