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超活化运动的耦合流体-生化模型中精子从上皮脱离的动力学。

The dynamics of sperm detachment from epithelium in a coupled fluid-biochemical model of hyperactivated motility.

作者信息

Simons Julie, Olson Sarah, Cortez Ricardo, Fauci Lisa

机构信息

Center for Computational Science and Mathematics Department, Tulane University, 6823 St. Charles Ave., New Orleans, LA 70118, USA.

Department of Mathematical Sciences, Worcester Polytechnic Institute, Worcester, MA 01609, USA.

出版信息

J Theor Biol. 2014 Aug 7;354:81-94. doi: 10.1016/j.jtbi.2014.03.024. Epub 2014 Mar 29.

Abstract

Hyperactivation in mammalian sperm is characterized by a high-amplitude, asymmetric flagellar waveform. A mechanical advantage of this hyperactivated waveform has been hypothesized to be the promotion of flagellar detachment from oviductal epithelium. In order to investigate the dynamics of a free-swimming sperm׳s binding and escaping from a surface, we present an integrative model that couples flagellar force generation and a viscous, incompressible fluid. The elastic flagellum is actuated by a preferred curvature model that depends upon an evolving calcium profile along its length. In addition, forces that arise due to elastic bonds that form and break between the flagellar head and the surface are accounted for. As in recent laboratory experiments, we find that a hyperactive waveform does result in frequent detaching and binding dynamics that is not observed for symmetric flagellar beats. Moreover, we demonstrate that flagellar behavior depends strongly on the assumptions of the bond model, suggesting the need for more experimental investigation of the biochemistry of epithelial bonding and the shedding of binding proteins on the sperm head.

摘要

哺乳动物精子的超激活以高振幅、不对称的鞭毛波形为特征。据推测,这种超激活波形的一个机械优势是促进鞭毛与输卵管上皮分离。为了研究自由游动精子与表面结合和脱离的动力学,我们提出了一个综合模型,该模型将鞭毛力的产生与粘性、不可压缩流体耦合起来。弹性鞭毛由一个优先曲率模型驱动,该模型取决于沿其长度不断变化的钙分布。此外,还考虑了鞭毛头部与表面之间形成和断裂的弹性键所产生的力。正如最近的实验室实验一样,我们发现超激活波形确实会导致频繁的脱离和结合动力学,而对称鞭毛摆动则不会出现这种情况。此外,我们证明鞭毛行为在很大程度上取决于键模型的假设,这表明需要对上皮结合的生物化学以及精子头部结合蛋白的脱落进行更多的实验研究。

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