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聚合物传递治疗性 RAE-1 质粒至胰岛用于预防 1 型糖尿病。

Polymeric delivery of therapeutic RAE-1 plasmid to the pancreatic islets for the prevention of type 1 diabetes.

机构信息

Center for Controlled Chemical Delivery, Department of Pharmaceutics and Pharmaceutical Chemistry, University of Utah, Salt Lake City, UT 84112-5820, USA.

出版信息

J Control Release. 2012 Sep 28;162(3):606-11. doi: 10.1016/j.jconrel.2012.08.008. Epub 2012 Aug 14.

Abstract

The activating receptor NKG2D plays an important role in the development of type-1 diabetes. Exploiting a natural phenomenon observed in tumors, plasmid DNA encoding for a soluble ligand to NKG2D (sRAE-1γ) was isolated and engineered into a plasmid expression system. A polymeric gene delivery system was developed to deliver the soluble RAE-1 plasmid to the pancreatic islets. The bioreducible cationic polymer poly(cystamine bisacrylamide-diamino hexane) (p(CBA-DAH)) was modified with poly(ethylene glycol) (PEG) and the targeting peptide CHVLWSTRC, known to target the EphA2 and EphA4 receptors. We observed a higher uptake of the targeting polymer Eph-PEG-p(CBA-DAH) in the pancreas of NOD mice compared to non-targeting controls. To evaluate the efficacy of preventing diabetes, the Eph-PEG-p(CBA-DAH)/RAE-1 complex (polyplex) was intravenously injected into 6-week-old female NOD mice. Within 17 weeks blood glucose levels were stabilized in animals injected with polyplex, while those treated without therapeutic plasmid developed progressive hyperglycemia. Additionally, the degree of insulitis and the infiltration of CD8⁺ T-cells in the polyplex treated group were improved over the targeting polymer only treated group. The current study suggests that the therapy of the Eph-PEG-p (CBA-DAH) delivering therapeutic sRAE-1 gene may be used to protect β-cells from autoimmune destruction and prevent type-1 diabetes.

摘要

NKG2D 激活受体在 1 型糖尿病的发展中起着重要作用。利用在肿瘤中观察到的一种自然现象,分离并构建了编码 NKG2D 可溶性配体 (sRAE-1γ) 的质粒 DNA 表达系统。开发了一种聚合基因传递系统,将可溶性 RAE-1 质粒递送到胰岛。生物还原阳离子聚合物聚(半胱胺双丙烯酰胺-二氨基己烷)(p(CBA-DAH))用聚乙二醇(PEG)和靶向肽 CHVLWSTRC 修饰,已知该靶向肽靶向 EphA2 和 EphA4 受体。我们观察到 Eph-PEG-p(CBA-DAH)在 NOD 小鼠胰腺中的摄取率高于非靶向对照。为了评估预防糖尿病的疗效,将 Eph-PEG-p(CBA-DAH)/RAE-1 复合物(多聚物)静脉注射到 6 周龄雌性 NOD 小鼠中。在 17 周内,用多聚物注射的动物血糖水平稳定,而未用治疗性质粒治疗的动物则出现进行性高血糖。此外,与仅靶向聚合物治疗组相比,在多聚物治疗组中胰岛炎的程度和 CD8⁺ T 细胞的浸润得到改善。本研究表明,Eph-PEG-p(CBA-DAH)递送治疗性 sRAE-1 基因的疗法可能用于保护β细胞免受自身免疫破坏并预防 1 型糖尿病。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2464/3455144/d53f53b13123/nihms401496f1.jpg

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