Related Experiment Video
Updated: May 12, 2026

Gene-environment Interaction Models to Unmask Susceptibility Mechanisms in Parkinson's Disease
Published on: January 7, 2014
Serum myoglobin, but not lipopolysaccharides, is predictive of AMPH-induced striatal neurotoxicity
Mark S Levi1, Ralph E Patton, Joseph P Hanig
1Division of Neurotoxicology, National Center for Toxicological Research, U.S. Food & Drug Administration, Jefferson, AR 72079-9502, USA. mark.levi@fda.hhs.gov
Abstract:
Determinants of amphetamine (AMPH)-induced neurotoxicity are poorly understood. The role of lipopolysaccharides (LPS) and organ injury in AMPH-induced neurotoxicity was examined in adult male Sprague-Dawley rats that were give AMPH and became hyperthermic during the exposure. Environmentally-induced hyperthermia (EIH) in the rat was compared to AMPH to determine whether AMPH-induced increases in LPS and peripheral toxicities were solely attributable to hyperthermia. Muscle, liver, and kidney function were determined biochemically at 3h or 1 day after AMPH or EIH exposure and histopathology at 1 day after treatment. Circulating levels of LPS were monitored (via limulus amoebocyte coagulation assay) during AMPH or EIH exposure. Blood LPS levels were detected in 40-50% of the AMPH and EIH rats, but the presence of LPS in the serum had no effect on organ damage or striatal dopamine depletions (neurotoxicity). In both CR and NCTR rats, serum bound urea nitrogen and creatinine levels increased at 3h after EIH or AMPH (2- to 3-fold above control) but subsided by 1 day. Alanine transaminase was increased (indicating liver dysfunction) by both AMPH and EIH at 3 h (2- to 10-fold above control) in CR rats, but the levels were not significantly different between the control and AMPH groups in NCTR animals. Mild liver necrosis was detected in 1 of 7 rats examined in the AMPH group and in 1 of 5 rats examined in the EIH group (only NCTR rats were examined). Serum myoglobin increased (indicating muscle damage) in both CR and NCTR rats at 3h and was more pronounced with AMPH (≈5-fold above control) than EIH. Our results indicate that: (1) "free" blood borne LPS often increases with EIH and AMPH but may not be necessary for striatal neurotoxicity and CNS immune responses; (2) liver or kidney dysfunction may result from muscle damage; however, it is not sufficient nor necessary to produce, but may exacerbate, neurotoxicity; (3) AMPH-induced serum myoglobin release is a potential biomarker and possibly a factor in AMPH-induced toxicity processes.
Insights
Amphetamine (AMPH) neurotoxicity is not solely due to hyperthermia or lipopolysaccharides (LPS). Muscle damage, indicated by serum myoglobin, may be a key factor and potential biomarker in AMPH toxicity.
Area of Science:
- Neuroscience
- Toxicology
- Pharmacology
Background:
- The mechanisms underlying amphetamine (AMPH)-induced neurotoxicity remain incompletely understood.
- The influence of lipopolysaccharides (LPS) and peripheral organ injury on AMPH neurotoxicity requires further investigation.
Purpose of the Study:
- To investigate the roles of LPS and organ injury in AMPH-induced neurotoxicity.
- To differentiate AMPH-induced effects from those caused solely by hyperthermia.
Main Methods:
- Adult male Sprague-Dawley rats were exposed to AMPH or environmentally-induced hyperthermia (EIH).
- Biochemical assays assessed muscle, liver, and kidney function at 3 hours and 1 day post-exposure.
- Histopathology and circulating LPS levels were monitored.
Main Results:
- Blood LPS levels increased in both AMPH and EIH groups but did not correlate with neurotoxicity or organ damage.
- Both AMPH and EIH caused transient kidney and liver dysfunction, with AMPH showing more pronounced muscle damage (increased serum myoglobin).
- Mild liver necrosis was observed in a small number of rats in both AMPH and EIH groups.
Conclusions:
- Elevated blood LPS is not essential for AMPH-induced neurotoxicity or central nervous system immune responses.
- Peripheral organ dysfunction, potentially stemming from muscle damage, may exacerbate AMPH neurotoxicity.
- Increased serum myoglobin following AMPH exposure serves as a potential biomarker for AMPH-induced toxicity.
More Related Videos
15:05Functional Evaluation of Biological Neurotoxins in Networked Cultures of Stem Cell-derived Central Nervous System Neurons
Published on: February 5, 2015
09:32Bioluminescence Imaging of Neuroinflammation in Transgenic Mice After Peripheral Inoculation of Alpha-Synuclein Fibrils
Published on: April 13, 2017