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采用基于聚乙烯亚胺的核壳纳米粒有效传递 shBMP-9 在胰岛素抵抗动物模型中的研究。

Effective gene delivery of shBMP-9 using polyethyleneimine-based core-shell nanoparticles in an animal model of insulin resistance.

机构信息

Department of Endocrinology, the Second Affiliated Hospital, Chongqing Medical University, Chongqing 400010, China.

出版信息

Nanoscale. 2019 Jan 23;11(4):2008-2016. doi: 10.1039/c8nr08193j.

DOI:10.1039/c8nr08193j
PMID:30644929
Abstract

Bone morphogenetic protein (BMP)-9 has been associated with insulin resistance and type 2 diabetes mellitus. However, methods for delivering exogenous BMP-9 genes in vivo are lacking. In this study, we developed a gene delivery system using polyethyleneimine (PEI)-based core-shell nanoparticles (PCNs) as gene delivery carriers, and investigated the effectiveness and safety for delivery of the shBMP-9 gene. PCNs possessed a well-defined core-shell nanostructure with hydrophobic polymer cores and dense PEI shells of uniform particle size and highly positively charged surfaces. In vitro evaluation suggested that PCNs had high loading capacity for exogenous genes and low cytotoxicity toward hepatocytes. The transfection efficiency of PCNs/pENTR-shBMP9 complexes was higher than that of commercial lipofectamine 2000/shBMP9. In vivo studies showed that PCNs/pENTR-shBMP9 transfection led to a significant decrease in hepatic BMP9 expression compared with pENTR-shBMP9 transfection. Under high fat diet (HFD) feeding, PCNs/pENTR-shBMP9 mice exhibited aggravated glucose and insulin tolerance. At a molecular level, PCNs/pENTR-shBMP9 mice displayed elevated PEPCK protein levels and lower levels of InsR and Akt phosphorylation than pENTR-shBMP9 mice. These results suggest that the biological effects of PCNs/pENTR-shBMP9 in vivo are much more effective than those of pENTR-shBMP9. Therefore, the polyethyleneimine (PEI)-based core-shell nanoparticle can be applied as promising nanocarriers for effective and safe gene delivery.

摘要

骨形态发生蛋白 9(BMP-9)与胰岛素抵抗和 2 型糖尿病有关。然而,体内外源性 BMP-9 基因的传递方法仍有待开发。在本研究中,我们开发了一种使用聚乙烯亚胺(PEI)为基础的核壳纳米粒子(PCNs)作为基因传递载体的基因传递系统,并研究了 shBMP-9 基因传递的有效性和安全性。PCNs 具有明确的核壳纳米结构,具有疏水性聚合物核和致密的 PEI 壳,具有均匀的颗粒尺寸和高度正电荷表面。体外评估表明,PCNs 对外源基因具有高载量和低肝细胞毒性。PCNs/pENTR-shBMP9 复合物的转染效率高于商业 lipofectamine 2000/shBMP9。体内研究表明,与 pENTR-shBMP9 转染相比,PCNs/pENTR-shBMP9 转染导致肝 BMP9 表达显著降低。在高脂肪饮食(HFD)喂养下,PCNs/pENTR-shBMP9 小鼠表现出葡萄糖和胰岛素耐量恶化。在分子水平上,PCNs/pENTR-shBMP9 小鼠的 PEPCK 蛋白水平升高,InsR 和 Akt 磷酸化水平降低,低于 pENTR-shBMP9 小鼠。这些结果表明,PCNs/pENTR-shBMP9 在体内的生物学效应比 pENTR-shBMP9 更有效。因此,PEI 为基础的核壳纳米粒子可以作为有前途的纳米载体,用于有效和安全的基因传递。

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