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用于治疗糖尿病的微流控纺丝水凝胶微纤维中的胰岛细胞。

Pancreatic islet cells in microfluidic-spun hydrogel microfibers for the treatment of diabetes.

机构信息

Department of Endocrinology, Zhongda Hospital, School of Medicine, Southeast University, Nanjing 210009, China.

State Key Laboratory of Bioelectronics, School of Biological Science and Medical Engineering, Southeast University, Nanjing 210096, China.

出版信息

Acta Biomater. 2024 Oct 1;187:149-160. doi: 10.1016/j.actbio.2024.08.047. Epub 2024 Sep 1.

Abstract

Islet transplantation has been developed as an effective cell therapy strategy to treat the progressive life-threatening disease Type 1 diabetes (T1DM). To mimic the natural islets and achieve immune isolation, hydrogel encapsulation of multiple islet cell types is the current endeavor. Here, we present a microfiber loading with pancreatic α and β cells by microfluidic spinning for diabetes treatment. Benefiting from microfluidic technology, the cells could be controllably and continuously loaded in the alginate and methacrylated hyaluronic acid (Alg-HAMA) microfiber and maintained their high bioactivity. The resultant microfiber could then hold the capacity of dual-mode glucose responsiveness attributed to the glucagon and insulin secreted by the encapsulated pancreatic α and β cells. After transplantation into the brown adipose tissue (BAT), these cell-laden microfibers showed successful blood glucose control in rodents and avoided the occurrence of hypoglycemia. These results conceived that the multicellular microfibers are expected to provide new insight into artificial islet preparation, diabetes treatment, and regenerative medicine as well as tissue engineering. STATEMENT OF SIGNIFICANCE.

摘要

胰岛移植已被开发为一种有效的细胞治疗策略,以治疗进行性危及生命的 1 型糖尿病 (T1DM)。为了模拟天然胰岛并实现免疫隔离,目前正在进行多种胰岛细胞类型的水凝胶包封。在这里,我们通过微流控纺丝提出了一种负载胰腺α和β细胞的微纤维,用于糖尿病治疗。受益于微流控技术,细胞可以在藻酸盐和甲基丙烯酰化透明质酸 (Alg-HAMA) 微纤维中进行连续可控的加载,并保持其高生物活性。所得微纤维由于封装的胰腺α和β细胞分泌的胰高血糖素和胰岛素,具有双重模式葡萄糖响应能力。移植到棕色脂肪组织 (BAT) 后,这些载细胞的微纤维在啮齿动物中成功地控制了血糖,避免了低血糖的发生。这些结果表明,多细胞微纤维有望为人工胰岛制备、糖尿病治疗、再生医学以及组织工程提供新的见解。

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