首页> 外文期刊>International Journal of Pharmaceutics >Closed-loop glycaemic control using an implantable artificial pancreas in diabetic domestic pig (Sus scrofa domesticus)
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Closed-loop glycaemic control using an implantable artificial pancreas in diabetic domestic pig (Sus scrofa domesticus)

机译:使用可植入人工胰腺对糖尿病家猪(Sus scrofa domesticus)进行闭环血糖控制

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The performance of a completely implantable peritoneal artificial pancreas (AP) has been demonstrated in principle in a live diabetic domestic pig. The device consists of a smart glucose-sensitive gel that forms a gateway to an insulin reservoir and is designed to both sense glucose and deliver insulin in the peritoneal cavity. It can be refilled with insulin via subcutaneous ports and surgery was developed to insert the AP. Diabetes was induced with streptozotocin (STZ), the device filled with insulin (Humulin (R) R U-500) in situ and the animal observed for several weeks, during which time there was normal access to food and water and several oral glucose challenges. Blood glucose (BG) levels were brought down from >30 mmol/L (540 mg/dL) to non-fasted values between 7 and 13 mmol/L (126-234 mg/dL) about five days after filling the device. Glucose challenge responses improved ultimately so that, starting at 10 mmol/L (180 mg/dL), the BG peak was 18 mmol/L (324 mg/dL) and fell to 7 mmol/L (126 mg/dL) after 30 min, contrasting with intravenous attempts. The reservoir solution was removed after 8 days of blood glucose levels during which they had been increasingly better controlled. A rapid return to diabetic BG levels (30 mmol/L) occurred only after a further 24 days implying some insulin had remained in the device after removal of the reservoir solution. Thus, the closed loop system appeared to have particular influence on the basal and bolus needs for the 8 days in which the reservoir solution was in place and substantial impact for a further 3 weeks. No additional insulin manual adjustment was given during this period. (C) 2015 Elsevier B.V. All rights reserved.
机译:原则上在活的糖尿病家猪中证明了完全可植入的腹膜人工胰腺(AP)的性能。该设备由一个智能的葡萄糖敏感凝胶组成,该凝胶形成通往胰岛素储存器的通道,并被设计为既可感测葡萄糖又可在腹膜腔内输送胰岛素。可以通过皮下端口为其补充胰岛素,并开发了手术以插入AP。用链脲佐菌素(STZ)诱导糖尿病,该装置原位装有胰岛素(Humulin(R)R U-500),观察动物数周,在此期间可以正常获取食物和水,并多次口服葡萄糖。装满设备约五天后,血糖(BG)水平从> 30 mmol / L(540 mg / dL)降至7至13 mmol / L(126-234 mg / dL)的非禁食值。葡萄糖激发反应最终得到改善,因此,从10 mmol / L(180 mg / dL)开始,BG峰值为18 mmol / L(324 mg / dL),而在30分钟后降至7 mmol / L(126 mg / dL)。分钟,与静脉内尝试相反。血糖水平持续8天后,将储存液移出并对其进行了更好的控制。仅在再过24天后才暗示糖尿病BG水平迅速恢复(30 mmol / L),这意味着在除去储液后,装置中仍残留有一些胰岛素。因此,闭环系统似乎在储层溶液就位的8天中对基础和大丸剂需求具有特别的影响,并且在接下来的3周中产生了实质性影响。在此期间未进行其他胰岛素手动调整。 (C)2015 Elsevier B.V.保留所有权利。

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