Institute of Biochemistry and Biophysics (IBB), University of Tehran, Tehran, Iran.
Department of Embryology, Reproduction Biomedicine Research Center, Royan Institute for Reproductive Biomedicine, ACER, Tehran, Iran.
Sci Rep. 2019 Jul 11;9(1):10066. doi: 10.1038/s41598-019-46424-0.
The application of ultrasonic vibration was performed to modify the water molecules as the main compositions of the freezing medium used for human sperm cryopreservation. Different time periods of ultrasonic vibration (ULV) at the frequency of 28 kHz were applied for the evaluation of physicochemical properties of the water molecules. The most significant bubble size, zeta potential, and pH were obtained for the water molecules exposed to ultrasonic vibrations for 18 minutes and this time period was selected for further experiments due to the optimum results. In the next stage, semen samples were diluted with freezing medium containing ULV-exposed water and then cryopreserved. All the semen parameters were significantly reduced in cryopreserved groups as compared with the fresh control group. The highest percentage of total and progressive motility, viability, membrane and DNA integrity, and mitochondrial membrane potential were observed in frozen ULV compared with the frozen control. The rate of apoptosis in frozen ULV was significantly lower than that of in the frozen control. Furthermore, the gene expression ratios of α- and β-tubulins were significantly increased during cryopreservation, while the expression ratio of the tubulin polymerization promoting protein (TPPP) gene was decreased. Similar results were also observed when the protein levels of the genes mentioned earlier were evaluated by the ELISA method. Therefore, the changes in physicochemical properties of the freezing medium of human sperm cryopreservation using ULV can improve the quality of frozen products.
应用超声波振动来改变冷冻介质中的水分子,这些水分子是人类精子冷冻保存的主要成分。不同时间段的超声波振动(ULV)在 28kHz 的频率下应用于评估水分子的物理化学性质。暴露于超声波振动 18 分钟的水分子获得了最大的气泡大小、zeta 电位和 pH 值,由于结果最佳,因此选择此时间段进行进一步的实验。在下一阶段,将精液样品用含有 ULV 暴露水的冷冻介质稀释,然后进行冷冻保存。与新鲜对照组相比,冷冻保存组的所有精液参数均显著降低。与冷冻对照组相比,冷冻 ULV 组的总运动和前向运动、活力、膜和 DNA 完整性以及线粒体膜电位的百分比最高。冷冻 ULV 中的细胞凋亡率明显低于冷冻对照组。此外,在冷冻保存过程中,α-和β-微管蛋白的基因表达比值显著增加,而微管蛋白聚合促进蛋白(TPPP)基因的表达比值降低。通过 ELISA 方法评估上述基因的蛋白水平时,也观察到了类似的结果。因此,使用 ULV 改变人类精子冷冻保存冷冻介质的物理化学性质可以提高冷冻产品的质量。