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综述:输卵管的生物力学特性与其生育功能的相关性

A Review: Biomechanical Aspects of the Fallopian Tube Relevant to its Function in Fertility.

作者信息

Seraj Hasan, Nazari Mohammad Ali, Atai Ali Asghar, Amanpour Saeid, Azadi Mojtaba

机构信息

School of Mechanical Engineering, College of Engineering, University of Tehran, Tehran, Iran.

Department of Speech and Cognition, CNRS UMR 5216, Grenoble Institute of Technology, Grenoble, France.

出版信息

Reprod Sci. 2024 Jun;31(6):1456-1485. doi: 10.1007/s43032-024-01479-x. Epub 2024 Mar 12.

Abstract

The fallopian tube (FT) plays a crucial role in the reproductive process by providing an ideal biomechanical and biochemical environment for fertilization and early embryo development. Despite its importance, the biomechanical functions of the FT that originate from its morphological aspects, and ultrastructural aspects, as well as the mechanical properties of FT, have not been studied nor used sufficiently, which limits the understanding of fertilization, mechanotrasduction, and mechanobiology during embryo development, as well as the replication of the FT in laboratory settings for infertility treatments. This paper reviews and revives valuable information on human FT reported in medical literature in the past five decades relevant to the biomechanical aspects of FT. In this review, we summarized the current state of knowledge concerning the morphological, ultrastructural aspects, and mechanical properties of the human FT. We also investigate the potential arising from a thorough consideration of the biomechanical functions and exploring often neglected mechanical aspects. Our investigation encompasses both macroscopic measurements (such as length, diameter, and thickness) and microscopic measurements (including the height of epithelial cells, the percentage of ciliated cells, cilia structure, and ciliary beat frequency). Our primary focus has been on healthy women of reproductive age. We have examined various measurement techniques, encompassing conventional metrology, 2D histological data as well as new spatial measurement techniques such as micro-CT.

摘要

输卵管(FT)通过为受精和早期胚胎发育提供理想的生物力学和生化环境,在生殖过程中发挥着关键作用。尽管其很重要,但源自其形态学、超微结构以及机械性能方面的输卵管生物力学功能尚未得到充分研究和利用,这限制了对胚胎发育过程中受精、机械转导和力学生物学的理解,以及在实验室环境中复制输卵管用于不孕症治疗的能力。本文回顾并重现了过去五十年来医学文献中报道的有关输卵管生物力学方面的有价值信息。在这篇综述中,我们总结了关于人类输卵管形态学、超微结构以及机械性能的当前知识状态。我们还研究了全面考虑生物力学功能以及探索常常被忽视的机械方面所带来的潜力。我们的研究包括宏观测量(如长度、直径和厚度)和微观测量(包括上皮细胞高度、纤毛细胞百分比、纤毛结构和纤毛摆动频率)。我们主要关注育龄健康女性。我们研究了各种测量技术,包括传统计量学、二维组织学数据以及诸如微型计算机断层扫描等新的空间测量技术。

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