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首页> 外文期刊>Nature reviews. Gastroenterology & hepatology >Regenerative medicine and cell-based approaches to restore pancreatic function
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Regenerative medicine and cell-based approaches to restore pancreatic function

机译:再生医学和基于细胞的恢复胰腺功能方法

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The pancreas is a complex organ with exocrine and endocrine components. Many pathologies impair exocrine function, including chronic pancreatitis, cystic fibrosis and pancreatic ductal adenocarcinoma. Conversely, when the endocrine pancreas fails to secrete sufficient insulin, patients develop diabetes mellitus. Pathology in either the endocrine or exocrine pancreas results in devastating economic and personal consequences. The current standard therapy for treating patients with type 1 diabetes mellitus is daily exogenous insulin injections, but cell sources of insulin provide superior glycaemic regulation and research is now focused on the goal of regenerating or replacing beta cells. Stem-cell-based models might be useful to study exocrine pancreatic disorders, and mesenchymal stem cells or secreted factors might delay disease progression. Although the standards that bioengineered cells must meet before being considered as a viable therapy are not yet established, any potential therapy must be acceptably safe and functionally superior to current therapies. Here, we describe progress and challenges in cell-based methods to restore pancreatic function, with a focus on optimizing the site for cell delivery and decreasing requirements for immunosuppression through encapsulation. We also discuss the tools and strategies being used to generate exocrine pancreas and insulin-producing beta-cell surrogates in situ and highlight obstacles to clinical application.
机译:胰腺是一种具有外分泌和内分泌组分的复杂器官。许多病理损害外分功能,包括慢性胰腺炎,囊性纤维化和胰腺导管腺癌。相反,当内分泌胰腺未分泌足够的胰岛素时,患者开发糖尿病。内分泌或外分泌胰腺的病理学导致毁灭性的经济和个人后果。目前用于治疗1型糖尿病患者的标准治疗Mellitus是每日外源性胰岛素注射,但胰岛素的细胞来源提供优异的血糖调节,现在重点关注再生或更换β细胞的目标。基于干细胞的模型可能有助于研究外分泌胰腺疾病,间充质干细胞或分泌因子可能会延缓疾病进展。虽然生物工程细胞必须在被认为是可行的治疗之前必须举行会议的标准,但任何潜在的治疗必须是可接受的,并且功能优于当前疗法。在这里,我们描述了基于细胞的方法来恢复胰腺功能的进步和挑战,重点是优化细胞输送的部位,并通过封装降低免疫抑制要求。我们还讨论了用于产生外分泌胰腺和胰岛素的β细胞代理的工具和策略,并突出临床应用的障碍。

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