Related Experiment Video
Updated: Jun 21, 2026

Using Live Cell STED Imaging to Visualize Mitochondrial Inner Membrane Ultrastructure in Neuronal Cell Models
Published on: June 30, 2023
Downstream mechanisms triggered by mitochondrial dysfunction in the basal ganglia: from experimental models to
Paolo Gubellini1, Barbara Picconi, Massimiliano Di Filippo
1Institut de Biologie du Développement de Marseille-Luminy (IBDML), UMR6216 (CNRS/Université de la Méditerranée), Marseille, France. paolo.gubellini@ibdml.univ-mrs.fr
Abstract:
Mitochondrial dysfunctions have been implicated in the cellular processes underlying several neurodegenerative disorders affecting the basal ganglia. These include Huntington's chorea and Parkinson's disease, two highly debilitating motor disorders for which recent research has also involved gene mutation linked to mitochondrial deficits. Experimental models of basal ganglia diseases have been developed by using toxins able to disrupt mitochondrial function: these molecules act by selectively inhibiting mitochondrial respiratory complexes, uncoupling cellular respiration. This in turn leads to oxidative stress and energy deficit that trigger critical downstream mechanisms, ultimately resulting in neuronal vulnerability and loss. Here we review the molecular and cellular downstream effects triggered by mitochondrial dysfunction, and the different experimental models that are obtained by the administration of selective mitochondrial toxins or by the expression of mutant genes.
Related Concept Videos
Parkinson Disease ll: Pathophysiology
ATP Synthase: Mechanism
Parkinson's Disease: Overview
Alterations in Muscle Tone lll
Electron Transport Chain: Complex I and II
ROS generation is regulated and maintained at moderate levels necessary...
Parkinson Disease l: Introduction

