Targeted gene delivery to the brain using CDX-modified chitosan nanoparticles.

IF 2.2 4区 工程技术 Q3 PHARMACOLOGY & PHARMACY
Bioimpacts Pub Date : 2023-01-01 DOI:10.34172/bi.2022.23876
Tina Sepasi, Farhad Bani, Reza Rahbarghazi, Abbas Ebrahimi-Kalan, Mohammad-Reza Sadeghi, Seyedeh Zahra Alamolhoda, Amir Zarebkohan, Tahereh Ghadiri, Huile Gao
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引用次数: 3

Abstract

Introduction: Blood-brain barrier with strictly controlled activity participates in a coordinated transfer of bioactive molecules from the blood to the brain. Among different delivery approaches, gene delivery is touted as a promising strategy for the treatment of several nervous system disorders. The transfer of exogenous genetic elements is limited by the paucity of suitable carriers. As a correlate, designing high-efficiency biocarriers for gene delivery is challenging. This study aimed to deliver pEGFP-N1 plasmid into the brain parenchyma using CDX-modified chitosan (CS) nanoparticles (NPs). Methods: Herein, we attached CDX, a 16 amino acids peptide, to the CS polymer using bifunctional polyethylene glycol (PEG) formulated with sodium tripolyphosphate (TPP), by ionic gelation method. Developed NPs and their nanocomplexes with pEGFP-N1 (CS-PEG-CDX/pEGFP) were characterized using DLS, NMR, FTIR, and TEM analyses. For in vitro assays, a rat C6 glioma cell line was used for cell internalization efficiency. The biodistribution and brain localization of nanocomplexes were studied in a mouse model after intraperitoneal injection using in vivo imaging and fluorescent microscopy. Results: Our results showed that CS-PEG-CDX/pEGFP NPs were uptaken by glioma cells in a dose-dependent manner. In vivo imaging revealed successful entry into the brain parenchyma indicated with the expression of green fluorescent protein (GFP) as a reporter protein. However, the biodistribution of developed NPs was also evident in other organs especially the spleen, liver, heart, and kidneys. Conclusion: Based on our results, CS-PEG-CDX NPs can provide a safe and effective nanocarrier for brain gene delivery into the central nervous system (CNS).

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使用cdx修饰的壳聚糖纳米颗粒靶向基因递送到大脑。
血脑屏障具有严格控制的活性,参与生物活性分子从血液到大脑的协调转移。在不同的传递方法中,基因传递被吹捧为治疗几种神经系统疾病的有前途的策略。由于缺乏合适的载体,外源遗传元素的转移受到限制。因此,设计高效的基因载体是一项挑战。本研究旨在利用cdx修饰的壳聚糖(CS)纳米颗粒(NPs)将pEGFP-N1质粒递送至脑实质。方法:利用三聚磷酸钠(TPP)配制的双功能聚乙二醇(PEG),通过离子凝胶法将CDX(一个16个氨基酸的肽)连接到CS聚合物上。利用DLS、NMR、FTIR和TEM等分析手段对制备的NPs及其与pEGFP- n1 (CS-PEG-CDX/pEGFP)的纳米配合物进行了表征。体外实验采用大鼠C6胶质瘤细胞系进行细胞内化效率测定。采用体内成像和荧光显微镜技术研究了腹腔注射后纳米复合物在小鼠模型中的生物分布和脑定位。结果:我们的研究结果显示,CS-PEG-CDX/pEGFP NPs以剂量依赖的方式被胶质瘤细胞吸收。体内成像显示成功进入脑实质,显示绿色荧光蛋白(GFP)作为报告蛋白的表达。然而,发育的NPs在其他器官,特别是脾脏、肝脏、心脏和肾脏的生物分布也很明显。结论:CS-PEG-CDX NPs是一种安全有效的脑基因传递到中枢神经系统的纳米载体。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Bioimpacts
Bioimpacts Pharmacology, Toxicology and Pharmaceutics-Pharmaceutical Science
CiteScore
4.80
自引率
7.70%
发文量
36
审稿时长
5 weeks
期刊介绍: BioImpacts (BI) is a peer-reviewed multidisciplinary international journal, covering original research articles, reviews, commentaries, hypotheses, methodologies, and visions/reflections dealing with all aspects of biological and biomedical researches at molecular, cellular, functional and translational dimensions.
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