Gynecological Endocrinology and Reproductive Medicine, Medical University of Innsbruck, 6020 Innsbruck, Austria.
Laboratory for Translational Perinatology-Focus, Immunology, Chair of Obstetrics and Gynecology, Focus, Obstetrics, University Hospital Regensburg-St. Hedwig Clinic, 93053 Regensburg, Germany.
Cells. 2022 Apr 4;11(7):1219. doi: 10.3390/cells11071219.
The total body irradiation of lymphomas and co-irradiation in the treatment of adjacent solid tumors can lead to a reduced ovarian function, premature ovarian insufficiency, and menopause. A small number of studies has assessed the radiation-induced damage of primordial follicles in animal models and humans. Studies are emerging that evaluate radiation-induced damage to the surrounding ovarian tissue including stromal and immune cells. We reviewed basic laboratory work to assess the current state of knowledge and to establish an experimental setting for further studies in animals and humans. The experimental approaches were mostly performed using mouse models. Most studies relied on single doses as high as 1 Gy, which is considered to cause severe damage to the ovary. Changes in the ovarian reserve were related to the primordial follicle count, providing reproducible evidence that radiation with 1 Gy leads to a significant depletion. Radiation with 0.1 Gy mostly did not show an effect on the primordial follicles. Fewer data exist on the effects of radiation on the ovarian microenvironment including theca-interstitial, immune, endothelial, and smooth muscle cells. We concluded that a mouse model would provide the most reliable model to study the effects of low-dose radiation. Furthermore, both immunohistochemistry and fluorescence-activated cell sorting (FACS) analyses were valuable to analyze not only the germ cells but also the ovarian microenvironment.
全身照射和淋巴瘤的共同照射治疗邻近的实体肿瘤会导致卵巢功能下降、卵巢早衰和绝经。少数研究评估了动物模型和人类中原始卵泡的辐射损伤。目前有一些研究评估了包括基质细胞和免疫细胞在内的卵巢周围组织的辐射损伤。我们回顾了基础实验室工作,以评估当前的知识状况,并为动物和人类的进一步研究建立实验环境。实验方法主要在小鼠模型中进行。大多数研究依赖于高达 1 Gy 的单次剂量,这被认为会对卵巢造成严重损伤。卵巢储备的变化与原始卵泡计数相关,提供了可重复的证据,表明 1 Gy 的辐射会导致明显的消耗。0.1 Gy 的辐射对原始卵泡大多没有影响。关于辐射对卵巢微环境(包括间质细胞、免疫细胞、内皮细胞和平滑肌细胞)影响的数据较少。我们得出结论,小鼠模型将提供最可靠的模型来研究低剂量辐射的影响。此外,免疫组织化学和荧光激活细胞分选(FACS)分析对于分析生殖细胞和卵巢微环境都非常有价值。