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In Vitro Study of the Deturgescence Ability of Cultivated Human Corneal Endothelial Cells

机译:培养的人角膜内皮细胞的抗衰老能力的体外研究

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Purpose:To evaluate the efficiency of cultivated human corneal endothelial cells (HCECs) to dehydrate the cornea, using models of the posterior cornea, composed of artificial collagen mass (to represent corneal stroma) and equine collagen membranes (to represent Descemet membrane).Methods:HCECs were isolated from donor corneal rings and cultivated at 37 degrees C in 5% CO2 and 95% humidified air. The study design included 4 different sets of models: in set 1, the HCECs were placed directly on the collagen mass complex; in set 2, HCECs were placed on a thin equine collagen membrane and laid over the collagen mass; in set 3, HCECs were placed on a thick equine collagen membrane laid over the collagen mass; and in set 4 (the control group), the hydrophilic collagen mass was left alone to interact with the nutritional medium. The minimum thickness of each sample was measured with optical coherence tomography directly before placement of cells and after exposure to the nutritional fluid for 48 hours.Results:After 2 days of exposure to the nutritional medium, the percentage decreases in thickness in posterior cornea models were 66% for set 1, 57% for set 2, and 13% set 3. In the control set, measurement of thickness after 2 days of exposure was not possible because of excessive fluid absorption.Conclusions:This in vitro study of HCECs showed that the dehydrating ability of HCECs is adversely affected by increased thickness of the artificial (Descemet) membrane. Further studies with similar models would aid better understanding of corneal diseases.
机译:目的:使用人工胶原块(代表角膜基质)和马胶原膜(代表Descemet膜)组成的后角膜模型,评估培养的人角膜内皮细胞(HCEC)脱水角膜的效率。 :HCEC从供体角膜环中分离出来,并在37°C下于5%CO2和95%湿空气中培养。研究设计包括4种不同的模型:在第1组中,将HCEC直接放置在胶原蛋白复合体上;然后将HCEC直接放置在胶原蛋白复合体上。在第2组中,将HCEC放在马胶原蛋白薄膜上并铺在胶原块上。在第3组中,将HCEC放置在胶原蛋白块上厚厚的马胶原蛋白膜上。在第4组(对照组)中,亲水性胶原物质被单独放置以与营养培养基相互作用。直接在细胞放置之前和暴露于营养液中48小时后,用光学相干断层扫描仪测量每个样品的最小厚度。结果:暴露于营养培养基2天后,后角膜模型的厚度减少百分比为第一组的66%,第二组的57%,第三组的13%。在对照组中,由于液体吸收过多,不可能在暴露2天后测量厚度。结论:这项对HCEC的体外研究表明HCEC的脱水能力会受到人造(Descemet)膜厚度增加的不利影响。使用类似模型的进一步研究将有助于更好地了解角膜疾病。

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