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不同运动行为的人精子鞭毛摆动力量。

Flagellar beating forces of human spermatozoa with different motility behaviors.

机构信息

University of Trieste, Trieste, 34100, Italy.

CNR-Istituto Officina dei Materiali (IOM), SS 14 km 163.5 Area Science Park Basovizza, Trieste, 34149, Italy.

出版信息

Reprod Biol Endocrinol. 2024 Mar 6;22(1):28. doi: 10.1186/s12958-024-01197-8.

Abstract

BACKGROUND

One of the causes of male infertility is associated with altered spermatozoa motility. These sperm features are frequently analyzed by image-based approaches, which, despite allowing the acquisition of crucial parameters to assess sperm motility, they are unable to provide details regarding the flagellar beating forces, which have been neglected until now.

RESULTS

In this work we exploit Fluidic Force Microscopy to investigate and quantify the forces associated with the flagellar beating frequencies of human spermatozoa. The analysis is performed on two groups divided according to the progressive motility of semen samples, as identified by standard clinical protocols. In the first group, 100% of the spermatozoa swim linearly (100% progressive motility), while, in the other, spermatozoa show both linear and circular motility (identified as 80 - 20% progressive motility). Significant differences in flagellar beating forces between spermatozoa from semen sample with different progressive motility are observed. Particularly, linear motile spermatozoa exhibit forces higher than those with a circular movement.

CONCLUSIONS

This research can increase our understanding of sperm motility and the role of mechanics in fertilization, which could help us unveil some of the causes of idiopathic male infertility.

摘要

背景

男性不育的原因之一与精子运动能力改变有关。这些精子特征通常通过基于图像的方法进行分析,尽管这些方法允许获取评估精子运动能力的关键参数,但它们无法提供有关鞭毛摆动力的详细信息,而这些信息直到现在才被忽视。

结果

在这项工作中,我们利用流体力显微镜来研究和量化与人类精子鞭毛摆动频率相关的力。该分析是在根据标准临床方案确定的精液样本的渐进运动的两个组上进行的。在第一组中,100%的精子呈直线游动(100%的渐进运动),而在另一组中,精子表现出直线和圆周运动(确定为 80%-20%的渐进运动)。具有不同渐进运动的精液样本中的精子的鞭毛摆动力存在显著差异。特别地,线性运动的精子表现出的力高于那些具有圆周运动的精子。

结论

这项研究可以增加我们对精子运动和力学在受精中的作用的理解,这有助于我们揭示一些特发性男性不育的原因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fe93/10916019/4147fd0257b8/12958_2024_1197_Fig1_HTML.jpg

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