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Resilience of Oocyte Germinal Vesicles to Microwave-Assisted Drying in the Domestic Cat Model

机译:在家猫模型中卵母细胞生殖小泡对微波辅助干燥的复原力

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摘要

The ability to compact and inject the cat germinal vesicle (GV) into a recipient cytoplast allows exploration of a new fertility preservation strategy that avoids whole oocyte freezing. The objective of the present study was to understand the impact of water loss and storage time on GV DNA integrity. Immature cat oocytes were exposed to 1.5 M trehalose for 10 min before microwave-assisted dehydration for 0, 5, 10, 15, 20, 25, 30, or 40 min. Oocytes then were rehydrated to assess chromatin configuration and the incidence of DNA fragmentation (TUNEL assay). The moisture content progressively decreased (p<0.05) from 1.7 to 0.1 gH2O/gDW over the first 30 min, but did not decrease further (p>0.05) after 40 min. Chromatin configuration was unaffected (p>0.05) over time. The percentage of GVs with DNA fragmentation was unaltered (p>0.05) from 0 to 30 min of treatment (range, 6.1%–12%), but increased (p<0.05) to 32.5% after 40 min. Next, the influence of storage at two different supra-zero temperatures after 30 min of drying was investigated. Oocyte-loaded, microwave-treated filters were individually sealed in Dri-Shield moisture barrier bags and stored at 4°C or ambient temperature for 0 to 8 weeks. Moisture contents gradually decreased (p<0.05) from 0.12 to 0.10 gH2O/gDW after 8 weeks of storage at 4°C or ambient temperature. The percentage of GVs with DNA fragmentation more than doubled (p<0.05) from 0 (14.3%) to 2 days (30.0%–33.0%), but remained stable (p>0.05) thereafter (1 through 4 weeks, 25.0%–35.0%). Collective results demonstrate the feasibility of using microwave processing to dehydrate the mammalian GV to a moisture content that is nonlethal and enables nonfrozen storage, an alternative approach for preserving the maternal genome at cool or ambient temperature.
机译:将猫生发囊泡(GV)压实并将其注射到受体细胞质中的能力允许探索一种避免整个卵母细胞冻结的新的生育力保存策略。本研究的目的是了解失水量和储存时间对GV DNA完整性的影响。将未成熟的猫卵母细胞暴露于1.5μM海藻糖中10分钟,然后微波辅助脱水0、5、10、15、20、25、30或40分钟。然后将卵母细胞再水化以评估染色质构型和DNA片段化的发生率(TUNEL分析)。在最初的30分钟内,水分含量从1.7逐渐降低(p <0.05)至0.1µgH2O / gDW,但在40µmin之后没有进一步降低(p> 0.05)。染色质构型随时间不受影响(p> 0.05)。在治疗0到30µmin(范围6.1%–12%)中,具有DNA片段化的GVs的百分比不变(p> 0.05),但在40µmin后增加(p <0.05)至32.5%。接下来,研究了干燥30分钟后在两个不同的超零温度下储存的影响。将装有卵母细胞的,经过微波处理的过滤器分别密封在Dri-Shield防潮袋中,并在4°C或环境温度下保存0至8周。在4°C或环境温度下储存8周后,水分含量从0.12逐渐降低(p <0.05)至0.10 gH2O / gDW。 DNA断裂的GV百分比从0(14.3%)到2天(30.0%–33.0%)增加了一倍以上(p <0.05),但此后(1至4周,25.0%–2)保持稳定(p> 0.05) 35.0%)。集体的结果证明了使用微波处理将哺乳动物GV脱水至非致命性的水分含量并实现非冷冻存储的可行性,这是在低温或环境温度下保存母体基因组的另一种方法。

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