| Literature DB >> 26579330 |
Pooja Teotia1, Sujata Mohanty1, Madhulika Kabra2, Sheffali Gulati3, Balram Airan4.
Abstract
UNLABELLED: The generation of disease-specific induced pluripotent stem cells (iPSCs) holds a great promise for understanding disease mechanisms and for drug screening. Recently, patient-derived iPSCs, containing identical genetic anomalies of the patient, have offered a breakthrough approach to studying Duchenne muscular dystrophy (DMD), a fatal disease caused by the mutation in the dystrophin gene. However, development of scalable and high fidelity DMD-iPSCs is hampered by low reprogramming efficiency, the addition of expensive growth factors and slow kinetics of disease-specific fibroblasts. Here, we show an efficient generation of DMD-iPSCs on bFGF secreting human foreskin fibroblast feeders (I-HFF) by employing single polycistronic lentiviral vector for delivering of transcription factors to DMD patient-specific fibroblast cells. Using this method, DMD-iPSCs generated on I-HFF feeders displayed pluripotent characteristics and disease genotype with improved reprogramming efficiency and kinetics over to mouse feeders. Moreover, we were able to maintain disease-specific iPSCs without additional supplementation of bFGF on I-HFF feeders. Our findings offer improvements in the generation of DMD-iPSCs and will facilitate in understanding of pathological mechanisms and screening of safer drugs for clinical intervention. KEY WORDS: Duchenne Muscular Dystrophy, Reprogramming, Induced pluripotent Stem Cells, Immortalized Human Feeder, Basic Fibroblast Growth Factor, Stem Cell Cassette.Entities:
Year: 2015 PMID: 26579330 PMCID: PMC4638229 DOI: 10.1371/currents.md.a77c2f0516a8cb4809ffad5963342905
Source DB: PubMed Journal: PLoS Curr ISSN: 2157-3999
Primer Sequences for both RT and qPCR
| Primer Sequence (for both RT and qPCR) | Annealing Temp. | Product Size | |
|---|---|---|---|
| Pluripotency Markers | |||
| OCT4 | F 5’AGCGAACCAGTATCGAGAAC 3' ; R 5’TTACAGAACCACACTCGGAC 3’ | 55ºC | 142bp |
| SOX2 | F 5’AGCTACAGCATGATGCAGGA 3’ ; R5’GGTCATGGAGTTGTACTGCA 3' | 55 ºC | 126bp |
| KLF4 | F 5’TCTCAAGGCACACCTGCGAA 3’; R5’TAGTGCCTGGTCAGTTCATC 3 | 57 ºC | 105bp |
| cMYC | F 5’ACTCTGAGGAGGAACAAGAA 3’ ; R5’TGGAGACGTGGCACCTCTT 3’ | 55 ºC | 159bp |
| NANOG | F 5’TGAACCTCAGCTACAAACAG 3’; R5’TGGTGGTAGGAAGAGTAAAG 3’ | 53 ºC | 154bp |
| Differentiation Markers | |||
| i) Ectodermal | |||
| Nestin | F 5’GCCCTGACCACTCCAGTTTA 3’; R5’GGAGTCCTGGATTTCCTTCC 3’ | 55 ºC | 200bp |
| βIII Tubulin | F 5’GGGATCCACTCCACGAAGTA 3’; R5’CGAGACCTACTGCATCGACA 3’ | 61ºC | 447bp |
| ii) Mesodermal | |||
| RunX2 | F 5’ AGAGGTACCAGATGGGACTGTGGTT 3’; R5'GGTAGCTACTTGGGGAGGATTTGTG 3’ | 55 ºC | 199bp |
| Cardiac Actin | F 5’CTTCCGCTGTCCTGAGACAC 3’; R 5’CCAGACTGGAAGGTAGATGG 3’ | 61ºC | 400bp |
| iii) Endodermal | |||
| AFP | F 5’TGCCAACTCAGTGAGGACAA 3’ ; R 5’TCCAACAGGCCTGAGAAATC 3’ | 60ºC | 345bp |
| GATA4 | F 5’TCCAAACCAGAAAACGGAAG 3’; R 5’CTGTGCCCGTAGTGAGATGA 3’ | 61ºC | 195bp |
| Housekeeping | |||
| GAPDH | F 5’GAGTCAACGGATTTGGTCGT 3'; R 5’GACAAGCTTCCCGTTCTCAG 3' | 57ºC | 180bp |