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Cryogenic preservation of embryos of Prochilodus lineatus (Valenciennes, 1836) (Characiforme; Prochilodontidae)

机译:棒状Prochilodus lineatus的胚胎的低温保存(Valenciennes,1836)(Characiforme; Prochilodontidae)

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摘要

While the freezing techniques of mammal embryos have been providing promising results, the cryopreservation of teleostean eggs and embryos have remained unsuccessful up to now. Therefore, this work aimed to develop a procedure of cryogenic preservation of embryos of Prochilodus lineatus and to observe, at both structural and ultrastructural levels, the morphological alterations that took place after the application of freezing/thawing techniques. The embryos at the morula stage could not tolerate exposure to the cryoprotectants ethylene glycol monomethyl ether, propylene glycol monomethyl ether, methanol, dimethyl sulphoxide and propylene glycol, presenting 100% of mortality. Embryos at the 4- to 6-somites stage tolerated exposure to propylene glycol and dimethyl sulphoxide, and the results revealed no significant differences (alpha = 0.05) regarding survival from both treatments. None of the freezing, thawing and hydration protocols was effective on preserving embryo viability. The ultrastructural analyses of frozen and thawed embryos showed that cells from ectoderm, somites, notochord and endoderm were structurally intact, with well preserved nuclei and mitochondria. The yolk globules were able to tolerate the freezing process, but the yolk syncytial layer was unorganized, displaying an electron-dense and compacted appearance, collapsed reticules, nuclei with modified chromatin and ruptures on the plasmatic membrane at the contact zone with endoderm. It might be concluded that the procedures tested for freezing were unable to avoid the formation of intracellular ice crystals, leading to drastic morphological modifications and making P. lineatus embryos unviable.
机译:尽管哺乳动物胚胎的冷冻技术已取得了可喜的成果,但到目前为止,硬骨鱼类卵和胚胎的冷冻保存仍未成功。因此,这项工作的目的是开发一种低温保存Prochilodus lineatus胚胎的方法,并观察在结构和超结构水平下应用冷冻/解冻技术后发生的形态变化。桑ula期的胚不能耐受冷冻保护剂乙二醇单甲醚,丙二醇单甲醚,甲醇,二甲基亚砜和丙二醇的暴露,死亡率为100%。胚胎在4至6个阶段的阶段可以耐受丙二醇和二甲基亚砜的暴露,结果表明两种处理的存活率均无显着差异(alpha = 0.05)。冷冻,解冻和水合作用都不能有效地保持胚胎的活力。冷冻和融化的胚胎的超微结构分析表明,来自外胚层,体节,脊索和内胚层的细胞结构完整,细胞核和线粒体保存良好。卵黄小球能够耐受冷冻过程,但是卵黄合胞体层是无组织的,显示出电子致密和紧实的外观,网状结构塌陷,核具有染色质修饰的核,并且在与内胚层接触的质膜上破裂。可以得出结论,测试冷冻的程序无法避免细胞内冰晶的形成,从而导致急剧的形态学改变并使线虫假单胞菌胚胎无法存活。

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