Institute of Pharmacy and Pharmacology, Hunan Province Cooperative Innovation Center for Molecular Target New Drug Study, Hunan Provincial Key Laboratory of Tumor Microenvironment Responsive Drug Research, University of South China, Hengyang, 421001, Hunan Province, China.
Reprod Sci. 2023 Aug;30(8):2362-2372. doi: 10.1007/s43032-023-01220-0. Epub 2023 Apr 3.
Dysmenorrhea is a prevalent gynecological disease among women at reproductive age. It is classified as the primary dysmenorrhea and the secondary dysmenorrhea according to the etiology. The primary dysmenorrhea is caused by uterine hypercontraction without any identifiable pelvic lesions, while the secondary dysmenorrhea is incurred by gynecological disorder with pelvic organic lesions. However, the underlying mechanism of dysmenorrhea is not completely clear. Animal models of dysmenorrhea, especially mouse and rat model, are helpful to explore the pathophysiological mechanism of dysmenorrhea, clarify the therapeutic effect of compounds, and guide clinical treatment. The murine model of primary dysmenorrhea is commonly induced by oxytocin or prostaglandin F, while the secondary dysmenorrhea murine model was further created by injecting oxytocin on the basis of the established primary disease model. This review summarizes the current progress of dysmenorrhea models in rodent, including experimental methods, corresponding evaluation indexes, and the advantages and disadvantages of various murine dysmenorrhea models, in order to provide a reference for the selection of murine dysmenorrhea models and the further study of the pathophysiological mechanism of dysmenorrhea.
痛经是生育期妇女的一种常见妇科疾病。根据病因,痛经可分为原发性痛经和继发性痛经。原发性痛经是由于子宫过度收缩而没有任何可识别的盆腔病变引起的,而继发性痛经是由妇科疾病引起的盆腔器质性病变引起的。然而,痛经的发病机制尚不完全清楚。痛经动物模型,特别是小鼠和大鼠模型,有助于探讨痛经的病理生理机制,阐明化合物的治疗效果,并指导临床治疗。原发性痛经的小鼠模型通常通过催产素或前列腺素 F 诱导,而继发性痛经的小鼠模型则是在建立原发性疾病模型的基础上进一步通过注射催产素来创建的。本综述总结了目前啮齿动物痛经模型的研究进展,包括实验方法、相应的评价指标以及各种小鼠痛经模型的优缺点,以期为小鼠痛经模型的选择和痛经病理生理机制的进一步研究提供参考。