Related Experiment Video
Updated: May 30, 2025

Directed Dopaminergic Neuron Differentiation from Human Pluripotent Stem Cells
Published on: September 15, 2014
Vitamin D differentiates dopamine neurons in vitro, increasing neurite architecture, dopamine release and expression
Xiaoying Cui1, Renata Aparecida Nedel Pertile2, Vanshika Raman2
1Queensland Brain Institute, University of Queensland, QLD 4072, Australia; Queensland Centre for Mental Health Research, Wacol, QLD 4076, Australia.
Abstract:
Epidemiological studies often link circulatory levels of 25 hydroxy vitamin D with an overwhelming variety of disorders. Of such studies, an increasing number are now linking blood 25 hydroxy vitamin D levels with certain brain disorders. Prominent amongst such disorders are schizophrenia and Parkinson's disease. The neurotransmitter dopamine is central to understanding the eitiology of both disorders with schizophrenia representing increased subcortical dopamine function and Parkinson's disease a disorder with the pathological hallmark of dopamine cellular pathology. Our group have established the epidemiology linking vitamin D deficiency in utero and later onset of schizophrenia. We have clarified many of the mechanisms behind how vitamin D effects dopamine neuron positioning, differentiation and survival. In this study we confirm vitamin D differentiates the dendritic architecture of dopamine neurons, that vitamin D may represent a requirement for drug-mediated dopamine release and that vitamin D may sculpt presynaptic proteins related to fast or phasic dopamine release.

