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家猫(Felis catus)和猎豹(Acinonyx jubatus)精子的代谢冷冻损伤的不同模式。

Different patterns of metabolic cryo-damage in domestic cat (Felis catus) and cheetah (Acinonyx jubatus) spermatozoa.

机构信息

Center for Species Survival, Smithsonian Conservation Biology Institute, Front Royal, VA 22630, USA.

出版信息

Cryobiology. 2012 Apr;64(2):110-7. doi: 10.1016/j.cryobiol.2011.12.006. Epub 2011 Dec 29.

Abstract

Felid spermatozoa are sensitive to cryopreservation-induced damage, but functional losses can be mitigated by post-thaw swim-up or density gradient processing methods that selectively recover motile or structurally-normal spermatozoa, respectively. Despite the importance of sperm energy production to achieving fertilization, there is little knowledge about the influence of cryopreservation or post-thaw processing on felid sperm metabolism. We conducted a comparative study of domestic cat and cheetah sperm metabolism after cryopreservation and post-thaw processing. We hypothesized that freezing/thawing impairs sperm metabolism and that swim-up, but not density gradient centrifugation, recovers metabolically-normal spermatozoa. Ejaculates were cryopreserved, thawed, and processed by swim-up, Accudenz gradient centrifugation, or conventional washing (representing the 'control'). Sperm glucose and pyruvate uptake, lactate production, motility, and acrosomal integrity were assessed. Mitochondrial membrane potential (MMP) was measured in cat spermatozoa. In both species, lactate production, motility, and acrosomal integrity were reduced in post-thaw, washed samples compared to freshly-collected ejaculates. Glucose uptake was minimal pre- and post-cryopreservation, whereas pyruvate uptake was similar between treatments due to high coefficients of variation. In the cat, swim-up, but not Accudenz processing, recovered spermatozoa with increased lactate production, pyruvate uptake, and motility compared to controls. Although confounded by differences in non-specific fluorescence among processing methods, MMP values within treatments were positively correlated to sperm motility and acrosomal integrity. Cheetah spermatozoa isolated by either selection method exhibited improved motility and/or acrosomal integrity, but remained metabolically compromised. Collectively, findings revealed a metabolically-robust subpopulation of cryopreserved cat, but not cheetah, spermatozoa, recovered by selecting for motility rather than morphology.

摘要

猫科动物的精子对冷冻保存诱导的损伤很敏感,但通过冻后泳选或密度梯度处理方法,可以分别选择性地回收有活力或结构正常的精子,从而减轻功能丧失。尽管精子能量产生对受精至关重要,但对于冷冻保存或解冻后处理对猫科动物精子代谢的影响知之甚少。我们对家猫和猎豹的精子代谢进行了冷冻保存和解冻后处理的比较研究。我们假设冷冻/解冻会损害精子代谢,泳选而非密度梯度离心可以恢复代谢正常的精子。将精液冷冻保存、解冻,并通过泳选、Accudenz 梯度离心或常规洗涤(代表“对照”)进行处理。评估精子的葡萄糖和丙酮酸摄取、乳酸产生、活力和顶体完整性。测量了猫精子的线粒体膜电位 (MMP)。在这两个物种中,与新鲜采集的精液相比,解冻后经洗涤的样本中乳酸产生、活力和顶体完整性均降低。冷冻保存前后葡萄糖摄取量很小,而由于变异系数高,处理之间的丙酮酸摄取量相似。在家猫中,泳选而非 Accudenz 处理恢复了与对照相比具有更高乳酸产生、丙酮酸摄取和活力的精子。尽管由于处理方法之间的非特异性荧光存在差异而受到干扰,但处理内的 MMP 值与精子活力和顶体完整性呈正相关。通过任何选择方法分离的猎豹精子都表现出改善的活力和/或顶体完整性,但仍存在代谢受损。总的来说,这些发现揭示了一种代谢上稳健的冷冻猫精子亚群,而不是通过选择形态而不是选择活力来恢复的猎豹精子。

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