de la Mata Ana, Nieto-Miguel Teresa, López-Paniagua Marina, Galindo Sara, Aguilar María Rosa, García-Fernández Luis, Gonzalo Sandra, Vázquez Blanca, Román Julio San, Corrales Rosa María, Calonge Margarita
IOBA (Institute of Applied Ophthalmobiology), University of Valladolid, Valladolid, Spain,
J Mater Sci Mater Med. 2013 Dec;24(12):2819-29. doi: 10.1007/s10856-013-5013-3. Epub 2013 Jul 28.
The aim of this work was to evaluate semi-synthetic biopolymers based on chitosan (CH) and gelatin (G) as potential in vitro carrier substrata for human limbal epithelial cells (hLECs). To that end, human corneal epithelial cells (HCE) were cultured onto different CH-G membranes. None of the polymers were cytotoxic and cell proliferation was higher when CH was functionalized with G. Expression levels of corneal epithelial markers (K3, K12, E-caherin, desmoplakin, and zonula occludens (ZO)-1) were better maintained in HCE cells grown on CH-G 20:80 membranes than other proportions. Consequently, CH-G 20:80 was chosen for the subsequent expansion of hLECs. Cells derived from limbal explants were successfully expanded on CH-G 20:80 membranes using a culture medium lacking components of non-human animal origin. The expression levels found for corneal (K3 and K12) and limbal epithelial stem cells (K15) specific markers were similar to or higher than those found in limbal cells grown onto the control substratum. Our results demonstrate that CH-G 20:80 membranes are suitable for the expansion and maintenance of stem cells derived from the limbal niche. These results strongly support the use of polymers as alternative substrata for the transplantation of cultivated limbal cells onto the ocular surface.
本研究旨在评估基于壳聚糖(CH)和明胶(G)的半合成生物聚合物作为人角膜缘上皮细胞(hLEC)潜在的体外载体基质的可能性。为此,将人角膜上皮细胞(HCE)培养在不同的CH-G膜上。这些聚合物均无细胞毒性,且当CH用G功能化时细胞增殖更高。在CH-G 20:80膜上生长的HCE细胞中,角膜上皮标志物(K3、K12、E-钙黏蛋白、桥粒斑蛋白和紧密连接蛋白(ZO)-1)的表达水平比其他比例的膜更好地得以维持。因此,选择CH-G 20:80用于后续hLEC的扩增。使用不含非人类动物源成分的培养基,成功地在CH-G 20:80膜上扩增了来自角膜缘外植体的细胞。角膜(K3和K12)和角膜缘上皮干细胞(K15)特异性标志物的表达水平与在对照基质上生长的角膜缘细胞中发现的表达水平相似或更高。我们的结果表明,CH-G 20:80膜适用于角膜缘生态位来源干细胞的扩增和维持。这些结果有力地支持了使用聚合物作为将培养的角膜缘细胞移植到眼表的替代基质。