The effect of nicotine on sperm-Egg interaction in the sea urchin: Polyspermy and electrical events

B. Dale, A. Santis, B. Hagström
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引用次数: 11

Abstract

We have studied some of the effects of nicotine on sea urchin eggs, spermatozoa, and their interaction using electrical recording techniques and fertilization-rate experiments. Pretreating eggs with nicotine enhances the fertilization rate, whereas this drug has an inhibitory effect on spermatozoa. Pulse-treated eggs or eggs fertilized in the presence of nicotine give rise to attenuated step depolarizations, which may be attributed to a decrease in membrane resistance (Rm) of the egg or, in the latter case, to an alteration to the spermatozoon. Concurrently, with the change in the step depolarization there is a reduction in amplitude of the fertilization potential (FP) suggesting that the cortical reaction is in some way altered. Nicotine has no effect on the Rm of fertilized eggs or oocytes, where there are no cortical granules. We suggest that nicotine alters the cortex of sea urchin eggs–possibly by causing a partial dissolution of cortical granules–which renders the eggs more receptive to spermatozoa. The reductions in amplitude of the step depolarization and the FP are consequences of this alteration.
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尼古丁对海胆精子-卵子相互作用的影响:多精和电事件
我们利用电记录技术和受精率实验研究了尼古丁对海胆卵、精子的影响及其相互作用。用尼古丁预处理卵子可以提高受精率,而该药物对精子有抑制作用。脉冲处理的卵子或在尼古丁存在下受精的卵子会产生减弱的阶跃去极化,这可能是由于卵子膜抗性(Rm)的降低,或者在后一种情况下,是由于精子的改变。同时,随着阶跃去极化的变化,受精势(FP)的振幅也在减小,这表明皮质反应在某种程度上发生了改变。尼古丁对没有皮质颗粒的受精卵或卵母细胞的Rm没有影响。我们认为,尼古丁改变了海胆卵的皮质——可能是通过引起皮质颗粒的部分溶解——从而使海胆卵更容易接受精子。阶跃去极化和FP振幅的减小是这种改变的结果。
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Genetic engineering of animals: An agricultural perspective, edited by J. Warren Evans and Alexander Hollaender; Plenum Press, New York, 1986, 328 pp. $49.50 Immunological evidence that a 305‐kilodalton vitelline envelope polypeptide isolated from sea urchin eggs is a sperm receptor Developmental capacity of mouse oocytes following maintenance of meiotic arrest in vitro Phosphoproteins are structural components of bull sperm outer dense fiber Effect of triton X‐100 on ultrastructure, reactivation, and motility characteristics of ram spermatozoa
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