首页> 外文期刊>Cryo Letters >DEVELOPMENT OF AN ENCAPSULATION-VITRIFICATION PROTOCOL FOR Rubia akane (Nakai) HAIRY ROOTS: A COMPARISON WITH NON-ENCAPSULATION
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DEVELOPMENT OF AN ENCAPSULATION-VITRIFICATION PROTOCOL FOR Rubia akane (Nakai) HAIRY ROOTS: A COMPARISON WITH NON-ENCAPSULATION

机译:赤Rub(Rukai akane(Nakai)HAIRY ROOT ROOTS)的包封-葡萄化协议的开发:与未包封的比较

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BACKGROUND: A comparison of different cryopreservation techniques should be based on the characteristics of both the methodology and the material in question using an optimized procedure. OBJECTIVE: This study aimed at developing an encapsulation-vitrification procedure for hairy roots of Rubia akane using alternative loading and vitrification solutions, based on the existing optimized droplet-vitrification procedure. MATERIALS AND METHODS: Encapsulated roots were first precultured in liquid medium with 10% sucrose for 3 days, then with 17.5% sucrose for 1 day, after which they were osmoprotected with solution C6-40% (20% glycerol + 20% sucrose) for 50 min, cryoprotected with solution A3-90% (37.5% glycerol + 15% DMSO + 15% EG + 22.5% sucrose, w/v) on ice for 40 min, cooled and warmed in 2 ml cryovials, and unloaded in 35% sucrose solution for 60 min. RESULTS: Through the application of this procedure to aged-clustered roots, up to 97.5% post-cryopreservation regeneration was observed. In our previous study, droplet-vitrification of hairy roots of R. akane resulted in 83.8% post-rewarming regeneration following preculture with 10% sucrose for 2 days and 17.5% sucrose for 4-5 h, and osmoprotection with solution C4-35% (17.5% glycerol + 17.5% sucrose) for 30 min, and cryoprotection with solution A3-70% (29.2% glycerol + 11.7% DMSO + 11.7% EG + 17.4% sucrose, w/v) on ice for 20 min. In the present study, higher post-cryopreservation regeneration was observed by using a higher concentration of vitrification solution (A3-70% -> A3-90%, B5-80% -> B1 -100%) and/or a longer cryoprotection duration (A3-70% at room temperature (RT) for 8 min -> 15-30 min, on ice for 20 min -> 40-80 min; B5-80% for 15 min -> 30-60 min). CONCLUSION: Even though encapsulation provided some degree of protection from the cytotoxicity of vitrification solutions to cytotoxicity-sensitive R. akane hairy roots, an overall higher post-cryopreservation regrowth was obtained using the droplet-vitrification procedure under optimized conditions. This result implies that this sensitive material was not sufficiently cryoprotected, and thus, rapid cooling and warming using foil strips was more efficient than cryopreservation of encapsulated samples.
机译:背景:不同冷冻保存技术的比较应基于方法学和所讨论材料的特性,并采用优化程序。目的:本研究旨在基于现有优化的液滴玻璃化程序,开发使用替代加载和玻璃化溶液的茜草茜草毛状根包封玻璃化程序。材料与方法:将包封的根先在含10%蔗糖的液体培养基中预培养3天,然后再用17.5%蔗糖预培养1天,然后将其用C6-40%溶液(20%甘油+ 20%蔗糖)进行渗透压保护。 50分钟,在冰上用溶液A3-90%(37.5%甘油+ 15%DMSO + 15%EG + 22.5%蔗糖,w / v)冷冻保护40分钟,在2 ml冷冻管中冷却并加热,并在35%的溶液中卸载蔗糖溶液60分钟。结果:通过将该程序应用于陈旧的簇根,冷冻保存后的再生率高达97.5%。在我们之前的研究中,赤羽毛状根毛状体的玻璃化导致在10%蔗糖预培养2天和17.5%蔗糖预培养4-5小时后再武装后再生83.8%,并用C4-35%溶液进行渗透保护(17.5%甘油+ 17.5%蔗糖)30分钟,并在冰上用溶液A3-70%(29.2%甘油+ 11.7%DMSO + 11.7%EG + 17.4%蔗糖,w / v)冷冻保护20分钟。在本研究中,通过使用更高浓度的玻璃化溶液(A3-70%-> A3-90%,B5-80%-> B1 -100%)和/或更长的冷冻保护时间,观察到了更高的低温保存后再生(室温(RT)时A3-70%8分钟-> 15-30分钟,在冰上20分钟-> 40-80分钟; B5-80%15分钟-> 30-60分钟)。结论:即使包封提供了一定程度的保护,使其免受玻璃化溶液对细胞毒性敏感的赤根毛状根的细胞毒性的影响,但在优化的条件下,使用液滴玻璃化程序仍可获得更高的冷冻保存后再生长。该结果表明,该敏感材料没有得到充分的冷冻保护,因此,使用箔条快速冷却和加热比封装样品的冷冻保存更有效。

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