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多功能阳离子壳聚糖聚合物胶束与 pVGF 复合,通过鼻腔途径非侵入性递送至小鼠脑内,用于开发治疗阿尔茨海默病的疗法。

Multifunctionalized Cationic Chitosan Polymeric Micelles Polyplexed with pVGF for Noninvasive Delivery to the Mouse Brain through the Intranasal Route for Developing Therapeutics for Alzheimer's Disease.

机构信息

Department of Pharmaceutical Sciences, School of Pharmacy, College of Health Professions, North Dakota State University, Fargo, North Dakota 58105, United States.

出版信息

Mol Pharm. 2023 Jun 5;20(6):3009-3019. doi: 10.1021/acs.molpharmaceut.3c00031. Epub 2023 Apr 24.

Abstract

Multifunctionalized Chitosan-based polymeric micelles were used to deliver pVGF to the brain. VGF (non-acronymic) plays significant roles in neurogenesis and learning as well as synaptic and cognitive functions. Therefore, VGF gene therapy could be a better approach in developing effective therapeutics against Alzheimer's disease. Multifunctionalized chitosan polymeric micelles were developed by grafting oleic acid (OA) on the chitosan (CS) skeleton followed by penetratin (PEN) and mannose (MAN) conjugation. The OA-g-CS-PEN-MAN graft polymer formed cationic nanomicelles in an aqueous medium and polyplexed with pVGF. The polymeric micelles were nontoxic and cationic in charge and had an average hydrodynamic diameter of 199.8 ± 15.73 nm. Qualitative in vitro transfection efficiency of OA-g-CS-PEN-MAN/pGFP polyplex was investigated in bEnd.3, primary neurons, and astrocyte cells. In vivo transfection efficiency of OA-g-CS-PEN-MAN/pVGF polyplexes was analyzed in C57BL6/J mice after intranasal administration for 7 days. The VGF expression levels in primary astrocytes and neurons after OA-g-CS-PEN-MAN/pVGF treatment were 2.4 ± 0.24 and 1.49 ± 0.02 pg/μg of protein, respectively. The VGF expression in the OA-g-CS-PEN-MAN/pVGF polyplex-treated animal group was 64.9 ± 12.7 pg/mg of protein, significantly higher ( < 0.01) than that of the unmodified polymeric micelles. The in vivo transfection outcomes revealed that the developed multifunctionalized OA-g-CS-PEN-MAN polymeric micelles could effectively deliver pVGF to the brain, transfect brain cells, and express VGF in the brain after noninvasive intranasal administration.

摘要

多功能壳聚糖基聚合物胶束被用于将 pVGF 递送到大脑。VGF(非首字母缩写词)在神经发生和学习以及突触和认知功能中发挥重要作用。因此,VGF 基因治疗可能是开发针对阿尔茨海默病的有效治疗方法的更好方法。通过在壳聚糖(CS)骨架上接枝油酸(OA),然后进行穿透肽(PEN)和甘露糖(MAN)接枝,开发了多功能化的壳聚糖聚合物胶束。OA-g-CS-PEN-MAN 接枝聚合物在水介质中形成阳离子纳米胶束,并与 pVGF 聚复合。聚合物胶束是无毒的、带正电荷的,平均水动力直径为 199.8 ± 15.73nm。在 bEnd.3、原代神经元和星形胶质细胞中研究了 OA-g-CS-PEN-MAN/pGFP 聚合物胶束的体外转染效率。在 C57BL6/J 小鼠中进行了 7 天鼻内给药后,研究了 OA-g-CS-PEN-MAN/pVGF 聚合物胶束的体内转染效率。OA-g-CS-PEN-MAN/pVGF 处理后的原代星形胶质细胞和神经元中的 VGF 表达水平分别为 2.4 ± 0.24 和 1.49 ± 0.02pg/μg 蛋白。OA-g-CS-PEN-MAN/pVGF 聚合物胶束处理动物组中的 VGF 表达为 64.9 ± 12.7pg/mg 蛋白,显著高于(<0.01)未经修饰的聚合物胶束。体内转染结果表明,开发的多功能化 OA-g-CS-PEN-MAN 聚合物胶束可通过非侵入性鼻内给药有效将 pVGF 递送到大脑,转染脑细胞,并在大脑中表达 VGF。

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