Smithsonian Conservation Biology Institute, National Zoological Park, Washington, DC, USA.
University of Houston, Houston, TX, USA.
J Assist Reprod Genet. 2021 Aug;38(8):2061-2071. doi: 10.1007/s10815-021-02214-0. Epub 2021 May 5.
Extracellular vesicles (EVs) secreted by the epididymal epithelium transfer key factors to maturing spermatozoa. Using an in vitro system previously developed in our laboratory, the objective was to (1) characterize the impact of EV exposure on the fertilizing ability and developmental potential of immature sperm cells from the caput epididymidis and (2) examine the benefit of EV exposure to restore vitality of mature spermatozoa from the cauda epididymidis after freezing-thawing.
EVs were isolated from entire epididymides and collected into pellets via ultracentrifugation. Immature spermatozoa from adult cats were isolated from the caput epididymis and incubated with EVs prior to in vitro fertilization. Similarly, mature spermatozoa were isolated from the cauda segment and cryopreserved prior to EV exposure and subsequent analysis of motility and developmental potential after fertilization.
EV exposure did not affect the percentage of caput sperm penetration; however, it improved the fertilizing ability (faster pronuclear apposition) and the developmental potential (higher proportions of morula-blastocysts) of those immature sperm cells. While EV exposure was beneficial to the frozen-thawed sperm motility, it did not significantly improve the fertilizing ability and the developmental potential.
Epididymal EVs contain multiple factors contributing to immature sperm function, specifically enhancing the ability to complete a faster pronuclear apposition with subsequently improved early embryonic development. Supplementation was also beneficial to the motility of spermatozoa that had undergone cryopreservation. Those new findings could lead to new options for male fertility treatment in animal models and humans.
附睾上皮细胞分泌的细胞外囊泡(EVs)向成熟精子传递关键因子。本研究利用我们实验室先前开发的体外系统,旨在:(1)研究 EV 暴露对来自附睾头的未成熟精子受精能力和发育潜能的影响;(2)研究 EV 暴露对解冻后附睾尾成熟精子活力的恢复作用。
通过超速离心从整个附睾中分离 EV 并收集到沉淀中。从成年猫的附睾头中分离未成熟精子,并在体外受精前与 EV 孵育。同样,从附睾尾中分离成熟精子并进行冷冻保存,然后进行 EV 暴露,随后分析受精后的运动能力和发育潜能。
EV 暴露并不影响附睾头精子的穿透率;然而,它提高了这些未成熟精子的受精能力(更快的原核附着)和发育潜能(更高比例的桑葚胚-囊胚)。尽管 EV 暴露对冷冻解冻精子的运动能力有益,但它并没有显著提高受精能力和发育潜能。
附睾 EV 包含多种促进未成熟精子功能的因子,特别是增强了更快原核附着的能力,从而改善了早期胚胎发育。补充剂对经过冷冻保存的精子的运动能力也有益。这些新发现可能为动物模型和人类的男性生育治疗提供新的选择。