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人类精子通过协作在竞争途径上穿越高度粘稠的区域,从而实现受精。

Human sperm cooperate to transit highly viscous regions on the competitive pathway to fertilization.

机构信息

Department of Mechanical and Industrial Engineering, University of Toronto, Toronto, ON, M5S 3G8, Canada.

CCRM IVF Network, Lone Tree, CO, 80124, USA.

出版信息

Commun Biol. 2023 May 6;6(1):495. doi: 10.1038/s42003-023-04875-2.

Abstract

Human sperm compete for fertilization. Here, we find that human sperm, unexpectedly, cooperate under conditions mimicking the viscosity contrasts in the female reproductive tract. Sperm attach at the head region to migrate as a cooperative group upon transit into and through a high viscosity medium (15-100 cP) from low viscosity seminal fluid. Sperm groups benefit from higher swimming velocity, exceeding that of individual sperm by over 50%. We find that sperm associated with a group possess high DNA integrity (7% fragmentation index) - a stark contrast to individual sperm exhibiting low DNA integrity (> 50% fragmentation index) - and feature membrane decapacitation factors that mediate sperm attachment to form the group. Cooperative behaviour becomes less prevalent upon capacitation and groups tend to disband as the surrounding viscosity reduces. When sperm from different male sources are present, related sperm preferentially form groups and achieve greater swimming velocity, while unrelated sperm are slowed by their involvement in a group. These findings reveal cooperation as a selective mode of human sperm motion - sperm with high DNA integrity cooperate to transit the highly viscous regions in the female tract and outcompete rival sperm for fertilization - and provide insight into cooperation-based sperm selection strategies for assisted reproduction.

摘要

人类精子在竞争受精。在这里,我们发现出人意料的是,在模仿女性生殖道粘度差异的条件下,人类精子能够合作。精子附着在头部区域,当它们从低粘度的精液过渡到高粘度的介质(15-100cP)时,会以合作的群体形式迁移。精子群体受益于更高的游动速度,超过单个精子超过 50%。我们发现,与群体相关的精子具有高的 DNA 完整性(7%的碎片化指数)-这与单个精子表现出的低 DNA 完整性(>50%的碎片化指数)形成鲜明对比-并且具有介导精子附着形成群体的脱帽膜因素。在获能后,合作行为变得不那么普遍,并且当周围的粘度降低时,群体往往会解散。当来自不同男性来源的精子存在时,相关的精子优先形成群体并获得更高的游动速度,而无关的精子由于参与群体而受到阻碍。这些发现揭示了合作是人类精子运动的一种选择性模式——具有高 DNA 完整性的精子合作以通过女性生殖道中的高粘度区域,并在受精过程中击败竞争精子——并为辅助生殖中的基于合作的精子选择策略提供了深入了解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bed7/10164193/40209a729d40/42003_2023_4875_Fig1_HTML.jpg

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