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首页> 外文期刊>Polymer chemistry >Block ionomer complexes consisting of siRNA and aRAFT-synthesized hydrophilic-block-cationic copolymers: the influence of cationic block length on gene suppression
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Block ionomer complexes consisting of siRNA and aRAFT-synthesized hydrophilic-block-cationic copolymers: the influence of cationic block length on gene suppression

机译:块离子交联聚合物复合物组成的核aRAFT-synthesized hydrophilic-block-cationic共聚物:阳离子的影响关于抑制基因的长度

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Block ionomer complex (BIC) dissociation and the subsequent effects on gene "knockdown" are reported. Aqueous reversible addition-fragmentation chain transfer (aRAFT) polymerization was utilized to prepare a statistical macro chain transfer agent (macroCTA) consisting of N-(2-hydroxypropyl)methacrylamide (HPMA) and N-(3-aminopropyl)methacrylamide (APMA); HPMA confers water stability, and APMA provides a facile pathway for the conjugation of folic acid, a cellular targeting moiety. This macroCTA was chain extended with N,N-(3-dimethylaminopropyl)methacrylamide (DMAPMA), thus preparing hydrophilic-block-cationic copolymers with varying repeat units of DMAPMA. After end-group removal and folic acid conjugation, these hydrophilic-block-cationic copolymers were complexed with small interfering RNA (siRNA) and GLuc DNA, a double stranded DNA (dsDNA) analogue of siRNA. These complexes were prepared at a nitrogen-to-phosphate ratio (N : P) = 1, and complexes prepared with siRNA and GLuc DNA were demonstrated to be comparable; the hydrodynamic radii (Rh) and changes to the secondary structure were identical, while zeta-potential and gel electrophoresis confirmed complex neutrality. Analytical ultracentrifugation (AUC) was utilized to ascertain binding constants and stoichiometry. Increased DMAPMA block length (cationic length) caused an increase in the binding constant, but the stoichiometry remained constant at 1 : 1. Solution differential scanning calorimetry (DSC) was conducted to investigate the BIC stability. Similar to AUC, the melting temperature (Tm) increased with increasing cationic block length, and overall, a shift in Tm of similar to 40 degrees C was observed, indicating that increasing the DMAPMA length confers greater BIC stability. Furthermore, complex dissociation was not observed. Gene down-regulation was monitored in KB cells expressing Gaussia Luciferase, and the time for maximum gene knockdown to occur increased with increasing DMAPMA block length. Given the large binding constants and this increased stability, it can be concluded that in vitro complex dissociation occurs via an ion exchange mechanism.
机译:块(BIC)分离和离子交联聚合物复杂随后对基因“击倒”的影响报道。加成断裂链转移(aRAFT)聚合是用来准备一个统计宏观链转移剂(macroCTA)N -甲基丙烯酰胺(2-hydroxypropyl)组成(HPMA)和N -甲基丙烯酰胺(3-aminopropyl)(APMA);的结合提供了一种简单途径叶酸,针对一部分细胞。macroCTA链延伸N, N - (3-dimethylaminopropyl) methacrylamide(DMAPMA),因此准备hydrophilic-block-cationic共聚物与不同的重复单位DMAPMA。删除和叶酸结合,这些hydrophilic-block-cationic共聚物都包裹着小核RNA)和GLuc DNA双链DNA (dsDNA)模拟核。nitrogen-to-phosphate比率(N: P) = 1,复合物制备核和GLuc DNA证明可比性;半径(Rh)和二级结构的变化都是相同的,而电动电位和凝胶电泳确认复杂的中立。分析超速离心法(AUC)是利用确定绑定常量和化学计量学。增加DMAPMA块长度(阳离子长度)导致增加绑定常量,但是化学计量数保持不变,1:1。解决方案差示扫描量热法(DSC)进行了调查BIC稳定。类似于AUC,融化温度(Tm)阳离子块长度的增加而增加,和整体,Tm类似于40的转变度观察,表明增加DMAPMA赋予更大的BIC长度稳定。没有观察到。在KB细胞表达Gaussia荧光素酶时间最大的基因可拆卸的发生DMAPMA块长度的增加而增加。考虑到大型绑定常量和这提高了稳定性,它可以得出结论体外通过离子发生复杂的离解交换机制。

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