脂质多糖通过增加促炎性细胞因子对小鼠卵巢和子宫功能产生不利影响。

Jihyeon Seo, Jungmin Lee, Sua Kim, Minji Lee, Hyunwon Yang
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引用次数: 1

摘要

随着2019冠状病毒病(COVID-19)疫苗接种次数的增加,出现了各种副作用,女性出现了月经异常的副作用。然而,目前尚不清楚COVID-19疫苗是否会对女性生殖系统产生有害影响。因此,我们通过使用脂多糖(LPS)代替COVID-19疫苗来研究过度免疫反应对生殖功能的影响。通过注射LPS诱导小鼠免疫应答。以生理盐水注射5次的小鼠为对照组,LPS注射5次的小鼠为实验组。反复给药LPS可显著减少黄体(CL)的数量。另一方面,注射LPS不影响CL前卵泡的发育。实验组细胞凋亡相关基因Fas、Fas- l表达升高。此外,实验组炎症相关基因的表达增加。在本研究中,我们证实了LPS对小鼠子宫和卵巢的有害影响。这些结果提示,注射LPS可引起子宫和卵巢内的免疫反应,引起激素变化,从而产生手术异常或月经周期出血等不良反应。预计这些结果将有助于确定由COVID-19疫苗引起的生殖功能下降、不孕或生理障碍的原因。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Lipid Polysaccharides have a Detrimental Effect on the Function of the Ovaries and Uterus in Mice through Increased Pro-Inflammatory Cytokines.

As the number of coronavirus disease 2019 (COVID-19) vaccinations increases, various side effects are being reported, and menstrual abnormalities have been reported as a side effect in women. However, it is still unclear whether the COVID-19 vaccine has detrimental effects on the female reproductive system. Therefore, we investigated the effect of excessive immune response on reproductive function by administering Lipopolysaccharides (LPS) instead of the COVID-19 vaccine. The immune response in mice was induced by injection of LPS. Mice injected with saline 5 times were used as a control group, and mice injected with LPS 5 times were used as an experimental group. Repeated administration of LPS significantly reduced the number of corpus luteum (CL). On the other hand, the injection of LPS did not affect the development of follicles leading before the CL. The expression of the apoptosis-related genes Fas and Fas-L increased in the experimental group. In addition, the expression of the inflammation-related genes increased in the experimental group. In this study, we confirmed that LPS had detrimental effects on the uterus and ovaries in mice. These results suggest that injection of LPS can cause immune reactions within the uterus and ovaries and cause hormonal changes, which can have adverse effects such as abnormal operation or bleeding of the menstrual cycle. These results are expected to help determine the cause of decreased reproductive function, infertility, or physiological disorders caused by the COVID-19 vaccine.

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