Yi Young-Joo, Kamala-Kannan S, Lim Jeong-Muk, Oh Byung-Taek, Lee Sang-Myeong
Division of Biotechnology, College of Environmental and Bioresource Sciences, Chonbuk National University, Iksan 54596, Korea.
Safety, Environment and Life Science Institute, Chonbuk National University, Iksan 54596, Korea.
J Biomed Res. 2017 Sep 26;31(5):453-461. doi: 10.7555/JBR.31.20160115.
Difructose dianhydride IV (DFA-IV) is produced from levan, which is a natural polysaccharide that belongs to the fructan family, through the activity of levan fructotransferase (LF) derived from microorganisms. Recently, DFA-IV has been expected to have diverse applications in the food and medical industry. Here, we examined the potential application of DFA-IV forin vitro fertilization (IVF) in pigs. In the assessment of acrosomal integrity during incubation, intact acrosomal or viable spermatozoa were highly sustained in 0.1% or 0.25% DFA-IV (69.8%-70.8%,P<0.05). Reactive oxygen species (ROS) levels during sperm incubation decreased following the addition of DFA-IV, and 0.1%-0.5% DFA-IV in particular significantly decreased ROS production relative to that seen with no addition or 0.75% DFA-IV. Total fertilization (mono+ polyspermic oocyte) rate was significantly higher in the addition of 0.1% DFA-IV (94.2%) than with other concentrations (71.8%-86.7%,P<0.05). When using reduced IVF times and lower sperm numbers, we found that addition of 0.1%-0.5% DFA-IV significantly increased the fertilization rate (P<0.05). Fertilized oocytes treated with 0.1% DFA-IV exhibited higher embryonic development and blastocyst formation than those treated with other concentrations (P<0.05). Consequently, the addition of DFA-IV during IVF improved fertilization and embryonic development, suggesting the possible use of novel sugars for enhancement of assisted reproductive technology (ART) in mammals.
二果糖酐IV(DFA-IV)由果聚糖家族的天然多糖左聚糖通过微生物来源的左聚糖果糖转移酶(LF)的活性产生。最近,DFA-IV有望在食品和医药行业有多种应用。在此,我们研究了DFA-IV在猪体外受精(IVF)中的潜在应用。在孵育过程中对顶体完整性的评估中,完整顶体或有活力的精子在0.1%或0.25%的DFA-IV中能高度维持(69.8%-70.8%,P<0.05)。添加DFA-IV后,精子孵育过程中的活性氧(ROS)水平降低,特别是0.1%-0.5%的DFA-IV相对于未添加或0.75%的DFA-IV显著降低了ROS的产生。添加0.1% DFA-IV时的总受精(单精+多精卵母细胞)率(94.2%)显著高于其他浓度(71.8%-86.7%,P<0.05)。当使用缩短的IVF时间和较低的精子数量时,我们发现添加0.1%-0.5%的DFA-IV显著提高了受精率(P<0.05)。用0.1% DFA-IV处理的受精卵比用其他浓度处理的受精卵表现出更高的胚胎发育和囊胚形成率(P<0.05)。因此,在IVF过程中添加DFA-IV可改善受精和胚胎发育,这表明新型糖类可能用于增强哺乳动物的辅助生殖技术(ART)。