SCR703
Human OKSG-cMyc Simplicon® RNA
About This Item
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technique(s)
cell culture | stem cell: suitable
Quality Level
input
sample type induced pluripotent stem cell(s)
shipped in
ambient
General description
EMD Millipore′s Simplicon® OKSG-cMyc RNA uses a safe and efficient method to generate integration- and virus-free human iPSCs using a single transfection step. The technology utilizes a single self-replicating Venezuelian equine encephalitis (VEE) RNA species that expresses reprogramming factors (RF) ORFs3. The Simplicon RNA replicon is a synthetic polycistronic VEE-RF RNA expressing five reprogramming factors (OKSG-cMyc; Oct4, Klf4, Sox2, Glis1 and cMyc), capable of self-replicating in a limited number of cell divisions. The 5-factor OKSG-cMyc Simplicon is especially useful for iPSCs generation from somatic cells that are more difficult to reprogram (i.e. slower proliferating cells or aged somatic cells).
Application
- Integration-free, footprint-free iPSCs generation. No risk of genomic integration.
- Safe, virus-free, synthetic polycistronic RNA replicon (all five reprogramming factors in a single RNA strand)
- Only one single transfection required. The RNA replicon is able to self-replicate, eliminating the need for additional daily transfections of multiple individual mRNAs over a 14-day period.
- Efficient and rapid reprogramming.
- No screening required to ensure the absence of viral remnants.
- Controlled elimination of synthetic VEE RNA replicon by the removal of B18R protein.
- Validated for reprogramming in feeder-free and feeder-based culture conditions.
Stem Cell Research
Components
2. B18R-E3L RNA: (Part No. CS224503) One (1) vial containing 10 L of RNA (1 ug/uL). Store at -80°C.
Quality
Storage and Stability
Legal Information
Disclaimer
Storage Class
12 - Non Combustible Liquids
wgk_germany
WGK 2
flash_point_f
Not applicable
flash_point_c
Not applicable
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Protocolos
Stem cell reprogramming protocols to generate human induced pluripotent stem cells (iPSCs) including viral and non-viral RNA based methods.
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