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Medroxyprogesterone acetate impairs memory and alters the GABAergic system in aged surgically menopausal rats
B Blair Braden1, Joshua S Talboom, Ian D Crain
1Department of Psychology, Arizona State University, Tempe, AZ 85287, USA.
Abstract:
In women, medroxyprogesterone acetate (MPA) is the most commonly used progestin component of hormone therapy (HT). In vitro, MPA negatively impacts markers of neuronal health and exacerbates experimentally-induced neurotoxicity. There is in vitro evidence that these factors are driven by GABAergic and neurotrophic systems. Whether these effects translate to a negative impact on brain function has not been tested in vivo, clinically or preclinically. Here we evaluate the mnemonic and neurobiological effects of MPA in the surgically menopausal rat. Aged ovariectomized (OVX) rats were given subcutaneous vehicle, natural progesterone, low-dose MPA or high-dose MPA. Multiple cognitive domains were analyzed via the water radial-arm maze (WRAM) and Morris maze (MM). Cognitive brain regions were assayed for changes in the GABAergic system by evaluating GAD protein, the synthesizing enzyme for GABA, and neurotrophins. On the WRAM, both progestin types impaired learning. Further, high-dose MPA impaired delayed memory retention on the WRAM, and exacerbated overnight forgetting on the MM. While neurotrophins were not affected by progesterone or MPA treatment, both progestin types altered GAD levels. MPA significantly and progesterone marginally decreased GAD levels in the hippocampus, and both MPA and progesterone significantly increased GAD levels in the entorhinal cortex. These findings suggest that MPA, the most commonly used progestin in HT, is detrimental to learning and two types of memory, and modulates the GABAergic system in cognitive brain regions, in aged surgically menopausal rats. These findings, combined with in vitro evidence that MPA is detrimental to neuronal health, indicates that MPA has negative effects for brain health and function.
Insights
Medroxyprogesterone acetate (MPA), common in hormone therapy, impairs learning and memory in aged rats. This progestin negatively affects brain function by altering the GABAergic system.
Area of Science:
- Neuroscience
- Endocrinology
- Pharmacology
Background:
- Medroxyprogesterone acetate (MPA) is a widely used progestin in hormone therapy (HT).
- In vitro studies indicate MPA negatively impacts neuronal health and neurotoxicity, potentially via GABAergic and neurotrophic systems.
- The in vivo and clinical relevance of these effects on brain function remain largely untested.
Purpose of the Study:
- To investigate the in vivo mnemonic and neurobiological effects of MPA in aged, surgically menopausal rats.
- To assess the impact of MPA on learning, memory, and the GABAergic system in key cognitive brain regions.
Main Methods:
- Aged ovariectomized rats received subcutaneous vehicle, natural progesterone, or low/high-dose MPA.
- Cognitive function was evaluated using the water radial-arm maze (WRAM) and Morris maze (MM).
- Hippocampal and entorhinal cortex tissues were analyzed for changes in GAD (GABA-synthesizing enzyme) and neurotrophin levels.
Main Results:
- Both natural progesterone and MPA impaired learning on the WRAM.
- High-dose MPA worsened delayed memory retention on the WRAM and overnight forgetting on the MM.
- While neurotrophins were unaffected, both progestins altered GAD levels, with MPA significantly decreasing it in the hippocampus and increasing it in the entorhinal cortex.
Conclusions:
- MPA, a common HT progestin, is detrimental to learning and memory in aged menopausal rats.
- MPA modulates the GABAergic system in brain regions critical for cognition.
- These findings, alongside in vitro data, suggest MPA negatively impacts brain health and function.
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