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Reprogramming Urine-Derived Cells using Commercially Available Self-Replicative RNA and a Single Electroporation.

Current protocols in stem cell biology | 2020

We describe a protocol for efficient generation of human-induced pluripotent stem cells (hiPSCs) from urine-derived cells (UDCs) obtained from adult donors using self-replicative RNA containing the reprogramming factors OCT3/4, SOX2, KLF4, GLIS1, and c-MYC (ReproRNA-OKSGM). After electroporation, transfection efficiency is quantified by measuring OCT3/4-expressing UDCs using flow cytometry and should be ≥0.1%. hiPSC colonies emerge within 3 weeks after transfection and express multiple pluripotency markers. Moreover, the UDC-derived hiPSCs are able to differentiate into cells of all three germ layers and display normal karyotypes. ReproRNA-OKSGM is available commercially and only requires a single transfection step so that the protocol is readily accessible, as well as straightforward. In addition to a detailed step-by-step description for generating clonal hiPSCs from UDCs using ReproRNA-OKSGM, we provide guidance for basic pluripotency characterization of the hiPSC lines. © 2020 The Authors. Basic Protocol: Reprogramming of urine-derived cells using ReproRNA-OKSGM Support Protocol 1: Determination of the pluripotency status of hiPSCs by flow cytometry Support Protocol 2: Characterization of functional pluripotency of hiPSCs.

Pubmed ID: 32956580 RIS Download

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This is a list of tools and resources that we have found mentioned in this publication.


Anti-SSEA-4-FITC (antibody)

RRID:AB_2653517

This recombinant targets SSEA-4

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BV421 Mouse Anti-Oct3/4 (antibody)

RRID:AB_2739320

This monoclonal targets Oct3/2004

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Oct3/4 Isoform A Antibody, PE, REAfinity™ (antibody)

RRID:AB_2653084

This recombinant targets Oct3/4 Isoform A

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