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Updated: Feb 3, 2026

In Vivo Chronic Two-Photon Imaging of Microglia in the Mouse Hippocampus
Published on: July 6, 2022
Neurogenesis within the hippocampus after chronic methylphenidate exposure
Hannah V Oakes1, Carley E DeVee2, Brandon Farmer1
1Department of Pharmaceutical Sciences, Bill Gatton College of Pharmacy, East Tennessee State University, Johnson City, TN, 37614, USA.
Low-dose methylphenidate boosts hippocampus neurogenesis and neuron survival, potentially via VEGF and TrkB. High doses may initially increase cell proliferation but hinder long-term survival.
Area of Science:
- Neuroscience
- Pharmacology
- Cell Biology
Background:
- Adult neurogenesis occurs in the hippocampus and is influenced by psychoactive drugs.
- The precise effects of methylphenidate on neurogenesis remain incompletely understood.
- Methylphenidate is a common psychostimulant for treating attention deficit hyperactivity disorder.
Purpose of the Study:
- To investigate the impact of chronic low and high-dose methylphenidate on hippocampal neurogenesis.
- To determine the long-term survival of newly generated neurons under different methylphenidate treatment regimens.
- To explore the underlying molecular mechanisms, including key protein levels, affected by methylphenidate.
Main Methods:
- Mice received chronic low (1 mg/kg) and high (10 mg/kg) intraperitoneal doses of methylphenidate.
- Neurogenesis was assessed after 28 and 56 days of treatment.
- Levels of proteins including VEGF, TrkB, and beta-catenin were measured in the hippocampus.
Main Results:
- Methylphenidate at both doses increased neurogenesis, but newly generated cells did not survive if treatment ceased.
- Continued low-dose treatment promoted survival of new neurons, associated with increased hippocampal VEGF, TrkB, and beta-catenin.
- High-dose treatment led to decreased beta-catenin (28 days) and VEGF, beta-catenin, TrkB (56 days), impairing long-term neuron survival.
Conclusions:
- Low-dose methylphenidate enhances hippocampal cell proliferation and survival, potentially mediated by VEGF, TrkB, and beta-catenin.
- High-dose methylphenidate may initially promote proliferation but compromises long-term neuronal survival due to reduced key protein levels.
- Treatment duration and dosage are critical factors in methylphenidate's effects on adult hippocampal neurogenesis.
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