Rim Min A, Choi Joo Hee, Park Ain, Youn Jina, Lee Sumi, Kim Na Eun, Song Jeong Eun, Khang Gilson
Department of BIN Convergence Technology, Department of Polymer Nano Science & Technology and Polymer BIN Research Center, Jeonbuk National University, Deokjin-gu, Jeonju-si, Jeollabuk-do 54896, Republic of Korea.
ACS Appl Bio Mater. 2020 Sep 21;3(9):6079-6087. doi: 10.1021/acsabm.0c00672. Epub 2020 Sep 1.
The cellular transplantation approach to treat damaged or diseased retina is limited because of poor survival, distribution, and integration of cells after implantation to the sub-retinal space. To overcome this, it is important to develop a cell delivery system. In this study, a ternary hydrogel of gelatin (Ge)/gellan gum (GG)/glycol chitosan (CS) is suggested as a cell carrier for retinal tissue engineering (TE). Physicochemical properties such as porosity, swelling, sol fraction, and weight loss were measured. The mechanical study was performed with compressive strength and viscosity to confirm applicability in retinal TE. An experiment was carried out by encapsulating ARPE-19 in the designed hydrogel to measure viability and expression of retinal pigment epithelium-specific proteins and genes. The results showed that the ternary hydrogel system improves the mechanical properties and stability of the composite. Cell growth, survival, adhesion, and migration were enhanced as the CS was incorporated into the matrix. In particular, real-time polymerase chain reaction analysis showed a markedly improved specific gene expression rate in the Ge/GG/CS. Therefore, it is expected that the ternary system suggested in this study can be used as a promising material for retinal TE.
由于细胞植入视网膜下腔后存活率低、分布不均且整合性差,细胞移植治疗受损或患病视网膜的方法受到限制。为克服这一问题,开发一种细胞递送系统很重要。在本研究中,明胶(Ge)/结冷胶(GG)/乙二醇壳聚糖(CS)三元水凝胶被提议作为视网膜组织工程(TE)的细胞载体。测量了孔隙率、溶胀度、溶胶分数和失重等物理化学性质。通过抗压强度和粘度进行力学研究,以确认其在视网膜TE中的适用性。通过将ARPE - 19封装在设计的水凝胶中进行实验,以测量视网膜色素上皮特异性蛋白质和基因的活力及表达。结果表明,三元水凝胶系统改善了复合材料的力学性能和稳定性。随着CS掺入基质中,细胞生长、存活、粘附和迁移得到增强。特别是,实时聚合酶链反应分析表明Ge/GG/CS中特定基因表达率显著提高。因此,预计本研究中提出的三元系统可作为视网膜TE的一种有前景的材料。
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