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聚精胺亚胺,一种对pH有响应的可降解为内源性代谢物的聚阳离子siRNA载体。

Polyspermine imine, a pH responsive polycationic siRNA carrier degradable to endogenous metabolites.

作者信息

Du Zixiu, Xiang Shengnan, Zang Yi, Zhou Yi, Wang Chuandong, Tang Hailing, Jin Tuo, Zhang Xiaoling

机构信息

Shanghai Jiao Tong University School of Pharmacy , 800 Dongchuan Road, Shanghai 200240, China.

出版信息

Mol Pharm. 2014 Oct 6;11(10):3300-6. doi: 10.1021/mp500169p. Epub 2014 Jun 2.

Abstract

Cationic polymers readily degradable in response to cellular environment are especially favored as easy-formulating materials to pack siRNA into a nanoparticle and to release the cargo in the cytoplasm in time. In addition to the efficiency of cytosomal release, the degradation products should best be free of safety concerns, a typical challenge for cationic polymers. To satisfy the two criteria, we report a new cationic polymer, polyspermine imine, named as PSP-Imine, which is formed by condensing two endogenous molecules, spermine and glyoxal, through conjugated π linkage, -N═C-C═N- (Schiff base reaction), a poly linkage structure sufficiently stable under neutral condition but dissociative under the endosomal pH. Cellular assays under a confocal microscope indicated that the polyplex formed of PSP-Imine readily released the loaded siRNA to the cytoplasm after being engulfed in the target cells and efficiently silenced the target genes in different cell lines and xenograft mouse model of human cervical carcinoma, as compared with nondegradable PEI 25 kDa. Cell viability assays confirmed that PSP-Imine showed no visible cytotoxicity within the concentration being tested. The present study suggests that PSP-Imine is an excellent siRNA condensing material for forming the core of a therapeutically feasible synthetic carrier system.

摘要

能够响应细胞环境而易于降解的阳离子聚合物,作为一种易于配制的材料,特别适合将小干扰RNA(siRNA)包装成纳米颗粒并及时在细胞质中释放所载物。除了胞体释放效率外,降解产物最好不存在安全问题,这是阳离子聚合物面临的一个典型挑战。为了满足这两个标准,我们报道了一种新的阳离子聚合物——聚亚精胺亚胺,命名为PSP-亚胺,它是由两个内源性分子——亚精胺和乙二醛,通过共轭π键-N═C-C═N-(席夫碱反应)缩合而成,这种多键结构在中性条件下足够稳定,但在内体pH值下会解离。共聚焦显微镜下的细胞实验表明,与不可降解的25 kDa聚乙烯亚胺(PEI)相比,由PSP-亚胺形成的多聚体在被靶细胞吞噬后能迅速将负载的siRNA释放到细胞质中,并在不同细胞系和人宫颈癌异种移植小鼠模型中有效地沉默靶基因。细胞活力实验证实,在测试浓度范围内PSP-亚胺没有明显的细胞毒性。本研究表明,PSP-亚胺是一种用于构建治疗可行的合成载体系统核心的优良siRNA缩合材料。

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