Journal of Clinical Biochemistry and Nutrition · 2015 · 58 citations · 9 references
Tissue EngineeringEngineeringBiofabricationCerebral OrganoidBiomedical EngineeringRegenerative MedicineDirect ConversionNeuroregenerationChemical CompoundsCell-based Drug DeliveryMolecular NeuroscienceForced ExpressionNeural Tissue EngineeringCell ManipulationCell BiologyBiomolecular EngineeringInduced Pluripotent Stem CellDevelopmental BiologyNeuronal CellsHuman FibroblastsMedicineNeural Stem Cell
Direct conversion of mammalian fibroblasts into induced neuronal (iN) cells has been attained by forced expression of pro-neural transcriptional factors, or by combining defined factors with either microRNAs or small molecules. Here, we show that neuronal cells can be converted from postnatal human fibroblasts into cell populations with neuronal purities of up to >80% using a combination of six chemical compounds. The chemical compound-induced neuronal cells (CiNCs) express neuron-specific proteins and functional neuron markers. The efficiency of CiNCs is unaffected by either the donor's age or cellular senescence (passage number). We propose this chemical direct converting strategy as a potential approach for highly efficient generation of neuronal cells from human fibroblasts for such uses as in neural disease modeling and regenerative medicine.
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