Seaberg Raewyn M, Smukler Simon R, Kieffer Timothy J, Enikolopov Grigori, Asghar Zeenat, Wheeler Michael B, Korbutt Gregory, van der Kooy Derek
Department of Medical Genetics and Microbiology, University of Toronto, Toronto M5S 1A8, Canada.
Nat Biotechnol. 2004 Sep;22(9):1115-24. doi: 10.1038/nbt1004. Epub 2004 Aug 22.
The clonal isolation of putative adult pancreatic precursors has been an elusive goal of researchers seeking to develop cell replacement strategies for diabetes. We report the clonal identification of multipotent precursor cells from the adult mouse pancreas. The application of a serum-free, colony-forming assay to pancreatic cells enabled the identification of precursors from pancreatic islet and ductal populations. These cells proliferate in vitro to form clonal colonies that coexpress neural and pancreatic precursor markers. Upon differentiation, individual clonal colonies produce distinct populations of neurons and glial cells, pancreatic endocrine beta-, alpha- and delta-cells, and pancreatic exocrine and stellate cells. Moreover, the newly generated beta-like cells demonstrate glucose-dependent Ca(2+) responsiveness and insulin release. Pancreas colonies do not express markers of embryonic stem cells, nor genes suggestive of mesodermal or neural crest origins. These cells represent a previously unidentified adult intrinsic pancreatic precursor population and are a promising candidate for cell-based therapeutic strategies.
对于寻求开发糖尿病细胞替代策略的研究人员来说,克隆分离假定的成年胰腺前体细胞一直是一个难以实现的目标。我们报告了从小鼠成年胰腺中克隆鉴定出多能前体细胞。将无血清集落形成试验应用于胰腺细胞,能够从胰岛和导管群体中鉴定出前体细胞。这些细胞在体外增殖形成克隆集落,共表达神经和胰腺前体标志物。分化后,单个克隆集落产生不同类型的神经元和神经胶质细胞、胰腺内分泌β细胞、α细胞和δ细胞,以及胰腺外分泌细胞和星状细胞。此外,新生成的β样细胞表现出葡萄糖依赖性钙反应性和胰岛素释放。胰腺集落不表达胚胎干细胞标志物,也不表达提示中胚层或神经嵴起源的基因。这些细胞代表了以前未被识别的成年胰腺固有前体细胞群体,是基于细胞的治疗策略的有希望的候选者。