Development of sperm cryopreservation protocol for patin buah, Pangasius nasutus

IF 4.6 Q2 MATERIALS SCIENCE, BIOMATERIALS
Nurizzati Idris , Muhammad Yazed Abduh , Noordiyana Mat Noordin , Ambok Bolong Abol-Munafi , Ivan Chong Chu Koh
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Abstract

The development of sperm cryopreservation for Pangasius nasutus is necessary in order to serve the growing demand of this species through artificial fertilization and the preservation of valuable strains of male broodstocks. In the present study, the basic protocol of sperm cryopreservation for P. nasutus was established by identifying the optimal conditions for optimum cryoprotectant, toxicity of cryoprotectants, extenders, freezing condition and dilution ratio. Methanol (MeOH) at 10% concentration had the best post-thaw motility (26.3 ± 0.9%) and curvilinear velocity (VCL) compared to dimethyl acetamide and dimethyl sulfoxide. MeOH was the least toxic cryoprotectant; sperm suspended in 5 and 10% MeOH maintained motility up to 50 min. No significant differences were detected between the three types of extenders tested (0.9% sodium chloride, Calcium-free Hanks’ Balance salt solution and ringer solution). P. nasutus sperm had a narrow range of optimal cooling rate. Significantly higher post-thaw motility was identified when cooling at 9.23 °C min−1, obtained by freezing at height of 14 cm above liquid nitrogen vapor for 7 min, showing lower cooling rate is suitable for this species. However, when cooling below and above the optimal cooling rate, post-thaw motility dropped drastically. There were no significant differences among the dilution ratios investigated, indicating the volume of cryodiluent at all tested ratios (1:9, 1:19 and 1:49) was sufficient for the protection of cells during the cryopreservation process. The development of the protocol for cryopreserved P. nasutus sperm will assist artificial seed production and provide an important tool for genetic and breeding research.

为 Pangasius nasutus(鲮鱼)制定精子冷冻保存方案。
为了通过人工受精和保存珍贵的雄性鱼种来满足日益增长的鱼类需求,有必要开发鼻鲮精子冷冻保存技术。本研究通过确定最佳冷冻保护剂的最佳条件、冷冻保护剂的毒性、扩展剂、冷冻条件和稀释比例,建立了鼻鲮精子冷冻保存的基本方案。与二甲基乙酰胺和二甲基亚砜相比,10%浓度的甲醇(MeOH)具有最佳的解冻后运动能力(26.3 ± 0.9%)和曲线速度(VCL)。MeOH是毒性最小的冷冻保护剂;悬浮在5%和10% MeOH中的精子可维持50分钟的运动能力。所测试的三种扩展剂(0.9% 氯化钠、无钙汉克斯天平盐溶液和林格溶液)之间没有发现明显差异。鼻疽梭菌精子的最佳冷却速度范围较窄。在液氮蒸气上方 14 厘米的高度冷冻 7 分钟,以 9.23 °C min-1 的速度冷却时,解冻后的运动能力显著提高,这表明较低的冷却速度适合该物种。然而,当冷却速度低于或高于最佳冷却速度时,解冻后的运动能力急剧下降。所研究的稀释比例之间没有明显差异,表明所有测试比例(1:9、1:19 和 1:49)下的冷冻剂体积都足以在冷冻保存过程中保护细胞。鼻疽梭菌精子冷冻保存方案的制定将有助于人工种子生产,并为遗传和育种研究提供重要工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ACS Applied Bio Materials
ACS Applied Bio Materials Chemistry-Chemistry (all)
CiteScore
9.40
自引率
2.10%
发文量
464
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