家养哺乳动物的输卵管:它们的生理活动有多重要?

Ronald Henry Fraser Hunter
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引用次数: 102

摘要

从历史的角度出发,本文考察了家畜和人类输卵管功能的不同生理方面。显微外科实验描述了峡部在施加精子梯度到受精部位的作用。切除峡部,然后重新吻合管的剩余部分,在交配动物中产生多精子的高发生率。扫描电子显微镜和外科研究表明,精子在排卵前被捕获并储存在峡部的尾端,即所谓的功能性精子库。精子头与输卵管内微绒毛或纤毛之间有特定的粘连接触。进一步的实验表明,通过在输卵管浆膜层下显微注射黄体酮油溶液,可以将大量有能力的精子从排卵前结合中释放出来:在适当的时间,这种处理会导致多精子受精的高发生率。排卵前在尾峡处的活跃精子结合可防止因多次交配而导致的异常受精。对生殖系统的温度进行了评估,发现在精子储存的排卵期前,尾端峡比壶腹更冷。最后,报道了输卵管内流体微环境的存在,并研究了悬浮积云冠细胞在放大受精卵信号中的作用。还考虑了输卵管液体对胚胎基因表达的影响——如果此类液体进入子宫腔,这种影响可能会进一步施加。
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The Fallopian tubes in domestic mammals: how vital is their physiological activity?

Set in an historical perspective, this essay examines diverse physiological aspects of Fallopian tube function in domestic animals and man. Microsurgical experiments are described that established the role of the isthmus in imposing a sperm gradient up to the site of fertilisation. Resection of the isthmus followed by reanastomosis of the remaining portions of the tube generated a high incidence of polyspermy in mated animals. Scanning electron microscopy and surgical studies revealed that spermatozoa were arrested and stored in the caudal portion of the isthmus before ovulation, the so-called functional sperm reservoir. There were specific adhesion contacts between the sperm head and endosalpingeal microvilli or cilia. Further experiments indicated that very large numbers of competent spermatozoa could be released from pre-ovulatory binding by microinjections of a solution of progesterone in oil under the serosal layer of the tube: when suitably timed, such treatment led to a high incidence of polyspermic fertilisation. Avid sperm binding in the caudal isthmus before ovulation prevents myosalpingeal activity leading to abnormal fertilisation, as might occur with multiple mating. Temperatures in the reproductive system were assessed and the caudal isthmus was found to be cooler than the ampulla during the pre-ovulatory phase of sperm storage. Finally, the existence of fluid microenvironments within the Fallopian tubes was reported, and the role of suspended cumulus-corona cells in amplifying signals from the zygote examined. An impact of Fallopian tube fluids on embryonic gene expression was also considered--an influence that may be further imposed if such fluids have access to the uterine lumen.

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