PMID 567618 567618 DOI 10.1016/0018-506x(78)90002-8 10.1016/0018-506x(78)90002-8
Cite this article
Simon, N. G., & Gandelman, R. (1978). The estrogenic arousal of aggressive behavior in female mice. Hormones and Behavior, 10(2), 118-127. https://doi.org/10.1016/0018-506x(78)90002-8
Simon NG, Gandelman R. The estrogenic arousal of aggressive behavior in female mice. Horm Behav. 1978;10(2):118-127. doi:10.1016/0018-506x(78)90002-8
Simon, Neal G., and Ronald Gandelman. "The estrogenic arousal of aggressive behavior in female mice." Hormones and Behavior, vol. 10, no. 2, 1978, pp. 118-127.
Hormonal contraceptives (HCs) are widely used, yet their effects on emotional and cognitive processes remain poorly understood. This study examined how HC use may influence emotional reactivity, emotion regulation, and emotional memory. Female participants (N = 179), either using HCs (N = 87) or naturally cycling (NC; N = 92), were randomly assigned no emotion regulation (control), distancing and immersion, or reinterpretation and immersion. The emotion regulation groups completed emotion regulation training in which they viewed emotional images while applying different emotion regulation strategies, followed by a surprise memory test. Overall, HC users showed greater emotional reactivity to emotional images compared to NC participants. Both HC and NC groups successfully applied emotion regulation strategies as measured by changes in emotional affect; however, distancing led to a greater reduction in negative emotions compared to reinterpretation, particularly among HC users. Both HC and NC groups showed better memory for positive images after applying immersion. For negative images, HC users showed reduced memory performance when applying either distancing or reinterpretation, an effect not observed in NC participants. These findings suggest that HC use may influence specific aspects of emotional processing and memory, highlighting the need for more nuanced research on the cognitive and emotional effects of hormonal contraceptives.
Animal models and a few human investigations suggest progesterone may be associated with anxiety. Progesterone naturally fluctuates across the menstrual cycle, offering an opportunity to understand how within-person increases in progesterone and average progesterone levels across the cycle correspond to women's anxiety. Across two longitudinal studies, we simultaneously modeled the between- and within-person associations between progesterone and anxiety using multilevel modeling. In Study 1, 100 Polish women provided saliva samples and reported their anxiety at three follicular, peri-ovulatory, and luteal. A significant between-person effect emerged, revealing that women with higher average progesterone levels across their cycles reported higher levels of anxiety than women with lower progesterone cycles. This effect held controlling for estradiol. In Study 2, 61 American women provided saliva samples and reported their attachment anxiety during laboratory sessions during the same three cycle phases. A significant between-person and within-person women with higher average progesterone levels reported higher levels of attachment anxiety, and as women's progesterone levels increased across their cycles, so too did their attachment anxiety. These effects held controlling for cortisol. In sum, both studies provide support for a link between menstrual cycle progesterone levels and subjective anxiety.
We investigated whether sexual activity was associated with reproductive function in the BioCycle Study, a prospective cohort study that followed 259 regularly menstruating women aged 18 to 44years for one (n=9) or two (n=250) menstrual cycles in 2005-2007. Women were not attempting pregnancy nor using hormonal contraceptives. History of ever having been sexually active was assessed at baseline and frequency of sexual activity, defined as vaginal-penile intercourse, was self-reported daily throughout the study. Serum concentrations of estradiol, luteinizing hormone (LH), follicle-stimulating hormone (FSH), progesterone, and testosterone were measured up to 8times/cycle. Sporadic anovulation was identified using peak progesterone concentration. Linear mixed models were used to estimate associations between sexual activity and reproductive hormone concentrations and generalized linear models were used to estimate associations with sporadic anovulation. Models were adjusted for age, race, body mass index, perceived stress, and alcohol consumption and accounted for repeated measures within women. Elevated concentrations of estrogen (+14.6%, P<.01), luteal progesterone (+41.0%, P<.01) and mid-cycle LH (+23.4%, P<.01), but not FSH (P=.33) or testosterone (P=.37), were observed in sexually active women compared with sexually inactive women (no prior and no study-period sexual activity); sexually active women had lower odds of sporadic anovulation (adjusted odds ratio=0.34, 95% 0.16-0.73). Among sexually active women, frequency of sexual activity was not associated with hormones or sporadic anovulation (all P>.23). Findings from our study suggest that ever having been sexually active is associated with improved reproductive function, even after controlling for factors such as age.