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体内活力评估证实了胰岛分离前双层法的优越性。

Superiority of the two-layer method before islet isolation confirmed by in vivo viability assessment.

作者信息

Kakinoki Keitaro, Fujino Yasuhiro, Suzuki Yasuyuki, Li Shiri, Tanioka Yasuki, Sakai Tetsuya, Kuroda Yoshikazu

机构信息

Division of Gastroenterological Surgery, Department of Clinical Molecular Medicine, Kobe University Graduate School of Medicine, Chuo-ku, Kobe 650-0017, Japan.

出版信息

Transplantation. 2005 Jun 15;79(11):1516-21. doi: 10.1097/01.tp.0000154914.34121.72.

Abstract

BACKGROUND

Although the outcome of islet transplantation has improved, there remains a major obstacle in isolating viable islets from prolonged preserved pancreas. We previously reported that the two-layer cold storage method (TLM) improved the yield and in vitro function. In this study, we performed in vivo accurate functional analyses of islets from TLM-preserved pancreas and investigated pancreatic duct cell viability, which may critically affect islet isolation.

METHODS

Rat islets isolated from fresh pancreas (group 1), after preservation in the University of Wisconsin (UW) solution (group 2) or by the TLM (group 3), were examined by assessing islet yields, stimulation indices, cure rates after transplantation to diabetic nude mice, and trypan blue uptake of pancreatic duct cells.

RESULTS

TLM significantly improved the islet yield compared with UW cold storage. The cure rates after transplantation were 100%, 0%, and 80% for groups 1, 2, and 3, respectively. This indicates that islet viability was well maintained even after 24 hr of TLM preservation. The percentages of nonviable duct cells were 4.1%+/-1.9%, 48.3%+/-8.0%, and 26.1%+/-21.4% in groups 1, 2, and 3, respectively, showing that the TLM was superior to UW as seen by this duct cell viability assessment.

CONCLUSIONS

The TLM used for pancreas preservation before islet isolation results in excellent islet function in addition to improved islet yield comparable to freshly isolated islets. The underlying mechanism may be duct cell viability maintained during TLM preservation. Therefore the TLM is an excellent preservation technique for isolating sufficient numbers of highly viable islets.

摘要

背景

尽管胰岛移植的效果有所改善,但从长期保存的胰腺中分离出有活力的胰岛仍然存在一个主要障碍。我们之前报道过双层冷藏法(TLM)提高了产量和体外功能。在本研究中,我们对经TLM保存的胰腺中的胰岛进行了体内准确的功能分析,并研究了可能对胰岛分离产生关键影响的胰管细胞活力。

方法

从新鲜胰腺分离的大鼠胰岛(第1组)、在威斯康星大学(UW)溶液中保存后的胰岛(第2组)或经TLM保存的胰岛(第3组),通过评估胰岛产量、刺激指数、移植到糖尿病裸鼠后的治愈率以及胰管细胞的台盼蓝摄取情况进行检测。

结果

与UW冷藏相比,TLM显著提高了胰岛产量。第1、2和3组移植后的治愈率分别为100%、0%和80%。这表明即使在TLM保存24小时后,胰岛活力仍得到良好维持。第1、2和3组中无活力的导管细胞百分比分别为4.1%±1.9%、48.3%±8.0%和26.1%±21.4%,从这种导管细胞活力评估来看,表明TLM优于UW。

结论

在胰岛分离前用于胰腺保存的TLM除了能提高胰岛产量,使其与新鲜分离的胰岛相当外,还能产生优异的胰岛功能。潜在机制可能是在TLM保存期间维持了导管细胞活力。因此,TLM是一种用于分离足够数量高活力胰岛的优秀保存技术。

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