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首页> 外文期刊>ACS nano >Gene expression, biodistribution, and pharmacoscintigraphic evaluation of chondroitin sulfate - PEI nanoconstructs mediated tumor gene therapy
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Gene expression, biodistribution, and pharmacoscintigraphic evaluation of chondroitin sulfate - PEI nanoconstructs mediated tumor gene therapy

机译:硫酸软骨素的基因表达,生物分布和药理学评价-PEI纳米构建介导的肿瘤基因治疗

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摘要

Tumor-specific gene delivery constitutes a primary challenge in nonviral mediated gene therapy. In this investigation, branched polyethylenimine (bPEI, 25 kDa) was modified by forming nanoconstructs with a natural polysaccharide, chondroitin sulfate (CS), to impart site-specific property. A library of CS-PEI (CP) nanoconstructs was fabricated by altering the content of CS and evaluated in terms of size, surface charge, morphology, pDNA loading efficiency, pDNA release assay, pDNA protection study, cytotoxicity, and transfection efficiency. In vitro transfection efficiency of CP nanoconstructs was examined in HEK293, HEK293T, HepG2, and HeLa cell lines, while their cytotoxicity was investigated in HepG2 and HeLa cells. DNase I protection assay showed that the plasmid was protected from degradation over a period of time. The CP nanoconstructs possess significantly lower toxicity and enhanced transfection efficiency compared to PEI (25 kDa) and commercial transfection reagents (i.e., superfect, fugene, and GenePORTER 2). Further, the CP nanoconstructs were also found to transfect cells in serum-containing medium. In vivo studies were carried out with pDNA loaded CP-3 nanoconstruct after intravenous (iv) injection in Ehrlich ascites tumor (EAT)-bearing mice. The outcome revealed higher concentration of CP-3 nanoconstruct in tumor mass. These findings demonstrate that CP nanoconstructs could be exploited as carriers for nanomedicine for efficient management of solid tumor.
机译:肿瘤特异性基因的传递构成了非病毒介导的基因治疗的主要挑战。在这项研究中,通过与天然多糖硫酸软骨素(CS)形成纳米结构来修饰支链聚乙烯亚胺(bPEI,25 kDa),以赋予位点特异性。通过改变CS的含量来构建CS-PEI(CP)纳米结构的文库,并在大小,表面电荷,形态,pDNA加载效率,pDNA释放测定,pDNA保护研究,细胞毒性和转染效率方面进行评估。在HEK293,HEK293T,HepG2和HeLa细胞系中检测了CP纳米结构的体外转染效率,同时在HepG2和HeLa细胞中研究了它们的细胞毒性。 DNase I保护试验表明,该质粒在一段时间内不受降解。与PEI(25 kDa)和市售转染试剂(即superfect,fugene和GenePORTER 2)相比,CP纳米结构具有明显更低的毒性和更高的转染效率。此外,还发现CP纳米结构可在含血清的培养基中转染细胞。在荷有埃氏腹水瘤(EAT)的小鼠中静脉内(iv)注射后,用负载pDNA的CP-3纳米结构进行体内研究。结果表明,肿瘤块中CP-3纳米结构的浓度更高。这些发现表明,CP纳米结构可以被用作纳米药物的载体,以有效地治疗实体瘤。

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