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Mechanical tuning of mammalian sperm behaviour by hyperactivation, rheology and substrate adhesion: a numerical exploration

机译:通过过度活化,流变学和底物粘附力对哺乳动物精子行为进行机械调节:数值探索

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摘要

The great mammalian sperm race encounters numerous microenvironments to which sperm must adapt and a fundamental sperm response is the change in its waveform both due to fluid rheology and due to capacitation, with the latter associated with a hyperactivated beat pattern. Hence, in this modelling study, we examine the effect of different flagellar waveforms for sperm behaviour near adhesive substrates, which are representative of epithelia in female tract sperm reservoirs and the zona pellucida, which surrounds the mammalian egg. On contact with an adhesive surface, virtual sperm rotate to become nearly tangential with the surface, as generally observed. Hyperactivation also induces many effects: sperm exert greater forces on the substrate and periodically tug way from adhesions under circumstances reflecting binding at sperm reservoirs, but with extensive fluid elasticity, as found in the cumulus surrounding the zona pellucida, sperm instead continually push into the substrate. Furthermore, with weak adhesion, rheological media increase the duration hyperactivated sperm remain in the proximity of a substrate. More generally such results predict that both changes due to hyperactivation of the flagellar waveform and the rheology of the surrounding medium provide a means of tuning sperm behaviour near, or attached to, adhesive substrates.
机译:伟大的哺乳动物精子种族遇到了许多精子必须适应的微环境,基本的精子反应是由于流体流变学和获能所引起的波形变化,后者与高活化搏动模式有关。因此,在此建模研究中,我们检查了不同鞭毛波形对粘着基质附近的精子行为的影响,这些基质代表女性束缚精子上皮的上皮细胞和围绕哺乳动物卵的透明带。通常观察到,在与粘性表面接触时,虚拟精子旋转成与表面几乎相切。过度活化还引起许多作用:精子在底物上施加更大的力,并在反映精子储库结合力的情况下周期性地从粘连中拉出,但是具有广泛的流体弹性,如透明带周围的积云中所见,精子不断地推入底物中。此外,由于粘附力较弱,流变介质会增加高活化精子保留在基质附近的时间。更一般地,这样的结果预测,由于鞭毛波形的过度活化和周围介质的流变性两者的变化都提供了一种调节或靠近粘附基质的精子行为的手段。

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