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使用冷冻精子进行深宫腔内人工授精在白鲸(Delphinapterus leucas)中的应用。

Deep intra-uterine artificial inseminations using cryopreserved spermatozoa in beluga (Delphinapterus leucas).

机构信息

SeaWorld and Busch Gardens Reproductive Research Center, SeaWorld Parks and Entertainment Corporation, San Diego, CA 92109, USA.

出版信息

Theriogenology. 2010 Oct 1;74(6):989-1001. doi: 10.1016/j.theriogenology.2010.04.028. Epub 2010 Jun 8.

DOI:10.1016/j.theriogenology.2010.04.028
PMID:20570326
Abstract

Artificial insemination (AI) with liquid-stored spermatozoa and sperm cryopreservation using directional freezing (DF) have been successful in the beluga. This study built on this foundation to develop a deep intra-uterine AI technique with frozen-thawed semen in beluga. Forty-two ejaculates from one male were cryopreserved using DF technology and subsequently used for 10 insemination attempts with seven females. Percentage pre- and post-thaw progressive motility and viability were (mean +/- SD) 73.0 +/- 12.2, 38.4 +/- 8.8, 88.0 +/- 0.1, and 59.3 +/- 15.7%, respectively. A series of GnRH injections (3 x 250 microg, IV, 1.5 to 2 h apart) were used to induce ovulation, once a growing follicle >2.5 cm in diameter was visualized via trans-abdominal ultrasonography. Artificial insemination was performed at 30.1 +/- 3.8 h post-initial GnRH injection with semen deposited in the uterine horn, 92.6 +/- 16.2 cm beyond the genital opening using a flexible endoscope. The external cervical os (cEOS) was located beyond a series of 5 to 10 vaginal rings, 44.8 +/- 9.3 cm from the external genital opening. The internal bifurcation of the uterus was 27 +/- 6.8 cm beyond the cEOS. Ovulation occurred at 8.5 +/- 7.6 h post-AI. Two of 10 inseminations (20%) resulted in pregnancy. The first pregnancy resulted in twins; both calves were born 442 d after AI, with one surviving. The second pregnancy is ongoing. These findings represent the first successful application of AI using frozen-thawed semen in beluga, and are important examples of how assisted reproductive technologies can provide tools for the global management of threatened species.

摘要

采用液体储存精子的人工授精(AI)和使用定向冷冻(DF)的精子冷冻保存已在白鲸中获得成功。本研究在此基础上,开发了一种使用冷冻精液的白鲸深部宫内 AI 技术。使用 DF 技术对一只雄性的 42 份精液进行冷冻保存,随后在 7 只雌性身上进行了 10 次授精尝试。冻融前和冻融后的前向运动精子百分率和活力分别为(平均值 +/- SD)73.0 +/- 12.2、38.4 +/- 8.8、88.0 +/- 0.1 和 59.3 +/- 15.7%。使用一系列 GnRH 注射(3 x 250 微克,IV,间隔 1.5 至 2 小时)诱导排卵,一旦通过经腹超声检查观察到直径>2.5 厘米的生长卵泡。在初始 GnRH 注射后 30.1 +/- 3.8 小时进行人工授精,将精液注入子宫角,距离生殖开口 92.6 +/- 16.2 厘米,使用柔性内窥镜。外部宫颈口(cEOS)位于一系列 5 至 10 个阴道环之外,距离外部生殖开口 44.8 +/- 9.3 厘米。子宫内分叉距离 cEOS 27 +/- 6.8 厘米。授精后 8.5 +/- 7.6 小时发生排卵。10 次授精中有 2 次(20%)导致妊娠。第一次妊娠导致双胞胎;两只小牛均在 AI 后 442 天出生,一只存活。第二次妊娠仍在继续。这些发现代表了首次在白鲸中成功应用冷冻精液的 AI,也是辅助生殖技术如何为濒危物种的全球管理提供工具的重要例证。

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