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Quantitative Stain-Free and Continuous Multimodal Monitoring of Wound Healing In Vitro with Digital Holographic Microscopy

机译:使用数字全息显微镜对伤口愈合进行体外定量无污染连续多模式监测

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摘要

Impaired epithelial wound healing has significant pathophysiological implications in several conditions including gastrointestinal ulcers, anastomotic leakage and venous or diabetic skin ulcers. Promising drug candidates for accelerating wound closure are commonly evaluated in in vitro wound assays. However, staining procedures and discontinuous monitoring are major drawbacks hampering accurate assessment of wound assays. We therefore investigated digital holographic microscopy (DHM) to appropriately monitor wound healing in vitro and secondly, to provide multimodal quantitative information on morphological and functional cell alterations as well as on motility changes upon cytokine stimulation. Wound closure as reflected by proliferation and migration of Caco-2 cells in wound healing assays was studied and assessed in time-lapse series for 40 h in the presence of stimulating epidermal growth factor (EGF) and inhibiting mitomycin c. Therefore, digital holograms were recorded continuously every thirty minutes. Morphological changes including cell thickness, dry mass and tissue density were analyzed by data from quantitative digital holographic phase microscopy. Stimulation of Caco-2 cells with EGF or mitomycin c resulted in significant morphological changes during wound healing compared to control cells. In conclusion, DHM allows accurate, stain-free and continuous multimodal quantitative monitoring of wound healing in vitro and could be a promising new technique for assessment of wound healing.
机译:上皮伤口愈合不良在几种情况下具有明显的病理生理影响,包括胃肠道溃疡,吻合口漏以及静脉或糖尿病性皮肤溃疡。通常在体外伤口试验中评估用于加速伤口闭合的有希望的候选药物。然而,染色程序和不连续的监测是妨碍伤口测定的准确评估的主要缺点。因此,我们研究了数字全息显微镜(DHM),以适当地监测体外伤口愈合,其次,提供有关形态和功能性细胞改变以及细胞因子刺激后的运动性改变的多峰定量信息。在存在刺激性表皮生长因子(EGF)和抑制丝裂霉素c的情况下,按时延系列研究了伤口愈合试验中Caco-2细胞的增殖和迁移所反映的伤口闭合情况,并进行了40小时的延时评估。因此,每三十分钟连续记录一次数字全息图。形态学变化包括细胞厚度,干重和组织密度,通过定量数字全息相显微镜的数据进行分析。与对照细胞相比,用EGF或丝裂霉素c刺激Caco-2细胞在伤口愈合过程中导致了明显的形态学变化。总之,DHM可以在体外对伤口愈合进行准确,无污染和连续的多模式定量监测,并且可能是评估伤口愈合的有希望的新技术。

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