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Insulin delivery to the brain using intracranial implantation of alginate‐encapsulated pancreatic islets

机译:使用颅内植入藻酸盐包封的胰岛胰岛胰岛素递送胰岛素

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Abstract There is increasing evidence supporting a link between cognitive dysfunctions and impaired brain insulin signalling. Insulin therapy has previously been tested as an approach to ameliorate brain insulin resistance and deficiency in patients with various brain disorders. However, current strategies for insulin delivery to the brain may induce severe hypoglycaemia when injected peripherally or show poor uptake when delivered intranasally. Recently, we have shown that intracranial transplantation of naked pancreatic islets increased insulin content in the brain and attenuated cognitive dysfunctions without altering peripheral glucose homeostasis in rats with schizophrenia‐like syndrome. In this study, we show that intracranial implantation of 50 pancreatic islets encapsulated in disc‐shaped alginate is sufficient to elevate insulin content in the rat brain. Three weeks after implantation, the islets displayed intact morphology, intensive hormone staining and glucose‐sensitive insulin release. The ultrapure alginate with high guluronic acid content used for islet encapsulation demonstrated good biocompatibility and stability after intracranial implantation. All implanted animals were normoglycaemic and normoinsulinaemic. In conclusion, the intracranial implantation of a small amount of alginate‐encapsulated islets is an efficient tool for metabolically regulated insulin delivery to the brain. Copyright ? 2017 John Wiley & Sons, Ltd.
机译:摘要越来越多的证据支持认知功能障碍和脑胰岛素信号受损之间的联系。胰岛素治疗先前已被测试为改善脑胰岛素抗性和各种脑疾病患者缺乏的方法。然而,当鼻内递送时,当前对大脑胰岛素输送到大脑的胰岛素递送的策略可能会引起严重的低血糖症。最近,我们表明裸露的胰岛胰岛颅内移植增加了大脑中的胰岛素含量,并减弱了认知功能障碍,而不改变具有精神分裂症样综合征的大鼠外周血血糖稳态。在这项研究中,我们表明,在盘形藻酸盐中包封的50个胰岛颅内植入足以提高大鼠脑中的胰岛素含量。植入后三周,胰岛显示完整的形态,密集激素染色和葡萄糖敏感的胰岛素释放。用于胰岛包封的高铜醛酸含量的纯藻酸盐在颅内植入后表现出良好的生物相容性和稳定性。所有植入的动物都是normoglyclycay和normo insilialial。总之,少量藻酸盐包封的胰岛的颅内植入是一种有效的工具,用于代谢调节胰岛素递送给大脑。版权? 2017年John Wiley& SONS,LTD.

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