Department of Endocrinology, Jagiellonian University in Krakow, Krakow, Poland.
Instituto de Medicina Molecular, Faculdade de Medicina, Universidade de Lisboa, Lisboa, Portugal.
Mol Reprod Dev. 2021 Mar;88(3):238-248. doi: 10.1002/mrd.23463. Epub 2021 Mar 2.
This study investigated the effects of neonatal exposure to methoxychlor (MXC), a synthetic organochlorine used as an insecticide with estrogenic, antiestrogenic, and antiandrogenic activities, on luteal function in pigs. Piglets were injected subcutaneously with MXC (20 μg/kg body weight) or corn oil (control) between postnatal Days 1 and 10 (N = 5/group). Corpora lutea from sexually mature gilts were examined for luteal steroid and prostaglandin concentrations and processed for total RNA isolation and subsequent RNA sequencing. Intra-luteal concentrations of androstenedione and prostaglandin E were greater, while that of estrone was lower when compared to control. Fifty-three differentially expressed (DE) microRNAS (miRNAs) (p-adjusted <.05 and log2(fold change) ≥.5) and 359 DE genes (p-adjusted <.05 and log2(fold change) ≥1) were identified in luteal tissue in response to neonatal MXC treatment. MXC was found to affect the expression of genes related to lipogenesis, steroidogenesis, membrane transport, immune response, cell signaling and adhesion. These results suggest an earlier onset of structural luteolysis in pigs caused by MXC actions in neonates. Since negative correlation analysis showed the potential interactions of miRNAs with specific messenger RNAs, we propose that these miRNAs are potential mediators of the long-term MXC effect on the CL function in pigs.
本研究探讨了新生仔猪暴露于甲氧氯(MXC)对猪黄体功能的影响。MXC 是一种合成有机氯杀虫剂,具有雌激素、抗雌激素和抗雄激素活性,仔猪在产后第 1 天至第 10 天每天皮下注射 MXC(20μg/kg 体重)或玉米油(对照)(每组 5 只)。检测性成熟母猪的黄体类固醇和前列腺素浓度,并进行总 RNA 分离和随后的 RNA 测序。与对照组相比,MXC 处理组的雄激素和前列腺素 E 浓度增加,而雌酮浓度降低。在黄体组织中鉴定出 53 个差异表达(DE)microRNA(miRNA)(p 调整<.05 和 log2(fold change)≥.5)和 359 个 DE 基因(p 调整<.05 和 log2(fold change)≥1)。发现 MXC 处理影响与脂生成、类固醇生成、膜转运、免疫反应、细胞信号和粘附相关的基因表达。这些结果表明,MXC 对新生仔猪的作用导致猪黄体更早出现结构退化。由于负相关分析显示 miRNA 与特定信使 RNA 之间存在潜在的相互作用,我们提出这些 miRNA 是 MXC 对猪黄体功能长期影响的潜在介导物。