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使用网状增强聚乙烯醇水凝胶管的生物人工胰腺释放胰岛素。一项体外研究。

Insulin release from a bioartificial pancreas using a mesh reinforced polyvinyl alcohol hydrogel tube. An in vitro study.

作者信息

Aung T, Kogire M, Inoue K, Fujisato T, Gu Y, Burczak K, Shinohara S, Mitsuo M, Maetani S, Ikada Y

机构信息

First Department of Surgery, Faculty of Medicine, Kyoto University, Japan.

出版信息

ASAIO J. 1993 Apr-Jun;39(2):93-6.

PMID:8324268
Abstract

Islet transplantation with a bioartificial pancreas is a potential alternative to whole pancreas transplantation. The authors constructed a bioartificial pancreas using mesh reinforced polyvinyl alcohol hydrogel tubes (MRPT), in an attempt to clarify the in vitro responsiveness to glucose of islets seeded in the MRPT. When the MRPT were perfused in a small chamber with buffer containing 3.3 mmol or 16.7 mmol glucose, insulin release from the MRPT began to increase at 9 +/- 3 min, reaching a plateau at approximately 40 min after the glucose concentration in the perfusate increased from 3.3 to 16.7 mmol. When MRPT seeded with islets were subjected to static incubation in buffer containing 3.3 mmol or 16.7 mmol glucose, insulin release from the MRPT remained elevated for 3 hr of high glucose stimulation, the amount of secreted insulin depending upon the number of islets seeded. Although pre incubation of semipermeable membranes in culture medium containing fetal bovine serum prior to seeding with islets has recently been reported to improve insulin release, the authors found that such pre treatment of the MRPT did not have a beneficial effect. Their in vitro findings in this study suggest that the bioartificial pancreas using MRPT could be a promising therapeutic approach to human diabetes mellitus.

摘要

使用生物人工胰腺进行胰岛移植是全胰腺移植的一种潜在替代方法。作者使用网状增强聚乙烯醇水凝胶管(MRPT)构建了一种生物人工胰腺,试图阐明接种在MRPT中的胰岛对葡萄糖的体外反应性。当在含有3.3 mmol或16.7 mmol葡萄糖的缓冲液的小室中灌注MRPT时,MRPT中的胰岛素释放在9±3分钟时开始增加,在灌注液中葡萄糖浓度从3.3 mmol增加到16.7 mmol后约40分钟达到平台期。当接种有胰岛的MRPT在含有3.3 mmol或16.7 mmol葡萄糖的缓冲液中进行静态孵育时,在高葡萄糖刺激的3小时内,MRPT中的胰岛素释放持续升高,分泌的胰岛素量取决于接种的胰岛数量。尽管最近有报道称,在接种胰岛之前,将半透膜在含有胎牛血清的培养基中预孵育可改善胰岛素释放,但作者发现对MRPT进行这种预处理并没有有益效果。他们在本研究中的体外研究结果表明,使用MRPT的生物人工胰腺可能是治疗人类糖尿病的一种有前景的治疗方法。

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