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首页> 外文期刊>Transplantation: Official Journal of the Transplantation Society >Generation of functional islet-like clusters after monolayer culture and intracapsular aggregation of adult human pancreatic islet tissue.
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Generation of functional islet-like clusters after monolayer culture and intracapsular aggregation of adult human pancreatic islet tissue.

机译:成年人类胰岛组织的单层培养和囊内聚集后,生成功能性胰岛样簇。

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BACKGROUND: Cellular replacement therapy represents a promising strategy for treating type I diabetes; however, such an approach is limited due to the inadequate availability of human donor tissue. Here we investigated the extent to which human islet tissue can be expanded in monolayer culture and brought back to islet function. METHODS: Adult human pancreatic cells were proliferated with a serum-free media in monolayer cultures through multiple passages. Expanded cells were dispersed and encapsulated in alginate-poly-l-lysine microcapsules wherein the cells spontaneously coalesced into islet-like clusters. Encapsulated cell clusters were subsequently transplanted into the peritoneal cavity of streptozotocin-induced diabetic severe combined immunodeficiency mice. RESULTS: The cultured monolayer cells secreted insulin in response to glucose stimulation and maintained endocrine gene expression. Encapsulated islet-like clusters displayed cellular architecture similar to freshly isolated and encapsulated adult human islets maintained in culture, exhibiting an immunoreactive core of insulin, glucagon, and somatostatin, as well as peripheral cytokeratin-19 staining. Encapsulated aggregates significantly reduced hyperglycemia in transplanted mice within 1 week and normoglycemia was achieved after 5 weeks. Human C-peptide was detected in transplanted mice concomitant with the reduction in hyperglycemia. Capsules recovered 8 weeks posttransplantation exhibited insulin immunoreactivity. CONCLUSIONS: Collectively, these data indicate that adult human pancreatic islet cells can be expanded by three serial passages while maintaining their endocrine properties and can yield functional islet-like cell clusters through intracapsular aggregation that reverse hyperglycemia in diabetic mice. This culture and aggregation process could serve as a platform for proliferation and differentiation studies of endocrine lineage cells.
机译:背景:细胞替代疗法代表了一种治疗I型糖尿病的有前途的策略。然而,由于人类供体组织的可用性不足,这种方法受到限制。在这里,我们研究了人类胰岛组织可以在单层培养中扩增并恢复到胰岛功能的程度。方法:成年人类胰腺细胞在无血清培养基中通过多次传代在单层培养物中增殖。将扩增的细胞分散并封装在藻酸盐-聚-1-赖氨酸微胶囊中,其中细胞自发地聚集成胰岛样簇。随后将封装的细胞簇移植到链脲佐菌素诱导的糖尿病严重联合免疫缺陷小鼠的腹膜腔中。结果:培养的单层细胞在葡萄糖刺激下分泌胰岛素,并维持内分泌基因的表达。封装的胰岛样簇显示的细胞结构类似于在培养物中维持的新鲜分离和封装的成人胰岛,表现出胰岛素,胰高血糖素和生长抑素的免疫反应核心,以及外周细胞角蛋白19染色。封装的聚集体可在1周内显着降低移植小鼠的高血糖,并在5周后达到正常血糖。在移植小鼠中检测到人C肽,同时降低了高血糖。移植后8周恢复的胶囊表现出胰岛素免疫反应性。结论:总的来说,这些数据表明,成年人类胰岛细胞可以通过三个连续传代而扩增,同时保持其内分泌特性,并且可以通过囊内聚集产生功能性胰岛样细胞簇,从而逆转糖尿病小鼠的高血糖症。这种培养和聚集过程可以作为内分泌谱系细胞增殖和分化研究的平台。

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