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A small molecule screen in stem-cell-derived motor neurons identifies a kinase inhibitor as a candidate therapeutic for ALS

  • Yin M. Yang
  • , Shailesh K. Gupta
  • , Kevin J. Kim
  • , Berit E. Powers
  • , Antonio Cerqueira
  • , Brian J. Wainger
  • , Hien D. Ngo
  • , Kathryn A. Rosowski
  • , Pamela A. Schein
  • , Courtney A. Ackeifi
  • , Anthony C. Arvanites
  • , Lance S. Davidow
  • , Clifford J. Woolf
  • , Lee L. Rubin

Research output: Contribution to journalArticlepeer-review

260 Scopus citations

Abstract

Amyotrophic lateral sclerosis (ALS) is a rapidly progressing neurodegenerative disease, characterized by motor neuron (MN) death, for which there are no truly effective treatments. Here, we describe a new small molecule survival screen carried out using MNs from both wild-type and mutant SOD1 mouse embryonic stem cells. Among the hits we found, kenpaullone had a particularly impressive ability to prolong the healthy survival of both types of MNs that can be attributed to its dual inhibition of GSK-3 and HGK kinases. Furthermore, kenpaullone also strongly improved the survival of human MNs derived from ALS-patient-induced pluripotent stem cells and was more active than either of two compounds, olesoxime and dexpramipexole, that recently failed in ALS clinical trials. Our studies demonstrate the value of a stem cell approach to drug discovery and point to a new paradigm for identification and preclinical testing of future ALS therapeutics.

Original languageEnglish
Pages (from-to)713-726
Number of pages14
JournalCell Stem Cell
Volume12
Issue number6
DOIs
StatePublished - 6 Jun 2013
Externally publishedYes

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