Literature DB >> 27335699

Induction of sensory neurons from neuroepithelial stem cells by the ISX9 small molecule.

Rouknuddin Qasim Ali1, Evelina Blomberg2, Anna Falk1, Lars Ährlund-Richter2, Mats Ulfendahl1.   

Abstract

Hearing impairment most often involves loss of sensory hair cells and auditory neurons. As this loss is permanent in humans, a cell therapy approach has been suggested to replace damaged cells. It is thus of interest to generate lineage restricted progenitor cells appropriate for cell based therapies. Human long-term self-renewing neuroepithelial stem (lt-NES) cell lines exhibit in vitro a developmental potency to differentiate into CNS neural lineages, and importantly lack this potency in vivo, i.e do not form teratomas. Small-molecules-driven differentiation is today an established route obtain specific cell derivatives from stem cells. In this study, we have investigated the effects of three small molecules SB431542, ISX9 and Metformin to direct differentiation of lt-NES cells into sensory neurons. Exposure of lt-NES cells to Metformin or SB431542 did not induce any marked induction of markers for sensory neurons. However, a four days exposure to the ISX9 small molecule resulted in reduced expression of NeuroD1 mRNA as well as enhanced mRNA levels of GATA3, a marker and important player in auditory neuron specification and development. Subsequent culture in the presence of the neurotrophic factors BDNF and NT3 for another seven days yielded a further increase of mRNA expression for GATA3. This regimen resulted in a frequency of up to 25-30% of cells staining positive for Brn3a/Tuj1. We conclude that an approach with ISX9 small molecule induction of lt-NES cells into auditory like neurons may thus be an attractive route for obtaining safe cell replacement therapy of sensorineural hearing loss.

Entities:  

Keywords:  Sensory neurons; differentiation; isozaxole 9; stem cell

Year:  2016        PMID: 27335699      PMCID: PMC4913294     

Source DB:  PubMed          Journal:  Am J Stem Cells        ISSN: 2160-4150


  29 in total

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Review 2.  Regeneration of the inner ear as a model of neural plasticity.

Authors:  D Kent Morest; Douglas A Cotanche
Journal:  J Neurosci Res       Date:  2004-11-15       Impact factor: 4.164

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Journal:  J Mol Neurosci       Date:  2007-11-27       Impact factor: 3.444

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Authors:  Gareth J Inman; Francisco J Nicolás; James F Callahan; John D Harling; Laramie M Gaster; Alastair D Reith; Nicholas J Laping; Caroline S Hill
Journal:  Mol Pharmacol       Date:  2002-07       Impact factor: 4.436

6.  Regeneration of sensory hair cells after acoustic trauma.

Authors:  J T Corwin; D A Cotanche
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7.  Treatment of a mouse model of spinal cord injury by transplantation of human induced pluripotent stem cell-derived long-term self-renewing neuroepithelial-like stem cells.

Authors:  Yusuke Fujimoto; Masahiko Abematsu; Anna Falk; Keita Tsujimura; Tsukasa Sanosaka; Berry Juliandi; Katsunori Semi; Masakazu Namihira; Setsuro Komiya; Austin Smith; Kinichi Nakashima
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9.  Constraining the Pluripotent Fate of Human Embryonic Stem Cells for Tissue Engineering and Cell Therapy - The Turning Point of Cell-Based Regenerative Medicine.

Authors:  Xuejun H Parsons
Journal:  Br Biotechnol J       Date:  2013-10-01

10.  Capture of neuroepithelial-like stem cells from pluripotent stem cells provides a versatile system for in vitro production of human neurons.

Authors:  Anna Falk; Philipp Koch; Jaideep Kesavan; Yasuhiro Takashima; Julia Ladewig; Michael Alexander; Ole Wiskow; Jignesh Tailor; Matthew Trotter; Steven Pollard; Austin Smith; Oliver Brüstle
Journal:  PLoS One       Date:  2012-01-17       Impact factor: 3.240

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Authors:  Nancy Y Yu; Andrea Bieder; Amitha Raman; Enrichetta Mileti; Shintaro Katayama; Elisabet Einarsdottir; Bertil B Fredholm; Anna Falk; Isabel Tapia-Páez; Carsten O Daub; Juha Kere
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