ACECR Institute of Higher Education (Isfahan Branch), P.O. Box: 84175443, Iran; Department of Animal Biotechnology, Cell Science Research Center, Royan Institute for Biotechnology, ACECR, Isfahan, P.O. Box 8159358686, Iran.
Department of Animal Biotechnology, Cell Science Research Center, Royan Institute for Biotechnology, ACECR, Isfahan, P.O. Box 8159358686, Iran.
J Biosci Bioeng. 2022 Jun;133(6):579-586. doi: 10.1016/j.jbiosc.2022.02.002. Epub 2022 Mar 24.
Tissue-specific extracellular matrix (ECM) plays a critical role in cell survival and homeostasis, which are particularly essential for directing differentiation of different complex tissues such as retina. However, ECM maintenance should be considered to design an effective therapeutic strategy for retina regeneration. To achieve this, cell sheet engineering has emerged as a growing approach to closely reconstruct basal membrane of cells through a scaffold-free manner. Several irreversible sight-threatening diseases are characterized by the dysfunction and lose of retinal pigment epithelium (RPE), leading to vision loss and eventually total blindness in patients. According to impressive developments in achievement of RPE from human embryonic stem cells (hESCs), we obtained RPE cells without any extrinsic factors in a co-culture system, and cultured them on a temporary alginate hydrogel substrate. Subsequently, Arg-Gly-Asp (RGD) peptide was superficially immobilized on the upper layer of hydrogel to improve cell attachment before harvesting sheet layer. RPE cell sheet layer was released by treating pre-seeded hydrogels with sodium citrate as a calcium chelating agent and characterized in both in vitro and in vivo models. RPE sheets formed tight junction and expressed high levels of retina structural markers such as ZO-1, Bestrophin and Collagen type IV. One week after in vivo transplantation of RPE sheet, cells survived in the subretinal space, indicating that our harvesting method is non-invasive. To sum up, we introduced a unique scaffold-free method for RPE cell sheet engineering, which can find potential use for future therapeutic purposes.
组织特异性细胞外基质 (ECM) 在细胞存活和稳态中发挥着关键作用,这对于指导不同复杂组织(如视网膜)的分化尤为重要。然而,应该考虑 ECM 的维持,以设计用于视网膜再生的有效治疗策略。为了实现这一目标,细胞片层工程已成为一种新兴的方法,可以通过无支架的方式紧密重建细胞的基底膜。几种不可逆的、危及视力的疾病的特征是视网膜色素上皮 (RPE) 功能障碍和丧失,导致患者视力丧失,最终完全失明。根据在人胚胎干细胞 (hESC) 中获得 RPE 的令人印象深刻的进展,我们在共培养系统中获得了没有任何外源性因素的 RPE 细胞,并在临时藻酸盐水凝胶基底上培养它们。随后,通过在水凝胶的上层表面固定 Arg-Gly-Asp (RGD) 肽来改善细胞附着,然后再收获片层。通过用柠檬酸钠作为钙螯合剂处理预先接种的水凝胶来释放 RPE 片层,并在体外和体内模型中对其进行了表征。RPE 片层形成紧密连接,并表达高水平的视网膜结构标记物,如 ZO-1、Bestrophin 和 Collagen type IV。在 RPE 片层体内移植后一周,细胞在视网膜下空间存活,表明我们的收获方法是非侵入性的。总之,我们引入了一种独特的无支架方法用于 RPE 细胞片层工程,这可能为未来的治疗目的找到潜在的用途。