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氟代甲基丙烯酰胺壳聚糖水凝胶敷料促进急性猪创面模型的愈合。

Fluorinated methacrylamide chitosan hydrogel dressings enhance healing in an acute porcine wound model.

机构信息

Department of Chemical and Biomolecular Engineering, University of Akron, Akron, Ohio, United States of America.

Department of Surgery, Summa Health Systems-Akron Campus, Akron, Ohio, United States of America.

出版信息

PLoS One. 2018 Sep 5;13(9):e0203371. doi: 10.1371/journal.pone.0203371. eCollection 2018.

Abstract

Wound healing involves multiple interrelated processes required to lead to successful healing outcomes. Phagocytosis, inflammation, cell proliferation, angiogenesis, energy production, and collagen synthesis are all directly or indirectly dependent on oxygen. Along with other critical factors, such as nutrition and comorbidities, availability of oxygen is a key determinant of healing success. Previously, we have presented a novel oxygenated hydrogel material that can be made into dressings for continuous localized oxygen delivery to wounds. In this study, an acute porcine wound model was used to test the healing benefits of these oxygenated MACF (MACF + O2) hydrogel dressings compared to controls, which included commercial Derma-GelTM hydrogel dressings. Wound closure and histological analyses were performed to assess re-epithelialization, collagen synthesis, angiogenesis, and keratinocyte maturation. Results from these assays revealed that wounds treated with MACF + O2 hydrogel dressings closed faster as compared to Derma-Gel (p<0.05). Targeted metabolomics via liquid chromatography separation and mass spectrometric detection (LC-MS/MS) and a biochemical assay determined the concentration of hydroxyproline in wound samples at days 14 and 21, showing that MACF + O2 hydrogel dressings improved wound healing via an upregulated collagen synthesis pathway as compared to Derma-Gel (p<0.05). Histological evidence showed that MACF + O2 hydrogel dressings improve new blood vessel formation and keratinocyte maturation over all other treatments.

摘要

伤口愈合涉及多个相互关联的过程,这些过程需要导致成功的愈合结果。吞噬作用、炎症、细胞增殖、血管生成、能量产生和胶原合成都直接或间接地依赖于氧气。除了其他关键因素,如营养和合并症,氧气的供应是愈合成功的关键决定因素。此前,我们已经提出了一种新型含氧水凝胶材料,可以制成敷料,用于向伤口持续局部输送氧气。在这项研究中,使用急性猪伤口模型来测试这些含氧 MACF(MACF + O2)水凝胶敷料与对照物(包括商业 Derma-GelTM水凝胶敷料)相比的愈合益处。进行了伤口闭合和组织学分析,以评估上皮再形成、胶原合成、血管生成和角质形成细胞成熟。这些分析的结果表明,与 Derma-Gel 相比,用 MACF + O2水凝胶敷料处理的伤口愈合更快(p<0.05)。通过液相色谱分离和质谱检测(LC-MS/MS)和生化分析进行的靶向代谢组学确定了第 14 天和第 21 天伤口样本中羟脯氨酸的浓度,表明与 Derma-Gel 相比,MACF + O2水凝胶敷料通过上调胶原合成途径改善了伤口愈合(p<0.05)。组织学证据表明,与所有其他治疗方法相比,MACF + O2水凝胶敷料可改善新血管形成和角质形成细胞成熟。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3d54/6124756/3c4fc6aac56f/pone.0203371.g001.jpg

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