Neurogenesis Using P19 Embryonal Carcinoma Cells
Paweł Leszczyński, Magdalena Śmiech, Aamir Salam Teeli, Aleksandra Zołocińska, Anna Słysz, Zygmunt Pojda, Mariusz Pierzchała, Hiroaki Taniguchi
Abstract
Paweł Leszczyński, Magdalena Śmiech, Aamir Salam Teeli, Aleksandra Zołocińska, Anna Słysz, Zygmunt Pojda, Mariusz Pierzchała, Hiroaki Taniguchi
Abstract
The P19 cell line derived from a mouse embryo-derived teratocarcinoma has the ability to differentiate into the three germ layers. In the presence of retinoic acid (RA), the suspension cultured P19 cell line is induced to differentiate into neurons. This phenomenon is extensively investigated as a neurogenesis model in vitro. Therefore, the P19 cell line is very useful for molecular and cellular studies associated with neurogenesis. However, protocols for neuronal differentiation of P19 cell line described in the literature are very complex. The method developed in this study are simple and will play a part in elucidating the molecular mechanisms in neurodevelopmental abnormalities and neurodegenerative diseases.
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The P19 cell line derived from a mouse embryo-derived teratocarcinoma has the ability to differentiate into the three germ layers. In the presence of retinoic acid (RA), the suspension cultured P19 cell line is induced to differentiate into neurons. This phenomenon is extensively investigated as a neurogenesis model in vitro. Therefore, the P19 cell line is very useful for molecular and cellular studies associated with neurogenesis. However, protocols for neuronal differentiation of P19 cell line described in the literature are very complex. The method developed in this study are simple and will play a part in elucidating the molecular mechanisms in neurodevelopmental abnormalities and neurodegenerative diseases.
Key concepts: Neurogenesis, P19 cell, Embryonal carcinoma, Teratocarcinoma, Biology, Retinoic acid, Cell culture, Neuroscience