| Literature DB >> 28395801 |
Muhammad Zeeshan Afzal1, Melanie Gartz1, Ekaterina A Klyachko2, Sadiya Sana Khan2, Sanjiv J Shah2, Sweta Gupta3, Amy D Shapiro3, Douglas E Vaughan2, Jennifer L Strande4.
Abstract
We have generated a human induced pluripotent stem cell (iPSC) line under feeder-free culture conditions using the urine derived cells (UCs) collected from subjects heterozygous for a novel Plasminogen Activator Inhibitor-1 (PAI-1) mutation. The Sendai Virus (SeV) vector encoding pluripotent Yamanaka transcription factors was used at a low multiplicity of infection to reprogram the PAI-1 UCs.Entities:
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Year: 2016 PMID: 28395801 PMCID: PMC5939958 DOI: 10.1016/j.scr.2016.12.003
Source DB: PubMed Journal: Stem Cell Res ISSN: 1873-5061 Impact factor: 2.020
Fig. 2Characterization of iPSCs and genotypic evaluation. (A) Phase contrast micrograph of the cultured iPSC clone, plated under feeder-free conditions on matrigel. Scale bar, 50 μm. (B) Pluripotency of iPSCs confirmed by immunostaining with Oct3/4 (red) and TRA-1-81 (green) markers and counterstained nuclei with blue DAPI stain. Scale bar, 50 μm. (C) RT-PCR gene expression analysis shows upregulation of endogenous pluripotent genes (Oct3/4 and Sox2) and elimination of the non-integrating viral genome and exogenous genes (SeV, Klf4 and cMyc). (D) Differentiation into three embryonic germ layers was confirmed after processing iPSCs to form embryoid bodies (EBs) and allowing spontaneous in vitro differentiation. Ectoderm, mesoderm and endoderm characterized by immunostaining with Otx 2 (Red)/SOX1 (green), Brachyury (red), and GATA4 (green), respectively. Scale bar, 50 μm. (E) Karyogram of iPSCs demonstrate normal ploidy of a female subject. (F) SfcI restriction enzyme digestion to confirm the heterozygous PAI-1 mutation. For comparison, the gel image band patterns of wild-type (606 and 147 bp) and homozygous (753 bp) mutations are shown along with the heterozygous (753, 606 and 147 bp) products.
Fig. 1Schematic representation of the protocol. (A) Urine derived cells are cultured and reprogrammed using Sendai Virus (SeV) transfection with OSKM-Yamanaka Factors. (B) Timeline for reprogramming UCs.
List of primer sequences used for RT-PCR or genotyping analyses.
| SeV (exogenous) | Forward | GGATCACTAGGTGATATCGAGC |
| Reverse | ACCAGACAAGAGTTTAAGAGATATGTATC | |
| Klf4 (exogenous) | Forward | TTCCTGCATGCCAGAGGAGCCC |
| Reverse | AATGTATCGAAGGTGCTCAA | |
| cMyc (exogenous) | Forward | TAACTGACTAGCAGGCTTGTCG |
| Reverse | TCCACATACAGTCCTGGATGAT | |
| Oct3/4 (endogenous) | Forward | CAGTGCCCGAAACCCACAC |
| Reverse | GGAGACCCAGCAGCCTCAAA | |
| Sox2 (endogenous) | Forward | CAAGATGCACAACTCGGAGA |
| Reverse | GTTCATGTGCGCGTAACTGT | |
| GAPDH | Forward | GTGGACCTGACCTGCCGTCT |
| Reverse | GGAGGAGTGGGTGTCGCTGT | |
| PAI-1 (exon-4) | Forward | CCTGACTGCAGCCCTTTGACATACA |
| Reverse | ACATCTAGAGCATTCCCTGTGGTCTTCCTC |
Resource table.
| Name of stem cell line | iPAI-015-2-F |
| Institution | Department of Medicine and Cardiovascular Center, Medical College of Wisconsin, 8701 Watertown Plank Road, Milwaukee, WI-53226 |
| Person who created resource | Muhammad Zeeshan Afzal and Melanie Gartz |
| Contact person and email | Jennifer Strande, |
| Date archived/stock date | September, 2015 |
| Origin | Human urine-derived cells |
| Type of resource | Induced pluripotent stem cells (iPSC) generated from patient with heterozygous PAI-1 mutation |
| Sub-type | Human induced pluripotent stem cells |
| Key transcription factors | Oct3/4, Sox2, Klf4, and cMyc |
| Authentication | Identity and purity of the cell line confirmed ( |
| Link to related literature | |
| Information in public databases | |
| Ethics | Patient informed consent obtained and procedures were approved by the Institutional Review Boards (IRBs) at the Medical College of Wisconsin (Milwaukee, WI) and St. Vincent’s Health (Indianapolis, IN). |