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Updated: Aug 23, 2025

A Neuronal and Astrocyte Co-Culture Assay for High Content Analysis of Neurotoxicity
Published on: May 5, 2009
Methotrexate Induces an Antioxidant Hormetic Response in Primary Rat Astrocytes
Armando Luna-López1, Giovanna Adonahi Flores-González2, Itzel Alejandra Rivera-Ruz2
1Departamento de Investigación Básica, Instituto Nacional de Geriatría, CDMX, México.
Abstract:
Neurodegenerative diseases have increased worldwide in recent years. Their relationship with oxidative stress has motivated the research to find therapies and medications capable of suppressing oxidative damage and therefore slowing the progression of these diseases. Glutathione (GSH) is the most important cellular antioxidant in living beings and is responsible for regulating the cellular redox state. However, GSH cannot be administered by any route of administration, so molecules that increase its levels by activating Nrf2-ARE signaling pathway are explored; since Nrf2 regulates the main genes involved in GSH de novo synthesis and recycling. Astrocytes are the most important cell-type in the antioxidant cell response and are responsible for providing GSH and other substrates for neurons to have an efficient antioxidant response. Methotrexate (MTX) is an anti-inflammatory agent that has different cellular effects when administered at low or high concentrations. So in this study, we used MTX different concentrations and exposure times to induce a hormetic antioxidant response in rat primary astrocytes. Our results showed that 20 nM MTX pre-conditioning for 12 h augmented the GSH/GSSG ratio and protected cellular viability against a toxic MTX and H2O2 insult, which was abrogated when Nrf2 was inhibited by brusatol. Hence, MTX subsequent studies as a drug to counteract the progression of some stress-associated neurodegenerative diseases are suggested.
Insights
Low-dose methotrexate (MTX) pre-conditioning in astrocytes boosts glutathione (GSH) levels and cellular protection against oxidative stress. This hormetic effect, mediated by Nrf2 activation, suggests MTX
Area of Science:
- Neuroscience
- Cell Biology
- Pharmacology
Background:
- Neurodegenerative diseases are increasing globally, linked to oxidative stress.
- Glutathione (GSH) is a key cellular antioxidant, but direct administration is ineffective.
- Nrf2-ARE pathway activation is a target for boosting endogenous GSH synthesis.
Purpose of the Study:
- To investigate the potential of methotrexate (MTX) to induce a hormetic antioxidant response in rat primary astrocytes.
- To explore the role of Nrf2-ARE signaling in MTX-mediated antioxidant effects.
Main Methods:
- Primary rat astrocytes were pre-conditioned with varying concentrations and durations of MTX.
- Glutathione (GSH)/GSSG ratio and cellular viability were assessed.
- Nrf2 inhibition using brusatol was employed to determine pathway involvement.
Main Results:
- Pre-conditioning with 20 nM MTX for 12 hours significantly increased the GSH/GSSG ratio.
- This MTX pre-treatment protected astrocytes against subsequent toxic insults (MTX and H2O2).
- The protective effect was abolished by Nrf2 inhibition, confirming its crucial role.
Conclusions:
- Low-dose MTX can induce a hormetic antioxidant response in astrocytes via Nrf2 activation.
- MTX shows promise as a therapeutic agent to combat oxidative stress in neurodegenerative diseases.
- Further studies are warranted to explore MTX's potential in treating stress-related neurodegenerative conditions.

