Literature DB >> 33293292

Neuronal differentiation strategies: insights from single-cell sequencing and machine learning.

Nikolaos Konstantinides1, Claude Desplan1.   

Abstract

Neuronal replacement therapies rely on the in vitro differentiation of specific cell types from embryonic or induced pluripotent stem cells, or on the direct reprogramming of differentiated adult cells via the expression of transcription factors or signaling molecules. The factors used to induce differentiation or reprogramming are often identified by informed guesses based on differential gene expression or known roles for these factors during development. Moreover, differentiation protocols usually result in partly differentiated cells or the production of a mix of cell types. In this Hypothesis article, we suggest that, to overcome these inefficiencies and improve neuronal differentiation protocols, we need to take into account the developmental history of the desired cell types. Specifically, we present a strategy that uses single-cell sequencing techniques combined with machine learning as a principled method to select a sequence of programming factors that are important not only in adult neurons but also during differentiation.
© 2020. Published by The Company of Biologists Ltd.

Entities:  

Keywords:  In vitro differentiation; Machine learning; Neuronal development; Neuronal differentiation protocols; Neuronal replacement therapy; Single-cell sequencing

Year:  2020        PMID: 33293292      PMCID: PMC7746664          DOI: 10.1242/dev.193631

Source DB:  PubMed          Journal:  Development        ISSN: 0950-1991            Impact factor:   6.868


  100 in total

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Journal:  Mol Cell       Date:  2018-08-02       Impact factor: 17.970

4.  Diverse reprogramming codes for neuronal identity.

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5.  A cellular and regulatory map of the GABAergic nervous system of C. elegans.

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6.  SCANPY: large-scale single-cell gene expression data analysis.

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7.  Slingshot: cell lineage and pseudotime inference for single-cell transcriptomics.

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8.  Proneural factors Ascl1 and Neurog2 contribute to neuronal subtype identities by establishing distinct chromatin landscapes.

Authors:  Begüm Aydin; Akshay Kakumanu; Mary Rossillo; Mireia Moreno-Estellés; Görkem Garipler; Niels Ringstad; Nuria Flames; Shaun Mahony; Esteban O Mazzoni
Journal:  Nat Neurosci       Date:  2019-05-13       Impact factor: 28.771

9.  Direct conversion of human fibroblasts to induced serotonergic neurons.

Authors:  Z Xu; H Jiang; P Zhong; Z Yan; S Chen; J Feng
Journal:  Mol Psychiatry       Date:  2015-07-28       Impact factor: 15.992

10.  CRISPR RNA-guided activation of endogenous human genes.

Authors:  Morgan L Maeder; Samantha J Linder; Vincent M Cascio; Yanfang Fu; Quan H Ho; J Keith Joung
Journal:  Nat Methods       Date:  2013-07-25       Impact factor: 28.547

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Review 2.  Advances in Recapitulating Alzheimer's Disease Phenotypes Using Human Induced Pluripotent Stem Cell-Based In Vitro Models.

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3.  Glomerular Endothelial Cells Are the Coordinator in the Development of Diabetic Nephropathy.

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