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Toward development of an in vitro model of methamphetamine-induced dopamine nerve terminal toxicity
S Kim1, R Westphalen, B Callahan
1Department of Neurology, Johns Hopkins Bayview Medical Center, Baltimore, Maryland 21224, USA.
Abstract:
To develop an in vitro model of methamphetamine (METH)-induced dopamine (DA) neurotoxicity, striatal synaptosomes were incubated at 37 degrees C with METH for different periods of time (10-80 min), washed once, then tested for DA transporter function at 37 degrees C. METH produced time- and dose-dependent reductions in the V(max) of DA uptake, without producing any change in K(m). Incubation of synaptosomes with the DA neurotoxins 1-methyl-4-phenyl-pyridinium ion, 6-hydroxydopamine, and amphetamine under similar conditions produced comparable effects. In contrast, incubation with fenfluramine, a serotonin neurotoxin, did not. METH-induced decreases in DA uptake were selective, insofar as striatal glutamate uptake was unaffected. Various DA transporter blockers (cocaine, methylphenidate, and bupropion) afforded complete protection against METH-induced decreases in DA uptake, without producing any effect themselves. METH's effects were also temperature dependent, with greater decreases in DA uptake occurring at higher temperatures. Tests for residual drug revealed small amounts (0.1-0.2 microM) of remaining METH, but kinetic studies indicated that decreases in DA uptake were not likely to be due to METH acting as a competitive inhibitor of DA uptake. Decreases in the V(max) of DA uptake were not accompanied by decreases in B(max) of [(3)H]WIN 35,428 binding, possibly because there is no mechanism for removing damaged DA nerve endings from the in vitro preparation Collectively, these results give good support to the development of a valid in vitro model that may prove helpful for elucidating the mechanisms underlying METH-induced DA neurotoxicity.
Insights
This study developed a reliable in vitro model for methamphetamine (METH) neurotoxicity. The model shows METH damages dopamine transporters, aiding research into METH
Area of Science:
- Neuroscience
- Pharmacology
Background:
- Methamphetamine (METH) is a potent psychostimulant with known neurotoxic effects.
- Understanding the precise mechanisms of METH-induced neurotoxicity is crucial for developing effective treatments.
Purpose of the Study:
- To establish a valid in vitro model for studying methamphetamine (METH)-induced dopamine (DA) neurotoxicity.
- To investigate the effects of METH on dopamine transporter (DAT) function in striatal synaptosomes.
Main Methods:
- Striatal synaptosomes were incubated with varying concentrations of METH.
- Dopamine uptake kinetics (Vmax, Km) and [(3)H]WIN 35,428 binding were measured.
- The protective effects of DAT blockers were assessed.
Main Results:
- METH caused time- and dose-dependent reductions in the Vmax of DA uptake, indicating impaired transporter function.
- DA transporter blockers like cocaine, methylphenidate, and bupropion protected against METH-induced DA uptake reduction.
- METH's neurotoxic effects were temperature-dependent, with greater toxicity at higher temperatures.
Conclusions:
- The developed in vitro model effectively replicates METH-induced DA neurotoxicity.
- The findings support the role of dopamine transporters in METH's neurotoxic mechanism.
- This model can be utilized to further elucidate the molecular pathways involved in METH neurotoxicity.