Amstislavsky Sergei, Mokrousova Valentina, Brusentsev Eugeny, Okotrub Konstantin, Comizzoli Pierre
1 Department of Cryopreservation and Reproductive Technologies, Institute of Cytology and Genetics, Siberian Branch of the Russian Academy of Sciences, Novosibirsk, Russia.
2 Department of Natural Sciences, Novosibirsk State University, Novosibirsk, Russia.
Biopreserv Biobank. 2019;17(1):76-83. doi: 10.1089/bio.2018.0039. Epub 2018 Sep 25.
Lipids are among the most abundant and essential cell components. Specifically, cytoplasmic lipid droplets (LDs) play crucial roles in cellular energy homeostasis. The foci of this review are (1) the composition and roles of lipids during oocyte maturation and early embryonic development, (2) possible causes of cryoinjuries in lipid-rich oocytes/embryos, and (3) ways to overcome these detrimental effects. Recent reports show that LDs in oocytes and embryos are not only energy depots but also are active organelles, possessing many other functions. In addition, analysis of the current literature confirms that lipid phase transition followed by phase separation during cryopreservation is one of the major causes of cryodamage in lipid-rich oocytes and embryos. While LDs and cell membranes are sensitive to chilling and freezing conditions, recent advances in vitrification and delipidation of lipid-rich oocytes and embryos partly mitigate cryodamage. The multidisciplinary approach is critical to reveal mechanisms underlying cryodamage and provides a theoretical basis for optimal cryopreservation of lipid-rich oocytes/embryos.
脂质是最丰富且必不可少的细胞成分之一。具体而言,细胞质脂滴(LDs)在细胞能量稳态中发挥着关键作用。本综述的重点是:(1)脂质在卵母细胞成熟和早期胚胎发育过程中的组成及作用;(2)富含脂质的卵母细胞/胚胎发生冷冻损伤的可能原因;(3)克服这些有害影响的方法。最近的报告表明,卵母细胞和胚胎中的脂滴不仅是能量储存库,还是活跃的细胞器,具有许多其他功能。此外,对当前文献的分析证实,冷冻保存过程中脂质相变随后发生相分离是富含脂质的卵母细胞和胚胎冷冻损伤的主要原因之一。虽然脂滴和细胞膜对冷却和冷冻条件敏感,但富含脂质的卵母细胞和胚胎的玻璃化和去脂方面的最新进展部分减轻了冷冻损伤。多学科方法对于揭示冷冻损伤的潜在机制至关重要,并为富含脂质的卵母细胞/胚胎的最佳冷冻保存提供了理论基础。