Department of Molecular Physiology and Biophysics, Baylor College of Medicine, Houston, Texas, USA.
Health Sciences Centre, School of Medicine, University College Dublin (UCD), Dublin, Ireland.
Mol Reprod Dev. 2021 Aug;88(8):558-570. doi: 10.1002/mrd.23521. Epub 2021 Jun 23.
Cystic ovary disease (COD) is a common cause of bovine infertility but the impact of this disease on the oviduct is unknown. The aim of this study was to analyze the effects of COD on particle transport speed (PTS), ciliary beat frequency, myosalpinx contraction, and epithelial ion transport. Oviducts were obtained from cows affected by COD and compared with those of healthy, mid-diestrus cows. PTS and CBF were examined using live-cell imaging. Smooth muscle contraction and epithelial ion transport were investigated using organ baths and Ussing chambers. Our results showed that muscarinic receptors are involved in cholinergic signaling in the oviduct and that forskolin-induced cyclic AMP production is involved in active ion transport in the oviductal epithelium. Oviducts from cows with luteal cysts revealed significantly decreased PTS (p = 0.02). Further to that, in the oviducts of COD cows, the cholinergic regulation of smooth muscle contractions and active epithelial ion transport were significantly diminished (p < 0.0001). These results imply that in COD cows, oviductal transport is compromised by decreased fluid flow speed and reduced cholinergic regulation of smooth muscle contraction and ion transport. This knowledge contributes to a more comprehensive understanding of COD supporting the development of novel therapeutic concepts for infertility treatment.
卵巢囊肿疾病 (COD) 是牛不孕的常见原因,但这种疾病对输卵管的影响尚不清楚。本研究旨在分析 COD 对颗粒转运速度 (PTS)、纤毛拍打频率、输卵管平滑肌收缩和上皮离子转运的影响。从患有 COD 的奶牛中获得输卵管,并与健康、中期发情的奶牛的输卵管进行比较。使用活细胞成像技术检测 PTS 和 CBF。使用器官浴和 Ussing 室研究平滑肌收缩和上皮离子转运。我们的结果表明,毒蕈碱受体参与输卵管中的胆碱能信号转导,而福司可林诱导的环 AMP 产生参与输卵管上皮的主动离子转运。黄体囊肿奶牛的输卵管 PTS 明显降低 (p = 0.02)。此外,在 COD 奶牛的输卵管中,平滑肌收缩和主动上皮离子转运的胆碱能调节显著减弱 (p < 0.0001)。这些结果表明,在 COD 奶牛中,输卵管转运受到流体流动速度降低和平滑肌收缩和离子转运的胆碱能调节减少的影响。这些知识有助于更全面地了解 COD,支持开发治疗不孕的新治疗概念。