Estrous changes in vaginal nociception in a rat model of endometriosis
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This study investigated how changes in estrous cycles affect vaginal pain sensitivity in rats modeling endometriosis.
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Abstract
A rat model of endometriosis, in which pieces of uterine horn (versus fat in controls) are autotransplanted into the abdomen where they form cysts, reduces fecundity and produces vaginal hyperalgesia. The cysts gradually enlarge over a 2-month period postsurgically and then plateau. Cysts regress with low estrogen levels and reappear when they rise. Based on the hypothesis that the vaginal hyperalgesia depends upon the cysts, this study tested two predictions: that (1) the hyperalgesia would develop postsurgically in parallel with the cysts, and (2) the hyperalgesia would vary with estrous, being greatest when estrogen levels are high (proestrus) and least when low (estrus). In rats trained to escape vaginal distention, percentage escape responses to different distention volumes were measured across the rat's 4-day estrous cycle for 2.5 months before and up to 4 months after autotransplantation of uterus (n=9) or fat (n=6) in abdominal sites. Vaginal pressures were also measured. In rats with uterine but not fat autotransplants, escape percentages increased postsurgically over a 2-month period and then plateaued. The increase was greatest in proestrus and failed to occur in estrus. Vaginal pressures were unchanged in all groups. These results strongly support the hypothesis that the vaginal hyperalgesia depends upon the cysts. Because the cysts were located in sites remote from the vagina, the hyperalgesia involves viscero-visceral interactions and is likely centrally mediated, whereas the estrous modulation could involve hormonal actions either on the cysts or, more likely, on vaginal afferent fibers, and/or on central neurons.
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- WERF Endometriosis Phenome and Biobanking Harmonisation Project for Experimental Models in Endometriosis Research (EPHect-EM-Pain): methods to assess pain behaviour in rodent models of endometriosis 2025
- Bringing Endometriosis to the Road of Contemporary Pain Science 2025
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- Neuroimmunology of Endometriosis-Associated Pain and Its Psychological Aspects 2024
- NF-ĸB expression in endometriosis induced rat uterine tissue 2023
- Establishment and validation of a rodent model of endometriosis to evaluate the effect of new therapeutic strategies 2022
- A syngeneic inoculation mouse model of endometriosis that develops multiple comorbid visceral and cutaneous pain like behaviours 2021
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- Pelvic organ cross-talk: A new paradigm for endometriosis-related pelvic pain? 2018
- Lesion development is modulated by the natural estrous cycle and mouse strain in a minimally invasive model of endometriosis† 2017
- Environmental Manipulations as an Effective Alternative Treatment to Reduce Endometriosis Progression 2017
- Relevant human tissue resources and laboratory models for use in endometriosis research 2017
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- Upregulation of α2δ−1 Calcium Channel Subunit in the Spinal Cord Contributes to Pelvic Organ Cross-Sensitization in a Rat Model of Experimentally-Induced Endometriosis 2015
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- Inducing malignant transformation of endometriosis in rats by long‐term sustaining hyperestrogenemia and type <scp>II</scp> diabetes 2014
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- Pelvic Pain Associated with a Gynecologic Etiology 2010
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- Endometriosis-induced vaginal hyperalgesia in the rat: Role of the ectopic growths and their innervation 2009
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