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首页> 外文期刊>Reproduction, fertility, and development >Functional capacity and fertilizing longevity of frozen-thawed scimitar-horned oryx (Oryx dammah) spermatozoa in a heterologous in vitro fertilization system
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Functional capacity and fertilizing longevity of frozen-thawed scimitar-horned oryx (Oryx dammah) spermatozoa in a heterologous in vitro fertilization system

机译:异种体外受精系统中冻融的弯角弯角羚羊(Oryx dammah)精子的功能能力和受精寿命

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This study was conducted to determine if cryopreservation and thawing reduces the quality of scimitar-horned oryx spermatozoa and thus might be responsible for sub-optimal artificial insemination (AI) efficiency. Functional capacity of frozen-thawed oryx spermatozoa was compared in a heterologous bovine in vitro fertilization (IVF) system after being prepared by four methods. Fertilizing longevity was also assessed after thawing and pre-incubating spermatozoa for 12 or 24 h before IVF. Sperm characteristics (viability, morphology, acrosomal and capacitation status) were superior for samples prepared by Percoll centrifugation and standard swim-up compared with microdrop swim-up and wash methods. Regardless of variation in sperm characteristics over time, fertilization success and embryo development were high and did not differ among treatments. Fertilization and cleavage success for spermatozoa pre-incubated for 12 h before IVF were comparable with that achieved with non-incubated spermatozoa. Even 24 h after thawing, spermatozoa were capable of fertilizing oocytes, but percentage fertilization and embryo cleavage were significantly lower than for spermatozoa pre-incubated for 12 h. Overall, functional capacity of oryx spermatozoa after thawing appears comparable with that of domestic bull spermatozoa. When used for AI, frozen-thawed oryx spermatozoa should be capable of fertilizing oocytes in females ovulating 12 or even 24 h after insemination, providing sperm transport mechanisms are adequate. The functional capacity and fertilizing longevity of oryx sperm after thawing is high, and therefore unlikely to be responsible for decreased AI efficiency in the scimitar-horned oryx.
机译:进行这项研究是为了确定冷冻保存和解冻是否会降低弯刀形羚羊精子的质量,因此可能是导致次优人工授精(AI)效率的原因。通过四种方法制备后,在异源牛体外受精(IVF)系统中比较了冻融的羚羊精子的功能能力。在IVF前将精子解冻并预温育12或24小时后,还评估了受精寿命。通过Percoll离心和标准泳动制备的样品的精子特性(生存力,形态,顶体和获能状态)优于微滴泳动和洗涤方法。不管精子特征随时间的变化如何,受精成功率和胚胎发育都很高,并且各处理之间没有差异。在IVF前预孵育12小时的精子的受精和卵裂成功与未孵育的精子相当。即使解冻后24小时,精子也能够使卵母细胞受精,但受精和胚胎卵裂的百分比明显低于预孵育12小时的精子。总的来说,解冻后的羚羊精子的功能能力似乎与国内公牛精子的能力相当。当用于人工授精时,冻融的羚羊精子应该能够在授精后12小时甚至24小时排卵的雌性卵母细胞中受精,前提是精子的运输机制足够。解冻后,羚羊精子的功能能力和受精寿命很高,因此不太可能是弯角角羚羊AI效率下降的原因。

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