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Novel Apoplastic Antifreeze Proteins of Deschampsia antarctica as Enhancer of Common Cell Freezing Media for Cryobanking of Genetic Resources, a Preliminary Study

机译:Deschampsia antarctica新型质外体抗冻蛋白作为遗传资源冷冻库常见细胞冷冻培养基增强剂的初步研究

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© 2024 by the authors.Highlights: Cryopreservation generates ice recrystallization. D. antarctica apoplastic proteins show antifreeze activity. PMI of S. salar sperm can be maintained with AFPs. High MMP of sperm increases with AFPs. D. antarctica apoplastic proteins act as nonpermeable cryoprotectants. Antifreeze proteins (AFPs) are natural biomolecules found in cold-adapted organisms that lower the freezing point of water, allowing survival in icy conditions. These proteins have the potential to improve cryopreservation techniques by enhancing the quality of genetic material postthaw. Deschampsia antarctica, a freezing-tolerant plant, possesses AFPs and is a promising candidate for cryopreservation applications. In this study, we investigated the cryoprotective properties of AFPs from D. antarctica extracts on Atlantic salmon spermatozoa. Apoplastic extracts were used to determine ice recrystallization inhibition (IRI), thermal hysteresis (TH) activities and ice crystal morphology. Spermatozoa were cryopreserved using a standard cryoprotectant medium (C+) and three alternative media supplemented with apoplastic extracts. Flow cytometry was employed to measure plasma membrane integrity (PMI) and mitochondrial membrane potential (MMP) postthaw. Results showed that a low concentration of AFPs (0.05 mg/mL) provided significant IRI activity. Apoplastic extracts from D. antarctica demonstrated a cryoprotective effect on salmon spermatozoa, with PMI comparable to the standard medium. Moreover, samples treated with apoplastic extracts exhibited a higher percentage of cells with high MMP. These findings represent the first and preliminary report that suggests that AFPs derived from apoplastic extracts of D. antarctica have the potential to serve as cryoprotectants and could allow the development of novel freezing media.
机译:© 作者 2024 年。亮点:冷冻保存产生冰再结晶。D. antarctica 质外体蛋白具有抗冻活性。盐沼精子的PMI可以用AFPs维持。精子的高MMP随着AFP的增加而增加。D. antarctica 质体蛋白可作为非渗透性冷冻保护剂。防冻蛋白 (AFP) 是在适应寒冷的生物体中发现的天然生物分子,可降低水的冰点,从而在冰冷条件下生存。这些蛋白质有可能通过提高解冻后遗传物质的质量来改进冷冻保存技术。Deschampsia antarctica 是一种耐冻植物,具有 AFP,是冷冻保存应用的有前途的候选者。在这项研究中,我们研究了来自南极鲑鱼提取物的AFP对大西洋鲑鱼精子的冷冻保护特性。质外体提取物用于测定冰再结晶抑制(IRI)、热滞后(TH)活性和冰晶形态。使用标准冷冻保护剂培养基 (C+) 和补充有质外体提取物的三种替代培养基冷冻保存精子。采用流式细胞术测量解冻后质膜完整性 (PMI) 和线粒体膜电位 (MMP)。结果显示,低浓度的 AFP (0.05 mg/mL) 具有显著的 IRI 活性。来自D的质外质体提取物。南极洲对鲑鱼精子具有冷冻保护作用,PMI与标准培养基相当。此外,用质外体提取物处理的样品表现出更高比例的高MMP细胞。这些发现代表了第一份和初步报告,表明源自南极洲的质外体提取物的AFP具有作为冷冻保护剂的潜力,并可能允许开发新的冷冻培养基。

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