Generation of a human iPSC line by mRNA reprogramming.
@article{Castro2018GenerationOA, title={Generation of a human iPSC line by mRNA reprogramming.}, author={A. Artero Castro and M. Le{\'o}n and Noelia Luna-Pel{\'a}ez and Angeles Mart{\'i}n Bernal and Ver{\'o}nica Del Buey Furi{\'o} and S. Erceg and D. Lukovic}, journal={Stem cell research}, year={2018}, volume={28}, pages={ 157-160 } }
The human iPSC cell line, derived from foreskin fibroblasts was generated by non-integrative, non-viral reprogramming technology using OCT4, SOX2, KLF4, LIN28, c-MYC mRNAs.
Topics from this paper
9 Citations
An Insight into DNA-free Reprogramming Approaches to Generate Integration-free Induced Pluripotent Stem Cells for Prospective Biomedical Applications
- Biology, Medicine
- Stem Cell Reviews and Reports
- 2018
- 19
Transcriptome-based molecular staging of human stem cell-derived retinal organoids uncovers accelerated photoreceptor differentiation by 9-cis retinal
- Biology, Medicine
- Molecular vision
- 2019
- 11
- PDF
Concise Review: Application of Chemically Modified mRNA in Cell Fate Conversion and Tissue Engineering
- Chemistry, Medicine
- Stem cells translational medicine
- 2019
- 6
Purinergic Signaling Pathway in Human Olfactory Neuronal Precursor Cells
- Chemistry, Medicine
- Stem cells international
- 2019
Gene Correction Recovers Phagocytosis in Retinal Pigment Epithelium Derived from Retinitis Pigmentosa-Human-Induced Pluripotent Stem Cells
- Medicine
- International journal of molecular sciences
- 2021
Retinal Organoids derived from hiPSCs of an AIPL1-LCA Patient Maintain Cytoarchitecture despite Reduced levels of Mutant AIPL1
- Biology, Medicine
- Scientific Reports
- 2020
- 5
- PDF
References
SHOWING 1-2 OF 2 REFERENCES
Generation of a human iPSC line from a patient with retinitis pigmentosa caused by mutation in PRPF8 gene.
- Medicine, Biology
- Stem cell research
- 2017
- 1
Induction of Pluripotent Stem Cells from Adult Human Fibroblasts by Defined Factors
- Biology, Medicine
- Cell
- 2007
- 12,126
- PDF