Department of Stem Cell and Regenerative Biotechnology, KIT, Konkuk University, Seoul, 05029, Republic of Korea.
Department of Animal Biotechnology, College of Life Science, Sangji University, Wonju-si, 26339, Republic of Korea.
Sci Rep. 2024 Oct 14;14(1):24029. doi: 10.1038/s41598-024-74895-3.
Excess exogenous supplementation of D-galactose (D-gal), a monosaccharide and reducing sugar, generates reactive oxygen species (ROS), leading to cell damage and death. ROS accumulation is critical in aging. Therefore, D-gal-induced aging mouse models are used in aging studies. Herein, we evaluated D-gal's effect on neonatal testis development using an in vitro organ culture method. Mouse testicular fragments (MTFs) derived from neonatal testes (postnatal day 5) were cultured with 500 mM D-gal for 5 days. D-gal-treated MTFs showed a significantly increased and decreased expression of undifferentiated and differentiated germ cell markers, respectively, with a substantial reduction in meiotic cells. In D-gal-exposed MTFs, expression levels of Sertoli cell markers (Sox9 and Wt1) increased, while those of StAR and 17β-HSD3, whose expressions are abundant in D-Gal treated adult Leydig cells, decreased. Additionally, the enzyme 3 β-HSD1, essential for steroidogenesis in Leydig cells, was significantly reduced in D-gal-exposed MTFs compared to that in controls.D-gal significantly increased the expression of Bad, Bax, and cleaved caspase-3 and -8. Via oxidative stress in MTF. Overall, D-gal negatively regulates germ cell and Leydig cell development in neonatal testes through pro-apoptotic mechanisms and ROS.
外源性过量补充半乳糖(D-gal),一种单糖和还原糖,会产生活性氧物种(ROS),导致细胞损伤和死亡。ROS 的积累在衰老过程中至关重要。因此,D-gal 诱导的衰老小鼠模型被用于衰老研究。在此,我们使用体外器官培养方法评估了 D-gal 对新生睾丸发育的影响。从小鼠出生后 5 天(即新生期)的睾丸中分离得到睾丸组织片段(MTFs),并用 500 mM D-gal 培养 5 天。D-gal 处理的 MTFs 中未分化和分化的生殖细胞标志物的表达分别显著增加和减少,减数分裂细胞大量减少。在 D-gal 暴露的 MTFs 中,Sertoli 细胞标志物(Sox9 和 Wt1)的表达水平增加,而在成年 Leydig 细胞中大量表达的 StAR 和 17β-HSD3 的表达水平降低。此外,类固醇生成所必需的酶 3β-HSD1 在 D-gal 暴露的 MTFs 中明显低于对照组。D-gal 显著增加了 Bad、Bax 和 cleaved caspase-3 和 -8 的表达。通过 MTF 中的氧化应激。总之,D-gal 通过促凋亡机制和 ROS 负调控新生睾丸中的生殖细胞和 Leydig 细胞发育。