Dopamine Transporter Internalization

Dopamine transporter internalization is the regulated removal of dopamine transporter proteins from the cell surface, a process that controls how efficiently neurons clear dopamine from the synaptic space. In response to cellular signals or exposure to transporter ligands, DAT proteins can be phosphorylated and redistributed from the plasma membrane into intracellular vesicles through endocytic pathways, reducing dopamine reuptake. This mechanism helps neurons adjust signaling strength and transporter availability over time. Studying dopamine transporter internalization is important for understanding synaptic regulation, psychostimulant action, and neurological disorders involving dopamine imbalance, while also informing research into therapeutic strategies that target dopamine transmission.

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JoVE EoE - Neuropathology

Measuring Dopamine Uptake in Mouse Brain Synaptosomes Using Radiolabeled Dopamine

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2025

This video demonstrates the assessment of dopamine uptake in synaptosomes harvested from mouse brains. It outlines steps for preparing synaptosomes for dopamine uptake via dopamine transporters, treating them with varying concentrations of radiolabeled dopamine, isolating the synaptosomes, and measuring radioactivity to quantify dopamine uptake.

Single Cell Measurement of Dopamine Release with Simultaneous Voltage-clamp and Amperometry

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Cited by 1 •

2012

The amperometric technique measures dopamine release from a single cell by detecting the oxidative current produced by spontaneous dopamine oxidization. Simultaneous voltage clamp and amperometry methodology reveal the mechanistic relationship between the overall "activity" of dopamine transporter and the regulatory role of this activity on the reverse transport of dopamine.

Monitoring Dopamine Release in a Rat Model with VTA Dopaminergic Neuron Receptor Manipulation

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2025

This video demonstrates the implantation of electrodes and cannulas in an anesthetized rat to measure dopamine release in the nucleus accumbens using a potentiostat and the infusion of drugs to modulate dopaminergic activity in the ventral tegmental area.

Formulating a Dopamine-Loaded Exosome Carrier System

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2025

Source: Yavuz, B., et al. Formulating and Characterizing an Exosome-based Dopamine Carrier System. J. Vis. Exp. (2022)This video demonstrates the formulation of dopamine-loaded exosomes, focusing on saponin-induced membrane permeabilization to enhance dopamine encapsulation within exosomes.

Murine Model for Parkinson's Disease: from 6-OH Dopamine Lesion to Behavioral Test

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Cited by 57 •

2010

Parkinson disease is caused by loss of dopaminergic innervation to the striatum, which can be experimentally induced by 6-OH-dopamine. We describe how to perform a stereotaxic lesion and to monitor apomorphine-induced rotational behavior in mice. This model is useful and reliable for testing new therapies for Parkinson disease.

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