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首页> 外文期刊>Life sciences >Curcumin treatment enhances islet recovery by induction of heat shock response proteins, Hsp70 and heme oxygenase-1, during cryopreservation
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Curcumin treatment enhances islet recovery by induction of heat shock response proteins, Hsp70 and heme oxygenase-1, during cryopreservation

机译:姜黄素治疗可通过在冷冻保存过程中诱导热休克反应蛋白,Hsp70和血红素加氧酶-1来增强胰岛的恢复。

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Limited recovery of islets post-cryopreservation influences graft survival and transplantation efficiency during diabetes treatment. As curcumin, a potent antioxidant/radical scavenging compound, protects islets against beta cell toxins, we hypothesized that inclusion of curcumin during cryopreservation or during post-thaw culture or both may rescue islets from cryoinjury. To test the effect of curcumin inclusion on islet recovery murine islets were isolated by the collagenase digestion, cultured for 48 h, cryopreserved using dimethylsulphoxide as cryoprotectant - with or without curcumin (10 mu M) - and then slow cooled to -40 degrees C before immersing them in liquid nitrogen for 7 days. Following rapid thawing with sucrose gradient and 24 h post-thaw culture - in presence or absence of curcumin (10 mu M) - islet viability and functionality were determined. Islet recovery in curcumin treated groups was significantly higher than in groups where islets were cryopreserved without curcumin. Islets cryopreserved with curcumin also showed more intact islets as well as better morphology as compared to islets cryopreserved without curcumin. Curcumin treated islets also showed significant inhibition of ROS generation as compared to islets cryopreserved without curcumin. Glucose responsiveness and insulin secretion in islets cryopreserved with curcumin was equal to that of the freshly isolated islets as against islets cryopreserved without curcumin. Elevated level of Hsp 70 and HO-1 were observed in islets cryopreserved with curcumin and may contribute to curcumin-induced islet rescue. Hence, we conclude that inclusion of curcumin into cryopreservation medium inhibits ROS generation and corresponding islet damage and dysfunction. (c) 2007 Elsevier Inc. All rights reserved.
机译:冷冻保存后胰岛的恢复有限,影响了糖尿病治疗期间的移植物存活和移植效率。由于姜黄素是一种有效的抗氧化剂/自由基清除化合物,可保护胰岛免受β细胞毒素的侵害,因此我们假设在冷冻保存过程中或融化后培养过程中包括姜黄素或两者均可能使胰岛免于冻伤。为了测试姜黄素对胰岛恢复的影响,通过胶原酶消化分离小鼠胰岛,培养48小时,使用二甲基亚砜作为冷冻保护剂冷冻保存-有或没有姜黄素(10μM)-然后缓慢冷却至-40摄氏度将其浸入液氮中7天。在用蔗糖梯度快速融化和解冻后培养24小时后-在存在或不存在姜黄素(10μM)的情况下-测定了胰岛的活力和功能。姜黄素治疗组的胰岛恢复显着高于胰岛无姜黄素冷冻保存的组。与没有姜黄素冷冻保存的胰岛相比,用姜黄素冷冻保存的胰岛还显示了更多的完整胰岛以及更好的形态。与未姜黄素冷冻保存的胰岛相比,姜黄素处理的胰岛也显示出对ROS生成的显着抑制。与没有姜黄素冷冻保存的胰岛相比,用姜黄素冷冻保存的胰岛的葡萄糖反应性和胰岛素分泌与新鲜分离的胰岛相同。在冻存姜黄素的胰岛中观察到Hsp 70和HO-1的水平升高,可能有助于姜黄素诱导的胰岛拯救。因此,我们得出的结论是,将姜黄素包含在冷冻保存介质中会抑制ROS的产生以及相应的胰岛损伤和功能障碍。 (c)2007 Elsevier Inc.保留所有权利。

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