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首页> 外文期刊>Pancreatology: official journal of the International Association of Pancreatology (IAP) ... [et al.] >Cryopreserved mouse pancreatic acinar cells from long-term explant outgrowth cultures maintain their secretory phenotype after thawing
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Cryopreserved mouse pancreatic acinar cells from long-term explant outgrowth cultures maintain their secretory phenotype after thawing

机译:长期外植体生长的冷冻保存的小鼠胰腺腺泡细胞在融化后仍保持其分泌表型

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Background/objectives: We recently reported an explant outgrowth culture method for obtaining functionally competent mouse pancreatic acinar cells for long-term in vitro purposes. The aim of the present study was to explore the possibility of cryostoring these cells without loss of functional differentiation. Methods: Acinar cells prepared by the explant outgrowth method were cryopreserved using a DMSO-based protocol and stored in liquid nitrogen for 4 weeks. The following characteristics were compared in cryopreserved and parallel non-frozen cell preparations: cell viability and recovery, amylase content in viable cells before culture, basal and stimulated amylase release in culture and the ability of the cells to form glandular structures in Matrigel. Results: Immediate post-thaw viability of the cells was similar to that of freshly isolated cells. Approximately 53% of viable cells frozen were recovered after thawing. Intracellular amylase content was identical in frozen and non-frozen cells. Cryopreserved cells maintained their ability to secrete amylase and to respond to caerulein stimulation in 4-day secondary cultures. They also were observed to form amylase-expressing glandular structures in three-dimensional cultures in Matrigel in a similar manner as non-frozen cells. Conclusions: This study shows that pancreatic acinar cells can be cryopreserved for long-term storage in liquid nitrogen without dedifferentiation. Successful cryopreservation helps to refine the experimental use of primary acinar cells by enabling their banking for on-demand utilization.
机译:背景/目的:我们最近报道了一种外植体生长培养方法,该方法可用于体外长期获得功能功能的小鼠胰腺腺泡细胞。本研究的目的是探索冷冻这些细胞而不丧失功能分化的可能性。方法:采用基于DMSO的方案将通过外植体生长法制备的腺泡细胞冷冻保存,并在液氮中保存4周。在冷冻保存和平行的非冷冻细胞制备物中比较了以下特征:细胞活力和恢复,培养前活细胞中淀粉酶的含量,培养物中基础和刺激淀粉酶的释放以及细胞在基质胶中形成腺结构的能力。结果:细胞的立即融化后活力与新鲜分离的细胞相似。解冻后,回收到约53%的冷冻活细胞。在冷冻和非冷冻细胞中,细胞内淀粉酶含量相同。冷冻保存的细胞在4天的次要培养中保持了分泌淀粉酶和对青霉素刺激的反应能力。还观察到它们在基质胶中的三维培养中以与非冷冻细胞相似的方式形成表达淀粉酶的腺结构。结论:这项研究表明,胰腺腺泡细胞可以冷冻保存在液氮中,而无需脱分化。成功的冷冻保存可通过按需利用库来帮助其对原始腺泡细胞的实验使用进行优化。

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