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Biology subjects

Kauff, A.

Publications and source records attributed to Kauff, A..

2 recordsLinked to original sources

Estrogenic Activity in Tampon Products

Tampons are widely used menstrual products with prolonged mucosal contact, raising questions about their potential role in exposing females to endocrine-disrupting chemicals (EDCs). This study evaluated estrogenic activity in tampon extracts using a cell-based estrogen receptor reporter bioassay. Synthetic and organic tampons sourced from domestic and international markets--both synthetic and organic--were tested for estrogenic bioactivity. Of the 18 brands analyzed, estrogenic activity was detected in nearly half, independent of material type. Comparative chemical analysis of one estrogenic-active brand versus one non-active brand via high-resolution mass spectrometry identified various plasticizers, surfactants, and fragrance agents, that were present in higher concentrations in the estrogenic-active brand. The list of chemicals included known EDCs, such as phthalates and alkylphenols, that may be responsible for the observed estrogenic activity. Notably, estrogenic activity varied by brand, suggesting formulation-dependent risk. Although the detected in vitro activity levels were low, the findings demonstrate that compounds capable of activating estrogen receptors can leach from tampons. These results highlight the importance of including endocrine bioactivity assays in tampon safety assessments and suggest that safer formulations are achievable. Further investigation is warranted to assess long-term health implications of cumulative low-level EDC exposure from menstrual products.

physiology↗

CRISPR-Cas9 knockdown of ESR1 in preoptic GABA-kisspeptin neurons abolishes the preovulatory surge and estrous cycles in female mice

Evidence suggests that estradiol-sensing preoptic area GABA neurons are involved in the pre-ovulatory surge mechanism necessary for ovulation. In vivo CRISPR-Cas9 editing was used to achieve a 60-70% knockdown in estrogen receptor alpha (ESR1) expression by GABA neurons located within the region of the rostral periventricular of the third ventricle (RP3V) and medial preoptic nuclei (MPN) in adult female mice. Mice exhibited variable reproductive phenotypes with the only significant finding being those mice with bilateral ESR1 deletion in RP3V GABA neurons that had reduced cFos expression in GnRH neurons at the time of the surge. One sub-population of RP3V GABA neurons expresses kisspeptin. Re-grouping ESR1-edited mice on the basis of their RP3V kisspeptin expression revealed a highly consistent phenotype; mice with a near complete loss of kisspeptin immunoreactivity displayed constant estrus and failed to exhibit surge activation but retained pulsatile LH secretion. These observations demonstrate ESR1-expressing GABA-kisspeptin neurons in the RP3V are essential for the murine preovulatory LH surge mechanism.

physiology↗