Combination of density gradient centrifugation and swim-up methods effectively decreases morphologically abnormal sperms

M. Yamanaka, K. Tomita, S. Hashimoto, Hiroshi Matsumoto, M. Satoh, H. Kato, Y. Hosoi, M. Inoue, Y. Nakaoka, Y. Morimoto
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引用次数: 29

Abstract

Density gradient centrifugation (DGC) and swim-up techniques have been reported for semen preparation in assisted reproductive techniques in humans. We investigated whether semen preparation using a combination of DGC and swim-up techniques could effectively decrease morphologically abnormal human sperms at the ultrastructural level. Semen samples were obtained from 16 infertile males and fractionated by swim-up following DGC. Ultrastructural abnormalities of sperms obtained from original semen, lower layer of swim-up following DGC, and upper layer of swim-up following DGC were analyzed by transmission electron microscopy. The correlation among ultrastructural head abnormality in sperms from the upper layer of swim-up, fertilization in in vitro fertilization, and pregnancy after embryo transfer was also investigated. Furthermore, sperms with DNA fragmentation in the samples processed via a combination of DGC and swim-up was assessed in a sperm chromatin structure assay. Ultrastructural abnormalities in sperm heads and tails in the upper layer after swim-up following DGC was the lowest among the three groups. Sperms with nuclear vacuoles were the most difficult to eliminate using a combination of DGC and swim-up in all types of head abnormalities. A negative correlation was confirmed between the fertilization rates of intracytoplasmic sperm injection and head abnormality of sperms obtained from the upper layer of the swim-up following DGC. Sperms with DNA fragmentation were effectively decreased using the combination of two techniques. In conclusion, the combination of DGC and swim-up effectively decreased the number of sperms with ultrastructural abnormalities both in the head and in the tail. However, sperms with ultrastructural abnormalities that cannot be completely decreased using a combination of DGC and swim-up may impair fertilization in some cases of intracytoplasmic sperm injection.
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密度梯度离心与游动法相结合,可有效减少形态异常精子
密度梯度离心(DGC)和游动技术已被报道用于人类辅助生殖技术中的精液制备。我们研究了DGC和游泳技术相结合的精液制备是否能在超微结构水平上有效地减少形态异常的人类精子。从16名不育男性中获得精液样本,并在DGC后进行游泳分馏。用透射电镜分析原始精液、DGC后游上下层、DGC后游上上层精子的超微结构异常。并探讨了上游精子头部超微结构异常与体外受精和胚胎移植后妊娠的关系。此外,通过DGC和游泳组合处理的样品中DNA片段的精子在精子染色质结构测定中被评估。DGC后上浮后上层精子头尾超微结构异常最低。在所有类型的头部异常中,使用DGC和swim-up的组合最难消除带有核空泡的精子。卵胞浆内单精子注射受精率与DGC后上层精子头部异常呈负相关。两种技术的结合有效地减少了DNA断裂的精子。综上所述,DGC和游泳相结合有效地减少了头部和尾部超微结构异常的精子数量。然而,在一些卵胞浆内单精子注射的病例中,超微结构异常的精子不能通过DGC和swim-up的组合完全减少。
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