首页> 外文期刊>Cryobiology: International Journal of Low Temperature Biology and Medicine >Cryoprotectants synergy improve zebrafish sperm cryopreservation and offspring skeletogenesis
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Cryoprotectants synergy improve zebrafish sperm cryopreservation and offspring skeletogenesis

机译:冷冻保护剂协同改善斑马鱼精液冷冻保存和后代骨膜发生

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摘要

The synergy obtained by the combination of cryoprotectants is a successful strategy that can be beneficial on the optimization of zebrafish sperm cryopreservation. Recently, a protocol was established for this species using an electric ultrafreezer (-150 degrees C) performing cooling rate (-66 degrees C/min) and storage within one step. The ultimate objective of sperm cryopreservation is to generate healthy offspring. Therefore, the objective of this study was to select the most adequate cryoprotectant combination, for the previously established protocol, that generate high quality offspring with normal skeletogenesis. Among the permeating cryoprotectant concentrations studied 12.5% and 15% of N,N-dimethylformamide (DMF) yielded high post-thaw sperm quality and hatching rates. For these two concentrations, the presence of bovine serum albumin (10 mg/mL), egg yolk (10%), glycine (30 mM) and bicine (50 mM) was evaluated for post-thaw sperm motility, viability, in vitro fertilization success and offspring skeletal development (30 days post fertilization). Higher concentration of permeating cryoprotectant (15%) decreased the incidence of deformed arches and severe skeletal malformations, which suggests higher capacity to protect the cell against cold stress and DNA damage. Extender containing 15% DMF with Ctrl, Bicine and egg yolk were the non-permeating cryoprotectants with higher post-thaw quality. The use of these compounds results in a reduction in vertebral fusions, compressions and severity of skeletal malformations in the offspring. Therefore, these extender compositions are beneficial for the quality of zebrafish offspring sired by cryopreserved sperm with 66 degrees C/min freezing rate. To the best of our knowledge, this is the first report on skeletal development of the offspring sired by cryopreserved sperm performed with different freezing media compositions in zebrafish.
机译:通过冷冻保护剂组合获得的协同作用是一种成功的策略,可以有利于斑马鱼精子冷冻保存的优化。最近,使用电动超注素(-150℃)在一个步骤内进行冷却速率(-66摄氏度)和储存来为该物种建立协议。精子冷冻保存的最终目标是产生健康的后代。因此,本研究的目的是为先前建立的方案选择最适当的冷冻保护剂组合,其产生高质量的后代,具有正常的骨骼发生。在渗透冷冻保护剂浓度中,研究了12.5%和15%N,N-二甲基甲酰胺(DMF)产生高后的精子质量和孵化率。对于这两种浓度,评价牛血清白蛋白(10mg / ml),蛋黄(10%),甘氨酸(30mM)和双尼(50mM)的存在,用于解冻精子活力,活力,体外施肥成功和后代骨骼发育(受精后30天)。更高浓度的冷冻保护剂(15%)降低了变形拱的发病率和严重的骨骼畸形,这表明保护细胞免受冷应激和DNA损伤的能力更高。增量剂含有15%DMF,具有CTRL,双内和蛋黄是无渗透后解冻后质量的冷冻保护剂。这些化合物的使用导致后代骨骼融合,压缩和骨骼畸形的严重程度降低。因此,这些增量剂组合物有利于斑马鱼后代的质量,通过冷冻保存的精子灌注,冻结率为66℃/最小凝固率。据我们所知,这是由斑马鱼中不同冷冻培养基组成的冷冻保存精子灌注的后代骨骼发育的第一份报告。

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