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Brain-Selective Estrogen Therapy in Male and Female Marmosets Partially Counteracts the Adverse Effects of Aromatase
Hannah Cournoyer1, Abigail Monroy Duenas1, Anusha Bharadwaj1
1Neuroscience and Behavior Graduate Program, University of Massachusetts Amherst, Amherst, Massachusetts 01003.
Abstract:
Blocking estrogen synthesis via aromatase inhibition helps prevent the recurrence of estrogen receptor-positive breast cancer but also results in cognitive, sleep, and thermoregulatory disturbances. These side effects diminish quality of life and contribute to treatment nonadherence in a large proportion of patients. 10β,17β-Dihydroxyestra-1,4-dien-3-one (DHED) is a brain-selective prodrug that, in rodent models, converts to 17β-estradiol (E 2) selectively in the brain without affecting the periphery. We investigated whether DHED could prevent side effects associated with the aromatase inhibitor (AI) letrozole in a primate model of aging. Chronic oral treatment with DHED in letrozole-treated male and female marmosets led to a robust increase in E 2 levels across brain regions without affecting estrogen levels at the periphery. In addition, DHED treatment (1) improved memory at short delays and prevented letrozole-induced cognitive slowing in a hippocampal-dependent memory task, (2) normalized hippocampal neuronal membrane potential and excitability, and (3) reduced sleep fragmentation. However, DHED treatment had opposite effects on thermoregulation in males and females, necessitating additional research in this area. Overall, the results suggest that DHED, which lacks estrogenic effects in peripheral tissues, could be a safe and effective novel hormonal therapy for improving quality of life in breast cancer patients treated with AIs.

