The School of Basic Medical Sciences, Fujian Medical University, Fuzhou, Fujian Province, 350108, China.
Guangdong Engineering Research Center for Translation of Medical 3D Printing Application, Guangdong Provincial Key Laboratory of Digital Medicine and Biomechanics, National Key Discipline of Human Anatomy, School of Basic Medical Sciences, Southern Medical University, Guangzhou, Guangdong Province, 510515, China.
Biomater Sci. 2022 Dec 20;11(1):278-287. doi: 10.1039/d2bm01413k.
Retinal pigment epithelial (RPE) cell transplantation is being explored as a feasible approach for treating age-related macular degeneration. The low aggregation ability of RPE cell suspensions or microtissues after transplantation has limited cell utilisation. Therefore, alternative transplantation strategies should be explored to induce cell aggregation and maintain cell viability. Herein, we propose a composite hydrogel that encapsulates gelatin methacryloyl (GelMA)/chitosan microspheres (GCMSs) as ARPE-19 cell transplantation carriers. The diameter of the GCMS was adjusted by tuning the parameters of the microfluidic devices, yielding a cell-adhering platform that induced uniform cell spreading. The live/dead assay and immunofluorescence results showed that ARPE-19 cells adhered and spread uniformly around the microspheres. Moreover, the hydrogel sheets were used to provide an aggregated protective shell, and the ARPE-19 cells on the microspheres encapsulated within these hydrogel sheets remained viable post-injection and produced fewer reactive oxygen species after cyclic stretching. Furthermore, we found that the composite hydrogel was biodegradable and biocompatible . Therefore, GCMSs provide an injectable microcarrier for ARPE-19 cells, and the hydrogel provides an aggregated protective shell in this novel platform, which has considerable potential for an alternative injectable and highly aggregated RPE cell transplantation strategy design.
视网膜色素上皮 (RPE) 细胞移植被探索为治疗年龄相关性黄斑变性的一种可行方法。移植后 RPE 细胞悬浮液或微组织的低聚集能力限制了细胞的利用。因此,应该探索替代的移植策略来诱导细胞聚集并保持细胞活力。在此,我们提出了一种复合水凝胶,将明胶甲基丙烯酰 (GelMA)/壳聚糖微球 (GCMS) 作为 ARPE-19 细胞移植载体。通过调整微流控装置的参数来调整 GCMS 的直径,得到了一个细胞附着的平台,诱导了均匀的细胞铺展。活/死检测和免疫荧光结果表明,ARPE-19 细胞均匀地附着和铺展在微球周围。此外,水凝胶片被用来提供聚集的保护壳,注射后微球内的 ARPE-19 细胞仍然存活,并且在循环拉伸后产生的活性氧较少。此外,我们发现复合水凝胶是可生物降解和生物相容的。因此,GCMS 为 ARPE-19 细胞提供了一种可注射的微载体,而水凝胶在这个新平台中提供了聚集的保护壳,这为替代的可注射和高度聚集的 RPE 细胞移植策略设计提供了很大的潜力。