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首页> 外文期刊>Biomacromolecules >Effect of Polymer Structure on Micelles Formed between siRNA anc Cationic Block Copolymer Comprising Thiols and Amidines
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Effect of Polymer Structure on Micelles Formed between siRNA anc Cationic Block Copolymer Comprising Thiols and Amidines

机译:聚合物结构对包含硫醇和Am的siRNA和阳离子嵌段共聚物之间形成的胶束的影响

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Small interfering RNA (siRNA) has great therapeutic potential for the suppression of proteins associated with disease, but delivery methods are needed for improved efficacy. Here, we investigated the properties of micellar siRNA delivery vehicles prepared with poly(ethylene glycol)-block-poly(L-lysine) (PEG-b-PLL) comprising lysine amines modified to contain amidine and thiol functionality. Lysine modification was achieved using 2-iminothiolane (2-IT) [yielding PEG-b-PLL(N2IM-IM)] or dimethyl 3,3'-dithiobispropionimidate (DTBP) [yielding PEG-b-PLL(MPA)], with modifications aimed to impart disulfide cross-linking ability without compromising cationic charge. These two lysine modification reagents resulted in vastly different chemistry contained in the reacted block copolymer, which affected micelle formation behavior and stability along with in vitro and in vivo performance. Amidines formed with 2-IT were unstable and rearranged into a noncharged ring structure lacking free thiol functionality, whereas amidines generated with DTBP were stable. Micelles formed with siRNA and PEG-b-PLL(N2IM-IM) at higher molar ratios of polymer/siRNA, while PEG-b-PLL(MPA) produced micelles only near stoichiometric molar ratios. In vitro gene silencing was highest for PEG-b-PLL(MPA)/siRNA micelles, which were also more sensitive to disruption under disulfide-reducing conditions. Blood circulation was most improved for PEG-b-PLL(N2IM-IM)/ siRNA micelles, with a circulation half-life 3 x longer than naked siRNA. Both micelle formulations are promising for siRNA delivery applications in vitro and in vivo.
机译:小干扰RNA(siRNA)在抑制与疾病相关的蛋白质方面具有巨大的治疗潜力,但是需要使用递送方法来提高疗效。在这里,我们调查了由聚(乙二醇)-嵌段-聚(L-赖氨酸)(PEG-b-PLL)制备的胶束siRNA传递载体的特性,该聚乙二醇包括修饰为包含am和硫醇官能团的赖氨酸胺。使用2-亚氨基硫杂环戊烷(2-IT)[产生PEG-b-PLL(N2IM-IM)]或3,3'-二硫代双丙二酸二甲酯(DTBP)[产生PEG-b-PLL(MPA)]实现赖氨酸修饰旨在赋予二硫键交联能力而不损害阳离子电荷的修饰。这两种赖氨酸修饰剂导致反应后的嵌段共聚物中所含化学成分大不相同,从而影响了胶束的形成行为和稳定性以及体外和体内性能。由2-IT形成的不稳定并重新排列成缺乏游离硫醇官能团的不带电荷的环结构,而由DTBP生成的am则稳定。在较高的聚合物/ siRNA摩尔比下,由siRNA和PEG-b-PLL(N2IM-IM)形成的胶束,而PEG-b-PLL(MPA)仅在接近化学计量摩尔比时产生胶束。 PEG-b-PLL(MPA)/ siRNA胶束的体外基因沉默最高,其对二硫化物还原条件下的破坏也更敏感。对于PEG-b-PLL(N2IM-IM)/ siRNA胶束,血液循环的改善最大,循环半衰期比裸siRNA长3倍。两种胶束制剂都有望在体外和体内用于siRNA递送。

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