Roberto Puglisi, Valeria Bornaghi, Alex Severgnini, Roberta Vanni, Donatella Balduzzi, Andrea Galli
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Cushioned centrifugation also increased (P < 0.001) spermatozoa with polarized mitochondrial membranes (46.8 ± 11.4% vs. 43.4 ± 10.6%) and intact plasmatic/acrosomal membranes (41.0 ± 11.2% vs. 38.5 ± 11.3%) of frozen/thawed sperm, with respect to not cushioned centrifugation. However, no effects of the centrifugation were evidenced for classical kinetic parameters. Flat straws had negative effect for almost all the parameters analyzed at thawing (T,) and after 3 hours' incubation at 37⁰C (T₁), while the Drum method with Paillettes did not show appreciable affects. The variability among stallions was relevant (5% to 69% variance for kinetics and membrane status), while the variability among ejaculates was minor (9% to 28%). Factorial analysis identified three relevant, factors with different informational content: Factor 1 represented by membranes status, Factor 2 by kinetics estimated at T₀, and Factor 3 by kinetics estimated at T₁. 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引用次数: 0
摘要
将13匹种马的36份新鲜精液分成两卷,分别用常规和鼓和定向两种原型方法进行离心和冷冻,常规和鼓使用0.5 ml吸管,鼓和定向使用2 ml扁平吸管。缓冲离心使总运动性增加(61.2±18.6% vs. 57.5±18.6%);P < 0.001)和平均流速(84.3±15.6% vs. 83.2±13.8%;P < 0.05),与无缓冲离心相比,在冷冻前在4⁰C冷却精子90分钟后估计。缓冲离心也增加了(P < 0.001)极化线粒体膜的精子(46.8±11.4%比43.4±10.6%)和完整的浆体/顶体膜(41.0±11.2%比38.5±11.3%)冷冻/解冻精子。然而,经典动力学参数没有证明离心的影响。在解冻(T,)和37⁰C (T₁)孵育3小时后,扁平吸管对几乎所有分析的参数都有负面影响,而带有小片的鼓法没有显示出明显的影响。种马之间的差异是相关的(动力学和膜状态的差异为5%至69%),而射精之间的差异较小(9%至28%)。析因分析确定了三个具有不同信息含量的相关因素:由膜状态代表的因素1,由T 0估计的动力学代表的因素2,以及由T 1估计的动力学代表的因素3。缓冲离心对冻/解冻精子的膜状态有一定的改善作用,但扁吸管的使用还有待改进。
Cryopreservation of stallion semen: laboratory assessment of sperm injuries after cushioned centrifugation and freezing with conventional and alternative directional freezing methods.
Fresh 36 ejaculates of 13 stallions were split into two volumes, centrifuged with and without cushion and frozen with Conventional and two prototype, Drum and Directional, methods using 0.5 ml straws for the Conventional and Drum, and 2 ml flat straws for both the Drum and Directional. Cushioned centrifugation increased total motility (61.2 ± 18.6% vs. 57.5 ± 18.6%; P < 0.001) and mean velocity (84.3 ± 15.6% vs. 83.2 ± 13.8%; P < 0.05) when compared to not cushioned centrifugation, estimated after cooling the sperm at 4⁰C for 90 min before freezing. Cushioned centrifugation also increased (P < 0.001) spermatozoa with polarized mitochondrial membranes (46.8 ± 11.4% vs. 43.4 ± 10.6%) and intact plasmatic/acrosomal membranes (41.0 ± 11.2% vs. 38.5 ± 11.3%) of frozen/thawed sperm, with respect to not cushioned centrifugation. However, no effects of the centrifugation were evidenced for classical kinetic parameters. Flat straws had negative effect for almost all the parameters analyzed at thawing (T,) and after 3 hours' incubation at 37⁰C (T₁), while the Drum method with Paillettes did not show appreciable affects. The variability among stallions was relevant (5% to 69% variance for kinetics and membrane status), while the variability among ejaculates was minor (9% to 28%). Factorial analysis identified three relevant, factors with different informational content: Factor 1 represented by membranes status, Factor 2 by kinetics estimated at T₀, and Factor 3 by kinetics estimated at T₁. Cushioned centrifugation had some beneficial effects for the membrane status of the frozen/thawed sperm, while the use of flat straws needs to be improved.
期刊介绍:
The Japanese Journal of Veterinary Research (JJVR) quarterly publishes peer-reviewed articles on all aspects of veterinary science. JJVR was originally published as a “University Journal” of veterinary science at Hokkaido University from more than 60 years ago. Currently, JJVR, is Japan’s leading scientific veterinary journal, and provides valuable information for the development of veterinary science by welcoming contributions from researchers worldwide.
JJVR offers online submission for Regular Papers, Short Communications, and Review Articles that are unpublished and not being considered for publication elsewhere. Research areas include:
Anatomy, Physiology, Biochemistry, Pharmacology, Microbiology, Infectious diseases, Parasitology, Laboratory Animal Science and Medicine, Internal Medicine, Surgery, Pathology, Theriogenology, Molecular Medicine, Public Health, Radiation Biology, Toxicology, Wildlife Biology and Medicine, Veterinary Hygiene, The other fields related to veterinary science.