Literature DB >> 31442530

Enhanced differentiation of human dopaminergic neuronal cell model for preclinical translational research in Parkinson's disease.

Dilshan S Harischandra1, Dharmin Rokad1, Shivani Ghaisas1, Saurabh Verma1, Alan Robertson1, Huajun Jin1, Vellareddy Anantharam1, Arthi Kanthasamy1, Anumantha G Kanthasamy2.   

Abstract

Human-derived neuronal cell lines are progressively being utilized in understanding neurobiology and preclinical translational research as they are biologically more relevant than rodent-derived cells lines. The Lund human mesencephalic (LUHMES) cell line comprises human neuronal cells that can be differentiated to post-mitotic neurons and is increasingly being used as an in vitro model for various neurodegenerative diseases. A previously published 2-step differentiation procedure leads to the generation of post-mitotic neurons within 5-days, but only a small proportion (10%) of the total cell population tests positive for tyrosine hydroxylase (TH). Here we report on a novel differentiation protocol that we optimized by using a cocktail of neurotrophic factors, pleiotropic cytokines, and antioxidants to effectively generate proportionately more dopaminergic neurons within the same time period. Visualization and quantification of TH-positive cells revealed that under our new protocol, 25% of the total cell population expressed markers of dopaminergic neurons with the TH-positive neuron count peaking on day 5. These neurons showed spontaneous electrical activity and responded to known Parkinsonian toxins as expected by showing decreased cell viability and dopamine uptake and a concomitant increase in apoptotic cell death. Together, our results outline an improved method for generating a higher proportion of dopaminergic neurons, thus making these cells an ideal neuronal culture model of Parkinson's disease (PD) for translational research.
Copyright © 2019 Elsevier B.V. All rights reserved.

Entities:  

Keywords:  Cell model; Differentiation; Dopaminergic neurons; LUHMES; Parkinson's disease

Mesh:

Substances:

Year:  2019        PMID: 31442530      PMCID: PMC7010568          DOI: 10.1016/j.bbadis.2019.165533

Source DB:  PubMed          Journal:  Biochim Biophys Acta Mol Basis Dis        ISSN: 0925-4439            Impact factor:   5.187


  84 in total

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Review 10.  Manganese Toxicity Upon Overexposure: a Decade in Review.

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Review 2.  In vitro Models of Neurodegenerative Diseases.

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