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人精子 CatSper Ca2+ 通道受输卵管配体和内分泌干扰化学物质的协同激活。

Synergistic activation of CatSper Ca2+ channels in human sperm by oviductal ligands and endocrine disrupting chemicals.

机构信息

Center of Reproductive Medicine and Andrology, University Hospital Münster, Münster, Germany.

Department of Growth and Reproduction, Copenhagen University Hospital, Rigshospitalet, Copenhagen, Denmark.

出版信息

Hum Reprod. 2018 Oct 1;33(10):1915-1923. doi: 10.1093/humrep/dey275.

Abstract

STUDY QUESTION

Does the chemosensory activation of CatSper Ca2+ channels in human sperm give rise to additive, sub-additive or even synergistic actions among agonists?

SUMMARY ANSWER

We show that oviductal ligands and endocrine disrupting chemicals (EDCs) activate human CatSper highly synergistically.

WHAT IS KNOWN ALREADY

In human sperm, the sperm-specific CatSper channel controls the intracellular Ca2+ concentration and, thereby, several crucial stages toward fertilization. CatSper is activated by oviductal ligands and structurally diverse EDCs. The chemicals mimic the action of the physiological ligands, which might interfere with the precisely coordinated sequence of events underlying fertilization.

STUDY DESIGN, SIZE, DURATION: For both oviductal ligands and EDCs, we examined in quantitative terms whether stimulation of human sperm in vitro with mixtures results in additive, sub-additive or synergistic actions.

PARTICIPANTS/MATERIALS, SETTING, METHODS: We studied activation of CatSper in sperm of healthy volunteers, using kinetic Ca2+ fluorimetry and patch-clamp recordings. The combined action of progesterone and prostaglandins and of the EDCs benzylidene camphor sulfonic acid (BCSA) and α-Zearalenol was evaluated by curve-shift analysis, curvilinear isobolographic analysis and the combination-index method.

MAIN RESULTS AND THE ROLE OF CHANCE

Analysis of the action of progesterone/prostaglandin and BCSA/α-Zearalenol mixtures in human sperm by fluorimetry revealed that the oviductal ligands and EDCs both evoke Ca2+ influx via CatSper in a highly synergistic fashion. Patch-clamp recordings of CatSper currents in human sperm corroborated the synergistic ligand-activation of the channel.

LIMITATIONS, REASONS FOR CAUTION: This is an in vitro study. Future studies have to assess the physiological relevance in vivo.

WIDER IMPLICATIONS OF THE FINDINGS

These findings indicate that the fertilization process is orchestrated by multiple oviductal CatSper agonists that act in concert to control the behavior of sperm. Moreover, our results substantiate the concerns regarding the negative impact of EDCs on male reproductive health. So far, safety thresholds like the "No Observed Adverse Effect Level (NOAEL)" or "No Observed Effect Concentration (NOEC)" are set for individual EDCs. Our finding that EDCs act synergistically in human sperm challenges the validity of this procedure.

STUDY FUNDING/COMPETING INTEREST(S): This work was supported by the German Research Foundation (SFB 645; CRU326), the Cells-in-Motion (CiM) Cluster of Excellence, Münster, (FF-2016-17), the 'Innovative Medical Research' of the University of Münster Medical School (BR121507), an EDMaRC research grant from the Kirsten and Freddy Johansen's Foundation, and the Innovation Fund Denmark (InnovationsFonden; 14-2013-4). The authors have no competing financial interests.

摘要

研究问题

人精子中的 CatSper Ca2+通道的化学感觉激活是否会导致激动剂之间产生附加、亚相加或甚至协同作用?

总结答案

我们表明,输卵管配体和内分泌干扰化学物质(EDC)与人 CatSper 高度协同激活。

已知事实

在人精子中,精子特异性 CatSper 通道控制细胞内 Ca2+浓度,从而控制受精的几个关键阶段。CatSper 被输卵管配体和结构多样的 EDC 激活。这些化学物质模拟生理配体的作用,这可能会干扰受精过程中精确协调的事件序列。

研究设计、大小和持续时间:对于输卵管配体和 EDC,我们以定量的方式检查了人精子在体外混合刺激时是否会产生附加、亚相加或协同作用。

参与者/材料、设置、方法:我们使用动力学 Ca2+荧光法和膜片钳记录研究了健康志愿者精子中的 CatSper 激活。通过曲线移位分析、曲线等比分析和组合指数法评估孕激素和前列腺素以及 EDC 苯并亚甲基樟脑磺酸(BCSA)和α-Zearalenol 的联合作用。

主要结果和机会的作用

通过荧光法分析人精子中孕激素/前列腺素和 BCSA/α-Zearalenol 混合物的作用表明,输卵管配体和 EDC 均以高度协同的方式通过 CatSper 引发 Ca2+内流。人精子中 CatSper 电流的膜片钳记录证实了通道配体的协同激活。

局限性、谨慎的原因:这是一项体外研究。未来的研究必须评估体内的生理相关性。

研究结果的更广泛意义

这些发现表明,受精过程由多个输卵管 CatSper 激动剂协调控制,这些激动剂协同作用控制精子的行为。此外,我们的结果证实了对环境内分泌干扰化学物质对男性生殖健康负面影响的担忧。到目前为止,像“无观察到不良效应水平(NOAEL)”或“无观察到效应浓度(NOEC)”这样的安全阈值是针对单个内分泌干扰化学物质设定的。我们发现内分泌干扰化学物质在人精子中协同作用,这对该程序的有效性提出了挑战。

研究资金/竞争利益:这项工作得到了德国研究基金会(SFB 645;CRU326)、细胞运动(CiM)卓越集群、明斯特(FF-2016-17)、明斯特大学医学院“创新医学研究”(BR121507)、克尔斯滕和弗雷迪·约翰森基金会的 EDMaRC 研究赠款以及丹麦创新基金(InnovationsFonden;14-2013-4)的支持。作者没有竞争财务利益。

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