Kikuchi Kohta, Kozai Keisuke, Hojo Takuo, Sakatani Miki, Okuda Kiyoshi, Bai Hanako, Kawahara Manabu, Takahashi Masashi
Laboratory of Animal Genetics and Reproduction, Department of Animal Science, Research Faculty of Agriculture, Hokkaido University, Hokkaido 060-8589, Japan.
Laboratory of Animal Reproductive Physiology, Graduate School of Environmental and Life Science, Okayama University, Okayama 700-8530, Japan.
J Reprod Dev. 2018 Apr 13;64(2):193-197. doi: 10.1262/jrd.2017-128. Epub 2018 Jan 7.
We investigated the electrical impedance of the reproductive tracts (vagina and uterine endometrial tissues) and the expression of mucus-related genes to identify the stage of the estrous cycle in mares. We first examined vaginal impedance in native Hokkaido mares during their estrous cycle and found no significant differences. However, impedance levels tended to decrease towards ovulation. Furthermore, we investigated the estrous cycle by measuring the electrical impedance of the uterine endometrial tissues obtained from carcasses of mares. We found that impedance levels in the endometrial tissues decreased in the regressed phase of the corpus luteum (CL). Expression of mucus-related genes (ATP1A1, CFTR, AQP3, and AQP5) varied at different stages of the estrous cycle. Among them, AQP3 expression was consistent with previous reports. We concluded that electrical impedance in the uterine endometrial tissues of mares could be potentially used to verify the presence of active CL in horses for experimental purposes. However, further studies are needed to determine the reference value and to identify the day of the estrous cycle in mares.
我们研究了生殖道(阴道和子宫内膜组织)的电阻抗以及黏液相关基因的表达,以确定母马发情周期的阶段。我们首先检测了北海道本地母马在发情周期中的阴道电阻抗,未发现显著差异。然而,电阻抗水平在排卵时趋于下降。此外,我们通过测量从母马尸体获取的子宫内膜组织的电阻抗来研究发情周期。我们发现,黄体(CL)退化期子宫内膜组织的电阻抗水平下降。黏液相关基因(ATP1A1、CFTR、AQP3和AQP5)的表达在发情周期的不同阶段有所变化。其中,AQP3的表达与先前报道一致。我们得出结论,母马子宫内膜组织的电阻抗有可能用于实验目的,以验证马体内活跃CL的存在。然而,需要进一步研究来确定参考值,并识别母马发情周期的日期。