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利用非破坏性羟基自由基检测法对单细胞绿藻纤细裸藻中自由基介导的冷冻损伤进行的研究:一种开发原生生物冷冻保存策略的新方法。

Studies of free radical-mediated cryoinjury in the unicellular green alga Euglena gracilis using a non-destructive hydroxyl radical assay: a novel approach for developing protistan cryopreservation strategies.

作者信息

Fleck R A, Benson E E, Bremner D H, Day J G

机构信息

Culture Collection of Algae and Protozoa, NERC Institute of Freshwater Ecology, Windermere Laboratory, Ambleside, Cumbria, UK.

出版信息

Free Radic Res. 2000 Feb;32(2):157-70. doi: 10.1080/10715760000300161.

Abstract

The development of cryoconservation methods for the long-term storage of algal cultures is important for the ex situ preservation of biological diversity and the maintenance of genetic stability within this group of important organisms. However, as many unicellular algae are recalcitrant to cryogenic storage, this study aims to evaluate the role of oxidative stress in cryoinjury. A non-invasive, non-destructive assay method previously applied to animal cells has been developed to evaluate free radical mediated oxidative stress in Euglena gracilis exposed to different cryopreservation treatments. The procedure employs dimethyl sulphoxide as a probe for the hydroxyl radical. Adopting this approach it was possible to identify those components of the cryopreservation protocol which were the most damaging. These were identified as preparative centrifugation and sub-zero freezing treatments. Poststorage survival in E. gracilis was significantly (P < 0.05) enhanced when the chelating agent desferrioxamine was included in the recovery medium whilst methane production was significantly (P < 0.004) reduced, suggesting that the additive was capable of ameliorating oxidative stress. The potential of using novel, exogenous antioxidant treatments developed for medical applications and applying them to enhance cryopreservation tolerance in recalcitrant unicellular algae is discussed.

摘要

开发用于长期保存藻类培养物的低温保存方法对于生物多样性的迁地保护以及维持这类重要生物体的遗传稳定性至关重要。然而,由于许多单细胞藻类对低温保存具有抗性,本研究旨在评估氧化应激在冷冻损伤中的作用。此前已开发出一种应用于动物细胞的非侵入性、非破坏性检测方法,用于评估暴露于不同冷冻保存处理的纤细裸藻中自由基介导的氧化应激。该程序采用二甲基亚砜作为羟基自由基的探针。采用这种方法可以确定冷冻保存方案中最具破坏性的那些成分。这些被确定为制备性离心和零下冷冻处理。当在恢复培养基中加入螯合剂去铁胺时,纤细裸藻的储存后存活率显著提高(P < 0.05),而甲烷产量显著降低(P < 0.004),这表明该添加剂能够减轻氧化应激。讨论了利用为医学应用开发的新型外源抗氧化处理方法来提高难冷冻单细胞藻类冷冻保存耐受性的潜力。

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