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Vitrification Solutions for the Cryopreservation of Tissue-Engineered Bone

机译:冷冻保存组织工程骨的玻璃化解决方案

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Vitrification solutions were explored for the cryopreservation of tissue-engineered bone constructs using differential scanning calorimetry, visual inspection, toxicity and viability assays. Two vitrification "cocktails" (VS55 and VEG; concentration range of 80-100%) - 40% (vol/vol) DMSO and 40% (vol/vol) glycerol solutions - were studied with and without an ice blocker (IB). Results show that 95% VEG + IB solution is the best option to preserve the OB:HA scaffold-cell complex from the standpoint of critical cooling rate (5°C/min), critical warming rate (35°C/min), minimal scaffold damage, toxicity, and preliminary cryopreservation results (92.0% ± 1.4% for suspended cells, 43.0% ± 2.7% for attached cells). Ice blocker was found to reduce the critical warming rates of VS55 and VEG solutions at higher concentrations but worsen devitrification of lower concentration solutions. The fact that the critical cooling and warming rates are larger for larger systems as judged by visual inspection indicates that visual inspection is a reasonable practical guide to determine the critical cooling and warming rates for larger volume solutions, especially with embedded HA samples. Fracture of vitrified solutions is detrimental to cells, but such fracture should be avoidable by slow and uniform cooling combined with a minimum storage temperature just below the glass transition temperature rather than lower temperatures.
机译:探索了玻璃化溶液,用于使用差示扫描量热法,目测,毒性和生存力测定法对组织工程化骨构造物进行冷冻保存。研究了两种玻璃化“鸡尾酒”(VS55和VEG;浓度范围为80-100%)-40%(体积/体积)的DMSO和40%(体积/体积)的甘油溶液,有和没有阻冰剂(IB)。结果表明,从临界冷却速率(5°C / min),临界升温速率(35°C / min),最小限度的角度来看,95%VEG + IB解决方案是保存OB:HA支架细胞复合物的最佳选择支架损伤,毒性和初步冷冻保存结果(悬浮细胞为92.0%±1.4%,贴壁细胞为43.0%±2.7%)。发现阻冰剂可降低较高浓度下VS55和VEG溶液的临界升温速率,但会降低较低浓度溶液的失透性。通过目视检查判断,大型系统的临界冷却和升温速率较大这一事实表明,目测是确定较大体积溶液(尤其是嵌入式HA样品)的临界冷却和升温速率的合理实用指南。玻璃化溶液的断裂对细胞有害,但应通过缓慢均匀的冷却以及最低存储温度(略低于玻璃化转变温度)而不是较低温度来避免这种断裂。

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