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Estrogen Receptor Beta Localized on Ventral Tegmental Area Dopamine Neurons Regulates Nicotine Self-Administration Acquisition in Ovary-Intact Female Rats

White, A. M.; McNealy, K. R.; Khatri, S. N.; Pauss, S.; Henderson, B.; Bimonte-Nelson, H.; Hinds, T. D.; Gipson, C. D.

2025-08-01 neuroscience
10.1101/2025.07.30.667767 bioRxiv
Show abstract

Women exhibit greater nicotine use vulnerability than men. High estradiol (E2) exacerbates nicotine use outcomes in women, effects which have been modeled in preclinical nicotine self-administration (SA) studies. Nicotine SA is maintained by dopamine (DA) release from the ventral tegmental area (VTA) to the nucleus accumbens (NA). E2 exerts its effects by binding to estrogen receptors (ER), including ER, ER{beta}, and G-protein coupled ER-1 (GPER-1)s. E2 action at ERs specifically has been shown to potentiate DA neuronal excitability within the VTA. Further, we have shown that ovariectomy decreases both nicotine use during SA and VTA ER{beta} protein. Despite clear evidence of mechanistic relationships between E2, ERs, DA, and nicotine, no studies to date have functionally evaluated the specific role of ER{beta} located on VTA DA cells in driving nicotine consumption during SA in females. There are currently no tools that allow for evaluations of relationships between nicotine neurobiology and ERs with cell-type specificity, as ER{beta} is also localized on other (non-DA) cell types within the VTA. As such, the goals of the present studies were (1) to build and validate a novel adeno-associated viral construct that produces long-term knockdown of ER{beta} specifically on VTA DA neurons, and (2) to determine if VTA DA ER{beta} viral knockdown reduces nicotine SA in ovary-intact female rats. Here we show that ER{beta} regulates VTA DA neuron excitability, and that ER{beta} knockdown in VTA DA neurons reduces DA neuron firing frequency. We also show that VTA ER{beta} knockdown in DA neurons reduces nicotine SA acquisition in ovary-intact female rats. Together, our results demonstrate a critical role of ER{beta} in driving nicotine use in females, underscoring the need for future studies to evaluate neurobehavioral mechanisms of smoking through the lens of sex differences.

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