Russian Research Institute of Farm Animal Genetics and Breeding-Branch of the L.K. Ernst Federal Research Center for Animal Husbandry, Pushkin, Moskovskoe Shosse, 55a, 196625 St. Petersburg, Russia.
Molecules. 2021 Sep 29;26(19):5920. doi: 10.3390/molecules26195920.
The combination of saccharides in the composition of a cryopreservation medium may represent a promising method for the preservation of the reproductive cells of male birds. In the current study, cryoprotective media with a combined composition of mono- and di-saccharides were developed. The degree of penetration of reducing saccharide molecules (maltose-Mal20 medium) and non-reducing disaccharide molecules (trehalose-Treh20 medium) from the cryoprotective medium into the cytosol of rooster spermatozoa was studied. LCM control media without disaccharides were used as the control. The number of maltose molecules penetrating from the outside into the cytosol of the spermatozoon was 1.06 × 10, and the number of trehalose molecules was 3.98 × 10. Using a combination of maltose and fructose, the progressive motility of frozen/thawed semen and the fertility rates of eggs were significantly higher (( < 0.05) 40.2% and 68.5%, respectively) than when using a combination of trehalose and fructose in a cryoprotective diluent (33.4% and 62.4%, respectively). A higher rate of chromatin integrity at the level of 92.4% was obtained when using Treh20 versus 74.5% Mal20 ( < 0.05). Maltose positively affected the preservation of frozen/thawed sperm in the genital tract of hens. On the seventh day from the last insemination when using Mal20, the fertilization of eggs was 42.6% and only 27.3% when using Treh20. Despite the same molecular weight, maltose and trehalose have different physicochemical and biological properties that determine their function and effectiveness as components of cryoprotective media.
在冷冻保护剂介质的组合中,糖的组合可能代表一种有前途的方法来保存雄性鸟类的生殖细胞。在目前的研究中,开发了具有单糖和二糖组合组成的冷冻保护剂介质。研究了从冷冻保护剂介质进入公鸡精子质溶胶的还原糖分子(麦芽糖-Mal20 介质)和非还原二糖分子(海藻糖-Treh20 介质)的穿透程度。没有二糖的 LCM 对照培养基被用作对照。从外部穿透到精子质溶胶中的麦芽糖分子数量为 1.06×10,海藻糖分子数量为 3.98×10。使用麦芽糖和果糖的组合,冷冻/解冻精液的渐进运动和卵的受精率明显更高(<0.05)分别为 40.2%和 68.5%),而在冷冻保护稀释剂中使用海藻糖和果糖的组合时分别为 33.4%和 62.4%(<0.05)。使用 Treh20 获得的染色质完整性水平更高,为 92.4%,而使用 Mal20 为 74.5%(<0.05)。麦芽糖对母鸡生殖道中冷冻/解冻精子的保存有积极影响。在最后一次授精后的第七天,使用 Mal20 时,鸡蛋的受精率为 42.6%,而使用 Treh20 时仅为 27.3%。尽管分子量相同,但麦芽糖和海藻糖具有不同的物理化学和生物学特性,这决定了它们作为冷冻保护剂介质成分的功能和有效性。