Center of Excellence in Translational Medicine-Scientific and Technological Bioresource Nucleus (CEMT-BIOREN), Faculty of Medicine, Universidad de La Frontera, Temuco 4780000, Chile.
Ph.D. Program in Medical Sciences, Faculty of Medicine, Universidad de La Frontera, Temuco 4780000, Chile.
Int J Mol Sci. 2024 Jun 5;25(11):6216. doi: 10.3390/ijms25116216.
Reproductive failure in dogs is often due to unknown causes, and correct diagnosis and treatment are not always achieved. This condition is associated with various congenital and acquired etiologies that develop inflammatory processes, causing an increase in the number of leukocytes within the female reproductive tract (FRT). An encounter between polymorphonuclear neutrophils (PMNs) and infectious agents or inflammation in the FRT could trigger neutrophil extracellular traps (NETs), which are associated with significantly decreased motility and damage to sperm functional parameters in other species, including humans. This study describes the interaction between canine PMNs and spermatozoa and characterizes the release of NETs, in addition to evaluating the consequences of these structures on canine sperm function. To identify and visualize NETs, May-Grünwald Giemsa staining and immunofluorescence for neutrophil elastase (NE) were performed on canine semen samples and sperm/PMN co-cultures. Sperm viability was assessed using SYBR/PI and acrosome integrity was assessed using PNA-FITC/PI by flow cytometry. The results demonstrate NETs release in native semen samples and PMN/sperm co-cultures. In addition, NETs negatively affect canine sperm function parameters. This is the first report on the ability of NETs to efficiently entrap canine spermatozoa, and to provide additional data on the adverse effects of NETs on male gametes. Therefore, NETs formation should be considered in future studies of canine reproductive failure, as these extracellular fibers and NET-derived pro-inflammatory capacities will impede proper oocyte fertilization and embryo implantation. These data will serve as a basis to explain certain reproductive failures of dogs and provide new information about triggers and molecules involved in adverse effects of NETosis for domestic pet animals.
犬的繁殖失败通常是由于未知原因引起的,且并非总能得到正确的诊断和治疗。这种情况与各种先天和后天的病因有关,这些病因会引发炎症过程,导致雌性生殖道(FRT)内白细胞数量增加。FRT 中的多形核粒细胞(PMN)与感染因子或炎症之间的相互作用可能会触发中性粒细胞胞外诱捕网(NETs),这与其他物种(包括人类)的精子运动能力显著下降和功能参数受损有关。本研究描述了犬 PMN 与精子之间的相互作用,并对 NETs 的释放进行了特征描述,此外还评估了这些结构对犬精子功能的影响。为了鉴定和可视化 NETs,对犬精液样本和精子/PMN 共培养物进行了 May-Grünwald Giemsa 染色和中性粒细胞弹性蛋白酶(NE)免疫荧光染色。通过 SYBR/PI 评估精子活力,通过 PNA-FITC/PI 流式细胞术评估顶体完整性。结果表明在天然精液样本和 PMN/精子共培养物中存在 NETs 的释放。此外,NETs 会对犬精子功能参数产生负面影响。这是首次报道 NETs 能够有效地捕获犬精子,并为 NETs 对雄性配子的不良影响提供了更多数据。因此,在未来的犬繁殖失败研究中应考虑 NETs 的形成,因为这些细胞外纤维和 NET 衍生的促炎能力将阻碍卵母细胞的正常受精和胚胎着床。这些数据将为解释犬的某些繁殖失败提供依据,并为宠物动物中 NETosis 的不良影响所涉及的触发因子和分子提供新的信息。