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人透明带的生化与功能特性

Biochemical and functional characterization of the human zona pellucida.

作者信息

Oehninger Sergio

机构信息

The Jones Institute for Reproductive Medicine, Department of Obstetrics and Gynecology, Eastern Virginia Medical School, 601 Colley Avenue, Norfolk, Virginia 23507, USA.

出版信息

Reprod Biomed Online. 2003 Dec;7(6):641-8. doi: 10.1016/s1472-6483(10)62086-x.

Abstract

A successful interaction between spermatozoa and the zona pellucida is critical for fertilization. This biological step reflects multiple sperm functions, including the acquisition and completion of capacitation, recognition and binding to specific zona pellucida receptors, and induction of the physiological acrosome reaction. The recognition of carbohydrate sequences by complimentary receptors has been demonstrated in gamete interaction in different animal species. It has been proposed that, in the human, sperm binding to the zona pellucida requires a 'selectin-like' interaction. The hemizona assay (a unique internally controlled bioassay that evaluates tight binding of human spermatozoa to the homologous zona pellucida) and advanced methods of carbohydrate analysis have been used to test this hypothesis. Compelling evidence exists to demonstrate that oligosaccharide recognition is also required for specific, tight human gamete binding. The induction of the acrosome reaction using the physiological inducers, i.e. the zona pellucida and progesterone, was also examined. It has also been demonstrated that there is a priming effect of the steroid on the acrosome reaction inducing capacity of the zona pellucida. These studies may allow for a better understanding of human gamete interaction in physiological and pathological situations.

摘要

精子与透明带之间的成功相互作用对受精至关重要。这一生物学步骤反映了多种精子功能,包括获能的获得与完成、对特定透明带受体的识别与结合,以及诱导生理性顶体反应。在不同动物物种的配子相互作用中,已证实互补受体对碳水化合物序列的识别。有人提出,在人类中,精子与透明带的结合需要一种“类选择素”相互作用。半透明带试验(一种独特的内部对照生物测定法,用于评估人类精子与同源透明带的紧密结合)和先进的碳水化合物分析方法已被用于检验这一假设。有令人信服的证据表明,特异性、紧密的人类配子结合也需要寡糖识别。还研究了使用生理性诱导剂,即透明带和孕酮诱导顶体反应。还已证明,类固醇对透明带诱导顶体反应的能力有启动作用。这些研究可能有助于更好地理解生理和病理情况下的人类配子相互作用。

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