首页> 美国卫生研究院文献>Tissue Engineering. Part C Methods >Three-Dimensional Human Tissue Models That Incorporate Diabetic Foot Ulcer-Derived Fibroblasts Mimic In Vivo Features of Chronic Wounds
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Three-Dimensional Human Tissue Models That Incorporate Diabetic Foot Ulcer-Derived Fibroblasts Mimic In Vivo Features of Chronic Wounds

机译:合并糖尿病足溃疡衍生成纤维细胞的三维人体组织模型模拟慢性伤口的体内特征

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摘要

Diabetic foot ulcers (DFU) are a major, debilitating complication of diabetes mellitus. Unfortunately, many DFUs are refractory to existing treatments and frequently lead to amputation. The development of more effective therapies has been hampered by the lack of predictive in vitro methods to investigate the mechanisms underlying impaired healing. To address this need for realistic wound-healing models, we established patient-derived fibroblasts from DFUs and site-matched controls and used them to construct three-dimensional (3D) models of chronic wound healing. Incorporation of DFU-derived fibroblasts into these models accurately recapitulated the following key aspects of chronic ulcers: reduced stimulation of angiogenesis, increased keratinocyte proliferation, decreased re-epithelialization, and impaired extracellular matrix deposition. In addition to reflecting clinical attributes of DFUs, the wound-healing potential of DFU fibroblasts demonstrated in this suite of models correlated with in vivo wound closure in mice. Thus, the reported panel of 3D DFU models provides a more biologically relevant platform for elucidating the cell–cell and cell–matrix-related mechanisms responsible for chronic wound pathogenesis and may improve translation of in vitro findings into efficacious clinical applications.
机译:糖尿病足溃疡(DFU)是糖尿病的主要破坏性并发症。不幸的是,许多DFU对现有治疗均无能为力,并经常导致截肢。缺乏预测性的体外研究机制来阻碍康复机制的发展,阻碍了更有效疗法的发展。为了满足对现实伤口愈合模型的需求,我们建立了来自DFU和部位匹配对照的患者来源的成纤维细胞,并使用它们构建了慢性伤口愈合的三维(3D)模型。将DFU衍生的成纤维细胞整合到这些模型中,可以准确地概括以下慢性溃疡的关键方面:减少血管新生的刺激,增加角质形成细胞增殖,减少上皮再生和损害细胞外基质沉积。除了反映DFU的临床特征外,在这组模型中证明的DFU成纤维细胞的伤口愈合潜力与小鼠体内伤口闭合相关。因此,已报道的3D DFU模型组为阐明负责慢性伤口发病机理的细胞-细胞和细胞-基质相关的机制提供了一个生物学上更相关的平台,并可能改善体外研究结果转化为有效的临床应用。

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