Suppr超能文献

仓鼠精子穿透卵丘细胞基质过程中的运动学

Kinematics of hamster sperm during penetration of the cumulus cell matrix.

作者信息

Drobnis E Z, Yudin A I, Cherr G N, Katz D F

机构信息

Department of Obstetrics and Gynecology, School of Medicine, University of California, Davis 95616.

出版信息

Gamete Res. 1988 Dec;21(4):367-83. doi: 10.1002/mrd.1120210406.

Abstract

During capacitation, mammalian spermatozoa gain the ability to penetrate the cumulus cell matrix (CCM). The role of hyperactivated motility for this capacity is uncertain. In the present study, hamster sperm were observed during penetration and progression through the CCM, and flagellar beat patterns were quantitated by characterization of the underlying flagellar bends. Small numbers of sperm were added to cumulus masses slightly compressed on a slide (150 micron depth), and penetration was videorecorded using interference contrast optics. During penetration of the cumulus surface, sperm did not generate the large flagellar bends and asymmetric beats that are hallmarks of hyperactivation in low viscosity media. Instead, they entered slowly using high-frequency, low-amplitude sinusoidal flagellar motions. Within the CCM, sperm continued to move slowly, and they exhibited three distinct patterns of motility. The first was sinusoidal, produced by alternating, propagated bends: principal bends (PB) moved the head away from the beat midline, with the convex edge of the head leading, and reverse bends (RB) had the opposite curvature. The second pattern was asymmetric and sinusoidal: an extreme RB developed in the distal flagellum, was propagated distally, and was followed by a PB of less curvature. The third motility pattern was a hatchet-like stroke of the sperm head which resulted when an extreme, nonpropagated PB developed slowly in the proximal midpiece, and was released rapidly. In this mode there were no reverse bends, and sperm did not progress. There were subpopulations of capacitating sperm in free-swimming medium which had these same bend types and motility patterns, suggesting that qualitative flagellar movement may not change during CCM penetration. Sperm velocity in the CCM was not strongly correlated with flagellar beat kinematics, suggesting local heterogeneity in cumulus mechanical resistance and/or differences in interaction of the matrix with the surfaces of individual sperm. An effective viscosity of the cumulus near its border was estimated to be of the order of 1-4 P.

摘要

在获能过程中,哺乳动物精子获得穿透卵丘细胞基质(CCM)的能力。超活化运动对这种能力的作用尚不确定。在本研究中,观察了仓鼠精子穿透和穿过CCM的过程,并通过表征鞭毛的基本弯曲来定量鞭毛摆动模式。将少量精子添加到在载玻片上轻微压缩的卵丘团块中(深度150微米),并使用干涉对比光学显微镜对穿透过程进行视频记录。在穿透卵丘表面时,精子不会产生在低粘度介质中超活化的标志性大鞭毛弯曲和不对称摆动。相反,它们以高频、低振幅的正弦鞭毛运动缓慢进入。在CCM内,精子继续缓慢移动,并表现出三种不同的运动模式。第一种是正弦模式,由交替传播的弯曲产生:主弯曲(PB)使头部远离摆动中线,头部的凸边在前,反向弯曲(RB)则具有相反的曲率。第二种模式是不对称正弦模式:远端鞭毛中出现极端RB,向远端传播,随后是曲率较小的PB。第三种运动模式是精子头部的斧状冲程,这是由于近端中段缓慢出现极端的、不传播的PB并迅速释放所致。在这种模式下没有反向弯曲,精子也不会前进。在自由游动介质中获能的精子亚群具有相同的弯曲类型和运动模式,这表明在穿透CCM过程中,鞭毛的定性运动可能不会改变。精子在CCM中的速度与鞭毛摆动运动学没有强烈相关性,这表明卵丘机械阻力存在局部异质性和/或基质与单个精子表面相互作用存在差异。估计卵丘边界附近的有效粘度约为1 - 4泊。

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验