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一种用于糖尿病肾病治疗的闭环自体红细胞介导递送平台。

A Closed-Loop Autologous Erythrocyte-Mediated Delivery Platform for Diabetic Nephropathy Therapy.

作者信息

Feng Lingzi, Huang Xinzhong, Li Jia, Chen Chao, Ma Yidan, Gu Haiying, Hu Yong, Xia Donglin

机构信息

School of Public Health, Nantong University, Nantong 226019, China.

Department of Nephrology, Affiliated Hospital of Nantong University, Nantong 226001, China.

出版信息

Nanomaterials (Basel). 2022 Oct 11;12(20):3556. doi: 10.3390/nano12203556.

Abstract

Failure to control blood glucose level (BGL) may aggravate oxidative stress and contribute to the development of diabetic nephropathy (DN). Using erythrocytes (ERs) as the carriers, a smart self-regulatory insulin (INS) release system was constructed to release INS according to changes in BGLs to improve patients' compliance and health. To overcome the limited sources of ERs and decrease the risk of transmitting infections, we developed an in vitro, closed-loop autologous ER-mediated delivery (CAER) platform, based on a commercial hemodialysis instrument modified with a glucose-responsive ER-based INS delivery system (GOx-INS@ER). After the blood was drained via a jugular vein cannula, some of the blood was pumped into the CAER platform. The INS was packed inside the autologous ERs in the INS reactor, and then their surface was modified with glucose oxidase (GOx), which acts as a glucose-activated switch. In vivo, the CAER platform showed that the BGL responsively controlled INS release in order to control hyperglycemia and maintain the BGL in the normal range for up to 3 days; plus, there was good glycemic control without the added burden of hemodialysis in DN rabbits. These results demonstrate that this closed-loop extracorporeal hemodialysis platform provides a practical approach for improving diabetes management in DN patients.

摘要

未能控制血糖水平(BGL)可能会加重氧化应激,并促使糖尿病肾病(DN)的发展。以红细胞(ERs)为载体,构建了一种智能自我调节胰岛素(INS)释放系统,可根据血糖水平的变化释放胰岛素,以提高患者的依从性和健康水平。为了克服红细胞来源有限的问题并降低感染传播风险,我们基于一台经葡萄糖响应性红细胞介导的胰岛素递送系统(GOx-INS@ER)改造的商用血液透析仪,开发了一种体外闭环自体红细胞介导递送(CAER)平台。通过颈静脉插管引流出血液后,将部分血液泵入CAER平台。胰岛素被包装在胰岛素反应器中的自体红细胞内,然后其表面用葡萄糖氧化酶(GOx)进行修饰,葡萄糖氧化酶作为葡萄糖激活开关。在体内,CAER平台显示血糖水平可响应性地控制胰岛素释放,从而控制高血糖,并使血糖水平在正常范围内维持长达3天;此外,在糖尿病肾病兔中,无需额外进行血液透析负担就能实现良好的血糖控制。这些结果表明,这种闭环体外血液透析平台为改善糖尿病肾病患者的糖尿病管理提供了一种实用方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fe2b/9612375/5be972a1168a/nanomaterials-12-03556-sch001.jpg

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