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◆ Neurochemical research2026-09-26

Systemic AR-C155858 During Fixed Treadmill Exercise in MPTP Mice: An Exploratory Study.

Jianda Kong, Lingyun Liu, Guanbo Zhao, Yuan Gao, Zizheng Yang, Ruobing Zeng, Mingli Tan, Haijun Wang, Yang Liu, Wei Chen

原始摘要(英文原文)· Original abstract
Treadmill exercise improves motor and dopaminergic phenotypes in toxin-based Parkinson's disease models, but the contribution of monocarboxylate transport remains uncertain. This small-scale, hypothesis-generating exploratory study tested whether systemic AR-C155858, an MCT1/MCT2 inhibitor used in experimental systems, altered lactate kinetics and recovery-related outcomes in MPTP-treated mice during identical treadmill exercise. Its purpose was to detect a coordinated phenotype that could justify subsequent confirmatory mechanistic testing. The two-group design was not intended to estimate the independent effect of exercise, the effect of AR-C155858 without exercise, or a drug-by-exercise interaction. Male C57BL/6J mice received MPTP (20 mg/kg/day, intraperitoneally, 5 days) and, after 3 days, completed 4 weeks of forced treadmill exercise (16 m/min, 40 min/day, 5 days/week, 5° incline). Mice received vehicle (Ex-Veh) or AR-C155858 (Ex-AR; 10 mg/kg intraperitoneally, 30 min before exercise). Blood lactate was measured in weeks 1 and 4; motor behavior was assessed before MPTP, after MPTP, and after the intervention; endpoint striatal TH, Iba1, GFAP, and dopamine metabolites were measured. AR-C155858 was associated with higher 30-min post-exercise lactate and smaller recovery amplitude, but not altered lactate peak increment or AUC. Ex-AR mice showed smaller changes in open-field distance, pole-test turning, stride length, and fore-hind overlap, together with lower endpoint striatal TH and dopamine and higher Iba1. GFAP and DOPAC did not differ significantly; HVA was not tested because multiple values were below quantification. In male MPTP-treated mice under a common treadmill condition, systemic AR-C155858 was associated with delayed peripheral lactate decline and less favorable motor and endpoint striatal outcomes. Because MCT1/MCT2 expression, localization, and target engagement were not measured, the findings do not establish a brain- or cell-specific MCT mechanism. These findings generate testable hypotheses for a subsequent, larger factorial mechanistic study. Animal-level open-field data, a baseline-adjusted sensitivity analysis, and executable analysis code are supplied as Supplementary materials.
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Systemic AR-C155858 During Fixed Treadmill Exercise in MPTP Mice: An Exploratory Study. — 科研速览 Science Skim