Department of Biomedical Engineering, College of Future Technology, Peking University, Haidian District, Beijing 100871, China.
Department of Physiology and Pathophysiology, School of Basic Medical Sciences, State Key Laboratory of Vascular Homeostasis and Remodeling, Peking University, Beijing 100191, China.
ACS Appl Mater Interfaces. 2024 Jan 24;16(3):3042-3055. doi: 10.1021/acsami.3c12359. Epub 2024 Jan 12.
Challenges remain to be solved for the clinical translation of β-cell encapsulation technology in the treatment of type 1 diabetes (T1D). Successful delivery of β cells urgently needs the development of an encapsulation device with a thin dimension and rapid mass transport that offers stable immune isolation and complete retrieval. In this study, we focus on a laminate in which an islet-embedding alginate hydrogel layer (Alg) is sandwiched between two polymer layers (polyether sulfone, PES). Mechanical support by the PES layer protects the alginate from disintegrating after implantation and allows complete retrieval. The multilayered device has a thin membrane configuration (∼1 mm), and the edge of the laminate and the gaps between Alg and PES offer a semiopen structure that could be more permeable to molecules compared with the closed pocket of conventional macroencapsulation. Islets are suspended in the alginate solution and then encapsulated in the hydrogel layer in the middle of the laminate after gelation. Encapsulating syngeneic or xenogeneic islets in the laminate device corrected chemically induced T1D in mice for over 90 days in both the intraperitoneal space and the epididymal fat pad. The multilayered membrane system may therefore provide a translatable solution in β cell-transplantation therapy in T1D.
用于治疗 1 型糖尿病(T1D)的β细胞包封技术的临床转化仍然存在挑战。β细胞的成功传递迫切需要开发具有薄尺寸和快速质量传输的包封装置,该装置提供稳定的免疫隔离和完全检索。在这项研究中,我们专注于一种层压板,其中胰岛嵌入藻酸盐水凝胶层(Alg)夹在两层聚合物层(聚醚砜,PES)之间。PES 层的机械支撑可防止藻酸盐在植入后分解,并允许完全检索。多层设备具有薄的膜结构(约 1 毫米),层压板的边缘和 Alg 与 PES 之间的间隙提供了半开放式结构,与传统宏观封装的封闭口袋相比,其对分子的渗透性可能更高。胰岛悬浮在藻酸盐溶液中,然后在凝胶化后在层压板中间的水凝胶层中进行包封。在腹膜腔内和附睾脂肪垫中,将同种或异种胰岛包封在层压板装置中,可纠正化学诱导的 T1D 超过 90 天。因此,多层膜系统可能为 T1D 的β细胞移植治疗提供一种可转化的解决方案。