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Slow cooling rate with a shock cooling program can effectively cryopreserve pig hepatocytes

机译:缓慢的冷却速度和冲击冷却程序可以有效地冻存猪肝细胞

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摘要

Hepatocyte transplantation is a potential alternative to whole organ liver transplantation. To realize this procedure, a hepatocyte bank system capable of supplying large numbers of hepatocytes must be established. The aim of this study was to develop a cryopreservation protocol using controlled rate freezers (CRF) for the application of a bioartificial system of porcine hepatocytes. Hepatocytes were harvested from 3- to 4-week-old male pigs weighing 11-14 kg. Liver cell preparations were prepared and the spheroid hepatocytes were cryopreserved using University of Wisconsin (UW) solution in controlled freezing. After thawing, viability, plating efficiency, urea synthesis, and ammonia removal were measured to assess the effects of freezing methods. Freezing methods had effects on the viability and specific functions of hepatocytes after thawing. About 80% of the cell viability could be obtained with an optimal computer programming method (-1°C slow cooling rate with shock cooling, using UW solution with 15% dimethyl sulfoxide [DMSO]). The cryopreservation method for hepatocytes was significantly improved by using the above cryopreservation conditions. However, research on application to large-scale cryopreservation is needed for practical use.
机译:肝细胞移植是全器官肝移植的潜在替代方法。为了实现该过程,必须建立能够供应大量肝细胞的肝细胞库系统。这项研究的目的是开发使用可控速率冰柜(CRF)的冷冻保存方案,以用于猪肝细胞生物人工系统的应用。从3至4周龄的体重为11-14kg的雄性猪中收获肝细胞。制备肝细胞制品,并使用威斯康星大学(UW)溶液在可控冷冻条件下冷冻保存球形肝细胞。解冻后,测量活力,镀层效率,尿素合成和氨气去除以评估冷冻方法的效果。冷冻方法对融化后肝细胞的活力和特定功能有影响。通过最佳的计算机编程方法(使用15%的二甲基亚砜[DMSO]的UW溶液,在-1C的缓慢冷却速度和冲击冷却条件下)可以获得大约80%的细胞活力。通过使用上述冷冻条件,大大改善了肝细胞的冷冻方法。但是,为了实际使用,需要对大规模冷冻保存的应用进行研究。

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