Rudolph A S, Crowe J H
Cryobiology. 1985 Aug;22(4):367-77. doi: 10.1016/0011-2240(85)90184-1.
The relative effectiveness of two natural cryoprotectants, proline and trehalose, in preserving membrane structure and function during freezing was studied. Isolated vesicles of sarcoplasmic reticulum (SR) from lobster muscle (Homarus americanus) were employed to study changes in structure and function during rapid freeze-thaw conditions. Both proline and trehalose were shown to effectively preserve the structure (assessed with freeze fracture) and function (assessed by the ability of the membranes to transport calcium) in the frozen vesicles. As a first step toward determining the mechanism of cryoprotection by these compounds, we have investigated their effectiveness in inhibiting freezing induced fusion between phospholipid vesicles. Pamiltoyloleoyl-phosphatidylcholine: phosphatidylserine (85:15 mole ratio) small unilamellar vesicles (SUVs) were made incorporating one of the following fluorescent probes, and energy donor, cholesteryl anthracene-9-carboxylate, or an energy acceptor, nitrobenzo-2-oxa-1,3-diazole phosphatidylethanolamine to investigate the amount of membrane mixing during rapid freeze-thaw cycles, and storage at -20 degrees C. Membrane mixing was measured as an energy transfer from donor to acceptor when donor vesicles and acceptor vesicles were mixed before a particular freezing treatment. Membrane mixing was correlated with structural changes in these membranes by freeze-fracture analysis. Both trehalose and proline were found to be more effective in preventing membrane mixing between SUVs than the standard protectants, glycerol and dimethylsulfoxide.
研究了两种天然冷冻保护剂脯氨酸和海藻糖在冷冻过程中保护膜结构和功能的相对有效性。利用从龙虾肌肉(美洲螯龙虾)分离出的肌浆网(SR)囊泡,研究快速冻融条件下的结构和功能变化。结果表明,脯氨酸和海藻糖都能有效保护冷冻囊泡的结构(通过冷冻断裂评估)和功能(通过膜运输钙的能力评估)。作为确定这些化合物冷冻保护机制的第一步,我们研究了它们抑制冷冻诱导的磷脂囊泡间融合的有效性。制备了掺入以下荧光探针之一的棕榈酰油酰磷脂酰胆碱:磷脂酰丝氨酸(摩尔比85:15)小单层囊泡(SUV),即能量供体胆固醇蒽-9-羧酸盐或能量受体硝基苯-2-恶唑-1,3-二氮杂苯磷脂酰乙醇胺,以研究快速冻融循环及在-20℃储存期间的膜混合量。当供体囊泡和受体囊泡在特定冷冻处理前混合时,膜混合以从供体到受体的能量转移来衡量。通过冷冻断裂分析,将膜混合与这些膜的结构变化相关联。结果发现,与标准保护剂甘油和二甲基亚砜相比,海藻糖和脯氨酸在防止SUV之间的膜混合方面更有效。