Differentiation of Chromaffin Progenitor Cells to Dopaminergic Neurons

Author:

Vukicevic Vladimir1,Schmid Janine1,Hermann Andreas23,Lange Sven1,Qin Nan4,Gebauer Linda1,Chung Kuei-Fang1,Ravens Ursula5,Eisenhofer Graeme4,Storch Alexander235,Ader Marius3,Bornstein Stefan R.13,Ehrhart-Bornstein Monika13

Affiliation:

1. Molecular Endocrinology, Medical Clinic III, University Clinic Dresden, Dresden University of Technology, Dresden, Germany

2. Division of Neurodegenerative Diseases, Department of Neurology, Dresden University of Technology, Dresden, Germany

3. Center for Regenerative Therapies Dresden, Dresden University of Technology, Dresden, Germany

4. Departments of Clinical Chemistry and Laboratory Medicine, University of Dresden, Dresden University of Technology, Dresden, Germany

5. Institute of Toxicology and Pharmacology, Medical Faculty Dresden, Dresden University of Technology, Dresden, Germany

Abstract

The differentiation of dopamine-producing neurons from chromaffin progenitors might represent a new valuable source for replacement therapies in Parkinson's disease. However, characterization of their differentiation potential is an important prerequisite for efficient engraftment. Based on our previous studies on isolation and characterization of chromaffin progenitors from adult adrenals, this study investigates their potential to produce dopaminergic neurons and means to enhance their dopaminergic differentiation. Chromaffin progenitors grown in sphere culture showed an increased expression of nestin and Mash1, indicating an increase of the progenitor subset. Proneurogenic culture conditions induced the differentiation into neurons positive for neural markers β-III-tubulin, MAP2, and TH accompanied by a decrease of Mash1 and nestin. Furthermore, Notch2 expression decreased concomitantly with a downregulation of downstream effectors Hes1 and Hes5 responsible for self-renewal and proliferation maintenance of progenitor cells. Chromaffin progenitor-derived neurons secreted dopamine upon stimulation by potassium. Strikingly, treatment of differentiating cells with retinoic and ascorbic acid resulted in a twofold increase of dopamine secretion while norepinephrine and epinephrine were decreased. Initiation of dopamine synthesis and neural maturation is controlled by Pitx3 and Nurr1. Both Pitx3 and Nurr1 were identified in differentiating chromaffin progenitors. Along with the gained dopaminergic function, electrophysiology revealed features of mature neurons, such as sodium channels and the capability to fire multiple action potentials. In summary, this study elucidates the capacity of chromaffin progenitor cells to generate functional dopaminergic neurons, indicating their potential use in cell replacement therapies.

Publisher

SAGE Publications

Subject

Transplantation,Cell Biology,Biomedical Engineering

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