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卵巢切除后阴道的细胞和细胞外变化。

Cellular and extracellular vaginal changes following murine ovarian removal.

机构信息

Department of Obstetrics and Gynecology, Division of Pediatric and Adolescent Gynecology, Texas Children's Hospital, Baylor College of Medicine, Houston, Texas, USA.

Department of Surgery, Division of Pediatric Surgery, Texas Children's Hospital, Baylor College of Medicine, Houston, Texas, USA.

出版信息

Physiol Rep. 2023 Aug;11(15):e15762. doi: 10.14814/phy2.15762.

Abstract

Loss of estrogen as a result of aging, pelvic cancer therapy, genetics, or eating disorders affects numerous body systems including the reproductive tract. Specifically, a chronic hypoestrogenic state fosters debilitating vaginal symptoms like atrophy, dryness, and dyspareunia. Current treatment options, including vaginal estrogen and hyaluronan (HA), anecdotally improve symptoms, but rectifying mechanisms are largely understudied. In order to study the hypoestrogenic vaginal environment, in particular the extracellular matrix (ECM), as well as understand the mechanisms behind current treatments and develop new therapies, we characterized a reliable and reproducible animal model. Bilateral ovariectomies (OVX) were performed on 9-week-old CD1 mice. After 1 month of estrogen loss due to ovarian removal, a phenotype that is similar to human vaginal tissue in an estrogen reduced state was noted in mice compared to sham-operated controls. The uterine to body weight ratio decreased by 80% and vaginal epithelium was significantly thinner in OVX compared to sham mice. Estrogen signaling was altered in OVX, but submucosal ERα localization did not reach statistical differences. HA localization in the submucosal area was altered and CD44 expression decreased in OVX mice. Collagen turn-over was altered following OVX. The inflammation profile was also disrupted, and submucosal vaginal CD45 and F4/80 cell populations were significantly reduced in the OVX mice. These results show altered cellular and molecular changes due to reduced estrogen levels. Developing new treatments for hypoestrogenic vaginal symptoms rely on better understanding of not only the cellular changes, but also the altered vaginal ECM environment. Further studies using this mouse model has the potential to advance women's vaginal health treatments and aid in understanding the interplay between organ systems in both healthy, aged, and diseased states.

摘要

由于衰老、盆腔癌治疗、遗传或饮食失调导致的雌激素丧失会影响包括生殖道在内的众多身体系统。具体来说,慢性低雌激素状态会导致阴道萎缩、干燥和性交困难等衰弱性阴道症状。目前的治疗选择,包括阴道雌激素和透明质酸(HA),据报道可以改善症状,但纠正机制在很大程度上仍未得到充分研究。为了研究低雌激素阴道环境,特别是细胞外基质(ECM),并了解当前治疗方法的机制,开发新的治疗方法,我们构建了一个可靠且可重现的动物模型。对 9 周龄 CD1 小鼠进行双侧卵巢切除术(OVX)。由于卵巢切除导致雌激素丧失 1 个月后,与假手术对照组相比,OVX 小鼠表现出类似于人类阴道组织在雌激素减少状态下的表型。子宫与体重的比值下降了 80%,OVX 小鼠的阴道上皮明显变薄。OVX 小鼠的雌激素信号发生改变,但黏膜下 ERα 定位未达到统计学差异。黏膜下区域的 HA 定位发生改变,CD44 表达在 OVX 小鼠中减少。OVX 后胶原周转发生改变。炎症谱也被打乱,OVX 小鼠的黏膜下阴道 CD45 和 F4/80 细胞群明显减少。这些结果表明,由于雌激素水平降低,导致细胞和分子发生改变。开发治疗低雌激素阴道症状的新方法不仅依赖于更好地了解细胞变化,还依赖于改变的阴道 ECM 环境。使用这种小鼠模型的进一步研究有可能推进女性阴道健康治疗,并有助于理解在健康、衰老和患病状态下器官系统之间的相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f368/10406565/5fee8778324c/PHY2-11-e15762-g001.jpg

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