4.3 Article

In vitro reprogramming of rat bmMSCs into pancreatic endocrine-like cells

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出版社

SPRINGER
DOI: 10.1007/s11626-016-0087-0

关键词

Mesenchymal stem cells; Reprogramming; Pancreatic endocrine lineage cells; Lentivirus vector; RNA-Seq

资金

  1. National Basic Research Program of China [2012CB518 103]
  2. National Natural Science Foundation of China [81370883]
  3. Doctoral Fund of Ministry of Education of China [20132104110020]
  4. Doctor Start-up Fund of Liaoning Province [20141168]
  5. Clinical Capability Construction Project for Liaoning Provincial Hospitals [LNCCC-D50-2015]

向作者/读者索取更多资源

Islet transplantation provides curative treatments to patients with type 1 diabetes, but donor shortage restricts the broad use of this therapy. Thus, generation of alternative transplantable cell sources is intensively investigated worldwide. We previously showed that bone marrow-derived mesenchymal stem cells (bmMSCs) can be reprogrammed to pancreatic-like cells through simultaneously forced suppression of Rest/Nrsf (repressor element-1 silencing transcription factor/neuronal restrictive silencing factor) and Shh (sonic hedgehog) and activation of Pdx1 (pancreas and duodenal transcription factor 1). We here aimed to reprogram bmMSCs further along the developmental pathway towards the islet lineages by improving our previous strategy and by overexpression of Ngn3 (neurogenin 3) and NeuroD1 (neurogenic differentiation 1), critical regulators of the development of endocrine pancreas. We showed that compared to the previous protocol, the overexpression of only Pdx1 and Ngn3 reprogrammed bmMSCs into cells with more characteristics of islet endocrine lineages verified with bioinformatic analyses of our RNA-Seq datasets. These analyses indicated 2325 differentially expressed genes including those involved in the pancreas and islet development. We validated with qRT-PCR analysis selective genes identified from the RNA-Seq datasets. Thus, we reprogrammed bmMSCs into islet endocrine-like cells and advanced the endeavor to generate surrogate functional insulin-secreting cells.

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