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Modifying oocytes and embryos to improve their cryopreservation

机译:修饰卵母细胞和胚胎以改善其冷冻保存

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Numerous studies indicate that in vitro-produced bovine embryos do not survive cryopreservation as well as those produced in vivo. Furthermore, embryos cultured in vitro in the absence of blood serum are more cryotolerant than embryos cultured in media containing serum. Although in vivo-produced embryos are more cryotolerant, there appear to be breed differences. Most if not all of these observations are correlated with cytoplasmic lipid content of embryos; more and larger lipid droplets are associated with reduced cryotolerance. This review concerns strategies for modifying oocytes and embryos to increase cryosurvival. Reduction of cytoplasmic lipid content of embryos with phenazine ethosulfate (PES), a compound that oxidizes NADPH, even improved cryotolerance of bovine embryos cultured in the absence of serum. Whether cytoplasmic lipid content per se or associated changes in lipid composition of cell membranes are responsible for differences in cryotolerance is unknown. Increasing cholesterol content of membranes of sperm and oocytes via cholesterol-loaded cyclodextrin also appears to improve cryotolerance. While lipids have been emphasized and appear to be important, non-lipid aspects of cell composition also likely affect cryotolerance, and might be modified to improve cryotolerance. Additional research on mechanisms of variation in cryotolerance will be applicable to circumvent cryo-intolerance attributable to variation associated with the individual animal, breed, species, cell type, and factors such as nutrition and season of the year.
机译:大量研究表明,体外保存的牛胚胎不能像在体内保存的那样存活下来。此外,在没有血清的情况下体外培养的胚胎比在含有血清的培养基中培养的胚胎更耐低温。尽管体内产生的胚胎具有更高的耐低温性,但似乎存在种间差异。这些观察中的大多数(如果不是全部的话)都与胚胎的细胞质脂质含量相关。越来越多的脂滴与低温耐受性降低有关。这篇综述涉及修饰卵母细胞和胚胎以增加冷冻存活的策略。吩嗪乙醇硫酸盐(PES)(一种可氧化NADPH的化合物)降低了胚胎的细胞质脂质含量,甚至提高了在无血清条件下培养的牛胚胎的耐低温性。胞质脂质含量本身或细胞膜脂质组成的相关变化是造成低温耐受性差异的原因尚不清楚。通过负载胆固醇的环糊精增加精子和卵母细胞膜的胆固醇含量也似乎改善了耐低温性。虽然脂质已被强调并显得很重要,但细胞组成的非脂质方面也可能影响耐低温性,并且可以对其进行修饰以提高耐低温性。有关耐低温性变化机理的其他研究将适用于规避因不同个体动物,品种,物种,细胞类型以及诸如营养和一年四季等因素而引起的低温不耐受性。

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