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A hybrid siRNA delivery complex for enhanced brain penetration and precise amyloid plaque targeting in Alzheimer's disease mice

机译:一种杂交siRNA递送复合物,用于增强脑渗透和精确淀粉样蛋白斑块靶向阿尔茨海默病小鼠的靶向

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To realize the therapeutic potential of gene drugs for Alzheimer's disease (AD), non-invasive, tissue specific and efficient delivery technologies must be developed. Here, a hybrid system for amyloid plaques targeted siRNA delivery was formed by PEGylated Poly(2-(N,N-dimethylamino) ethyl methacrylate) (PEG-PDMAEMA) conjugated with two d-peptides, a CGN for brain penetration and a QSH for beta-amyloid binding. The hybrid complex CQ/siRNA, composed of 25% MPEG-PDMAEMA, 50% CGN-PEG-PDMAEMA and 25% QSH-PEG-PDMAEMA, showed negligible cytotoxicity and could protect siRNA from enzyme degradation. Being taken up by neuron cells, the complexes could escape from lysosomes, release siRNA in the cytoplasm and thus producing effective gene silence (down-regulated protein level to 18.5%). After intravenous injection, CQ/siRNA penetrated into the brain in an intact form and located around the plaques in transgenic AD mice. The precisely amyloid plaques delivery resulted in increased therapeutic activities, which was demonstrated by the strong mRNA (36.4%) knockdown of BACE1 (a therapeutic target of AD), the less yield of enzyme-digested products sAPP beta (-42.6%), as well as the better neurons protection than the single component complexes. In conclusion, the hybrid complex could efficiently and precisely deliver an siRNA to the AD lesion and might be a potential candidate for gene therapy for AD.
机译:为了实现基因药物的阿尔茨海默氏病(AD),非侵入性的,组织特异性和高效的传输技术的治疗潜力,必须开发。这里,用于淀粉样蛋白斑的混合系统靶向siRNA递送通过用两个d肽,一个用于CGN脑渗透和用于QSH缀合PEG化的聚(2-(N,N-二甲基氨基)乙基甲基丙烯酸酯)(PEG-PDMAEMA)形成β-淀粉样蛋白结合。的混合复合CQ / siRNA的,25%的MPEG-PDMAEMA,50%CGN-PEG-PDMAEMA和25%QSH-PEG-PDMAEMA,构成显示可忽略的毒性和能保护的siRNA从酶降解。由神经元细胞吸收,复合物可从溶酶体逃逸,释放的siRNA在细胞质和因此产生有效的基因沉默(下调的蛋白质水平至18.5%)。静脉注射后,CQ / siRNA的渗入脑以完整形式和周围设在转基因AD小鼠的斑块。的精确淀粉样蛋白斑递送导致增加的治疗活性,这是由强的mRNA(36.4%)敲低BACE1的(AD的治疗靶标),的酶消化产物的产率更低的sAPPβ(-42.6%)证实,如还有更好的保护神经细胞比单组分复合物。总之,复杂的混合能有效,准确地提供的siRNA到AD病变可能是基因治疗AD的潜在候选。

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