Li Jingbo, Sun Lingyu, Bian Feika, Pandol Stephen J, Li Ling
Department of Endocrinology Zhongda Hospital School of Medicine Southeast University Nanjing China.
Department of Clinical Laboratory Nanjing Drum Tower Hospital School of Biological Science and Medical Engineering Southeast University Nanjing China.
Smart Med. 2024 Mar 7;3(2):e20230042. doi: 10.1002/SMMD.20230042. eCollection 2024 Jun.
The islet of Langerhans, functioning as a "mini organ", plays a vital role in regulating endocrine activities due to its intricate structure. Dysfunction in these islets is closely associated with the development of diabetes mellitus (DM). To offer valuable insights for DM research and treatment, various approaches have been proposed to create artificial islets or islet organoids with high similarity to natural islets, under the collaborative effort of biologists, clinical physicians, and biomedical engineers. This review investigates the design and fabrication of artificial islets considering both biological and tissue engineering aspects. It begins by examining the natural structures and functions of native islets and proceeds to analyze the protocols for generating islets from stem cells. The review also outlines various techniques used in crafting artificial islets, with a specific focus on hydrogel-based ones. Additionally, it provides a concise overview of the materials and devices employed in the clinical applications of artificial islets. Throughout, the primary goal is to develop artificial islets, thereby bridging the realms of developmental biology, clinical medicine, and tissue engineering.
胰岛作为一个“迷你器官”,因其复杂的结构在调节内分泌活动中起着至关重要的作用。这些胰岛功能障碍与糖尿病(DM)的发生密切相关。为了为糖尿病的研究和治疗提供有价值的见解,在生物学家、临床医生和生物医学工程师的共同努力下,已经提出了各种方法来创建与天然胰岛高度相似的人工胰岛或胰岛类器官。本综述从生物学和组织工程两个方面研究了人工胰岛的设计和制造。首先研究了天然胰岛的自然结构和功能,然后分析了从干细胞生成胰岛的方案。该综述还概述了用于制造人工胰岛的各种技术,特别关注基于水凝胶的技术。此外,它简要概述了人工胰岛临床应用中使用的材料和装置。贯穿始终的主要目标是开发人工胰岛,从而架起发育生物学、临床医学和组织工程之间的桥梁。