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Effects of surrounding fluid on motility of hyperactivated bovine sperm

机译:周围液对多动牛精子运动的影响

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摘要

Mammalian spermatozoa in organisms with internal fertilization are required to swim in the cervical and oviductal mucus, whose rheological properties differ substantially from those of water. Moreover, on the way to the oviduct, a change in sperm motility called hyperactivation may occur. In the present study, we focused on the motion characteristics of hyperactivated bovine sperm and investigated the effect of the surrounding fluid on motility. We prepared two kinds of polyacrylamide with high-viscosity non Newtonian fluid properties, similar to the actual cervical and oviductal mucus. Using semen from Japanese cattle, we evaluated curvilinear velocity (VCL), straight-line velocity (VSL), and average path velocity (VAP). Additionally, we estimated linearity (LIN), straightness (STR), and wobble (WOB) as sperm motility parameters for several surrounding fluids. We successfully induced hyperactivation of bovine sperm in high-viscosity non-Newtonian fluid. Hyperactivation resulted in an increase in VCL and a decrease in VSL. In the high-viscosity non-Newtonian fluid, the hyperactivated sperm moved in a zig-zag pattern with regularity, different from the movement observed in a diluted solution. The increase in WOB in the non-Newtonian fluid suggests that hyperactivated sperm efficiently progress along the groove that exists on the oviductal mucus wall. These results improve our understanding of the motility of bovine sperm when they undergo hyperactivation in the actual cervical and oviductal mucus. (C) 2018 Elsevier Ltd. All rights reserved.
机译:哺乳动物在具有内部施肥的生物体中的哺乳动物精子在宫颈和卵体粘液中游泳,其流变性质基本上不同于水的流变性。此外,在进入输卵管的途中,可能发生称为血管活化的精子运动的变化。在本研究中,我们专注于多动牛精子的运动特性,并研究了周围液对运动的影响。我们制备了两种具有高粘度非牛顿流体性质的聚丙烯酰胺,类似于实际的宫颈和卵体粘液。使用日本牛的精液,我们评估了曲线速度(VCL),直线速度(VSL)和平均路径速度(VAP)。另外,我们估计线性(LIN),直线度(STR)和摆动(WOB)作为用于几种周围流体的精子运动参数。我们在高粘度非牛顿液中成功地诱导了牛精子的血管活化。多动力导致VCL增加和VSL的减少。在高粘度非牛顿液中,多动精子以条形的形状的规律性,与在稀释的溶液中观察到的运动不同。非牛顿流体中的蛇的增加表明,多动精子沿着输卵管粘液壁上存在的凹槽有效地进步。这些结果改善了我们对牛精子的动力的理解,当它们在实际的宫颈和卵体粘液中进行多动激活时。 (c)2018年elestvier有限公司保留所有权利。

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