从崩解的哺乳动物精子中分离纯精子头的新技术。

A R Chaudhuri, H Datta
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引用次数: 4

摘要

在低电动势毛细管电泳系统中,利用精子表面膜上电荷分布的差异现象,实现了精子头与解体的混合精子亚组分的分离。洗涤后的山羊尾部精子(黑孟加拉品种)和射精洗涤后的人类精子通过超声波分为头部,中部和尾部部分。用超声精子对Percoll和/或蔗糖进行密度梯度离心的常规技术,将其分离成各自的亚组分。在这两种情况下获得的产品都不是没有污染的。混合精子组分经上述改良毛细管电泳技术处理后,只有头部片段表现出向阴极终端迁移的高亲和力。用这种方法,大约50%的精子头被分离出来,并在2小时内以绝对纯净的形式在阴极一侧收集。在150伏(V)和1.5毫安(mA)电流下,37.5摄氏度,4厘米。采用直径1.2 mm的长毛细管。
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A novel technique for isolation of pure sperm heads from disintegrated mammalian spermatozoa.

The phenomenon of differential charge distribution on sperm surface membrane has been utilised here in a low e.m.f. (electro motive force) capillary electrophoresis system to effect separation of sperm heads from disintegrated mixed spermatozoal subfractions. Washed caudal sperm of goat (Black Bengal variety) and ejaculated washed human sperm were fractionated by sonication into head, mid-piece and tail portions. Routine techniques of density gradient centrifugation on Percoll and/or sucrose were performed with sonicated spermatozoa for separation into their respective subfractions. The products obtained were not free of contamination in either case. Mixed sperm fractions when subjected to the afore mentioned modified capillary electrophoresis technique only the head pieces exhibited high affinity for migration towards the cathode terminal. With this method around 50% of the total sperm heads were separated and collected in absolutely pure form at the cathode side within 2 hrs. at 150 volts (V) and 1.5 milliampere (mA) current at 37.5 degrees C. A 4 cm. long capillary tube with a bore size 1.2 mm. was used for this purpose.

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