Centre for Regenerative Medicine and Devices, School of Applied Sciences, University of Brighton, Huxley Building Lewes Road, Brighton, BN2 4GJ, UK.
Division of Pharmacy and Optometry, School of Health Sciences, University of Manchester, Manchester, UK.
J Mater Sci Mater Med. 2022 Apr 11;33(4):37. doi: 10.1007/s10856-022-06658-3.
Bioengineered pancreatic β-islets have been widely advocated for the research and treatment of diabetes by offering both suitable cell culture models for the study of the pathology and the testing of new drugs and a therapy in those patients no longer responding to insulin administration and as an alternative to the shortage of donors for organ and islet transplantation. Unlike most of the studies published so far where pancreatic islets of pancreatic β-cells are encapsulated in hydrogels, this study demonstrate the formation of bioengineered pancreatic islets through cell anchoring to a gelatine-based biomaterial, PhenoDrive-Y, able to mimic the basement membrane of tissues. Through simple culture conditions, PhenoDrive-Y led human pancreatic β-cell lines and human umbilical endothelial cell lines to form organized structures closely resembling the natural vascularized pancreatic islets. When compared to gelatine, the cultures in presence of PhenoDrive-Y show higher degree of organization in tissue-like structures, a more pronounced endothelial sprouting and higher expression of typical cell markers. Noticeably, when challenged by hyperglycaemic conditions, the cells embedded in the PhenoDrive-Y assembled spheroids responded with higher levels of insulin production. In conclusion, the present work demonstrates the potential of PhenoDrive-Y as substrate for the development of bioengineered vascularized pancreatic islets and to be particularly suitable as a model for in vitro studies and testing of new therapeutics. Graphical abstract.
生物工程化的胰腺 β 胰岛已被广泛倡导用于糖尿病的研究和治疗,为研究病理和测试新药提供了合适的细胞培养模型,并为那些对胰岛素治疗不再反应的患者提供了一种替代治疗方法,同时也解决了器官和胰岛移植供体短缺的问题。与迄今为止大多数发表的研究不同,这些研究将胰腺 β 细胞的胰岛包裹在水凝胶中,本研究通过将细胞锚定在基于明胶的生物材料 PhenoDrive-Y 上来展示生物工程化胰腺胰岛的形成,这种材料能够模拟组织的基底膜。通过简单的培养条件,PhenoDrive-Y 引导人胰腺 β 细胞系和人脐静脉内皮细胞系形成紧密类似于天然血管化胰腺胰岛的组织结构。与明胶相比,在 PhenoDrive-Y 存在的情况下培养的细胞在组织样结构中具有更高的组织化程度,血管生成更为明显,并且表达更高水平的典型细胞标志物。值得注意的是,当受到高血糖条件的挑战时,嵌入 PhenoDrive-Y 中的细胞组装的球体表现出更高水平的胰岛素产生。总之,本研究证明了 PhenoDrive-Y 作为生物工程化血管化胰腺胰岛发展的潜在基质,特别适合作为体外研究和测试新疗法的模型。