Finkle B J, Ulrich J M
Western Regional Research Center, Science and Education Administration, United States Department of Agriculture, Berkeley, California 94710.
Plant Physiol. 1979 Apr;63(4):598-604. doi: 10.1104/pp.63.4.598.
Cryoprotection of suspension cultures of sugarcane cells (Saccharum sp.) during freezing to various temperatures was tested using glucose, dimethylsulfoxide, and ethylene glycol at various concentrations, alone and in combinations. Viability of the thawed cells was assessed by triphenyltetrazolium chloride reduction, cell growth, and microscopic examination. Enhanced cryoprotection-as much as a doubling in viability value-was achieved by employing glucose and dimethylsulfoxide in mixtures, as compared with the lesser cryoprotective effect of either compound alone, at 1.9 molar total concentration in all cases; the mixture was most effective at a concentration of about 1.9 molar, with a molar ratio of the two components of about 1:3, respectively. Much of the increase in viability value arose from a decrease in toxic effect that came about through mixing the cryoprotective agents. Binary mixtures containing ethylene glycol and either glucose or dimethylsulfoxide were less effective and more toxic than comparable glucose-dimethylsulfoxide mixtures. Use of the optimized latter mixture allowed freezing of these tropical cells to -23 C with little decrease in survival, or to -40 C, still with the capability for delayed growth.
使用不同浓度的葡萄糖、二甲基亚砜和乙二醇单独及组合处理,测试甘蔗细胞(甘蔗属)悬浮培养物在冷冻至不同温度期间的冷冻保护作用。通过氯化三苯基四氮唑还原法、细胞生长和显微镜检查评估解冻后细胞的活力。在所有情况下,总浓度为1.9摩尔时,与单独使用任何一种化合物相比,葡萄糖和二甲基亚砜混合使用可增强冷冻保护作用——活力值提高一倍之多;该混合物在浓度约为1.9摩尔时最有效,两种成分的摩尔比分别约为1:3。活力值的大幅提高源于混合冷冻保护剂后毒性作用的降低。含有乙二醇与葡萄糖或二甲基亚砜的二元混合物比类似的葡萄糖-二甲基亚砜混合物效果更差且毒性更大。使用优化后的后一种混合物可将这些热带细胞冷冻至-23℃,存活率几乎没有下降,或冷冻至-40℃,细胞仍有延迟生长的能力。