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Counterion of Chitosan Influences Thermodynamics of Association of siRNA with a Chitosan-Based siRNA Carrier

机译:壳聚糖对抗对壳聚糖的SiRNA载体影响siRNA结合的热力学

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PurposeThe work aimed to compare quality of a siRNA carrier prepared with chitosan of two different sources having similar degree of deacetylation and molecular weights. Differences were analyzed from thermodynamic characteristics of interactions with siRNA.MethodsThe siRNA carrier (chitosan-coated poly(isobutylcyanoacrylate) nanoparticles) was prepared with home-prepared, CSLab, and commercial, CSCom, chitosans. Chitosan counterion was identified and chitosans CS(Com)mod1 and CS(Com)mod2 were obtained from CSCom exchanging counterion with that found on CSLab. Carrier quality was checked considering the size, zeta potential and siRNA association capacity by gel electrophoresis. Thermodynamic parameters of interactions between siRNA and chitosans in solution or immobilized at the carrier surface were determined by isothermal titration calorimetry (ITC).ResultsCS(Lab) and CS(Com)mod2 having a high content of acetate counterion associated better siRNA than CSCom and CS(Com)mod1 which counterion included mainly chloride. ITC measurements indicated that siRNA interactions with chitosan and the siRNA carrier were driven by entropic phenomena including dehydration, but thermodynamic parameters of interactions clearly differed according to the nature of the counterion of chitosan. The influence of chitosan counterions was interpreted considering their different lyotropic character.ConclusionAssociation of siRNA with our siRNA carrier was influenced by the nature of counterions associated with chitosan. Driven by entropic phenomena including dehydration, interactions were favored by acetate counterion. Although more work would be needed to decipher the influence of the counterion of chitosan during association with siRNA, it was pointed out as a new critical attribute of chitosan to consider while formulating siRNA carrier with this polysaccharide.
机译:目的的工作旨在比较用壳聚糖制备的SiRNA载体的质量,其两种不同来源具有相似程度的脱乙酰化和分子量。用与siRNA的相互作用的热力学特征分析差异鉴定了壳聚糖抗衡壳,并从CSLAB上的CSCOM交换抗衡离子获得壳聚糖CS(COM)MOD1和CS(COM)MOD2。考虑到凝胶电泳的尺寸,Zeta电位和siRNA关联能力检查载体质量。通过等温滴定热法(ITC)测定在溶液中SiRNA和壳聚糖体之间的相互作用的相互作用参数通过等温滴定热量(ITC).resultscs(实验室)和Cs(COM)Mod2具有高含量的醋酸含量相关的siRNA,而不是CSCOM和CS (COM)MOD1主要包括氯化物。 ITC测量表明,与壳聚糖和siRNA载体的siRNA相互作用被包括脱水的熵现象驱动,但相互作用的热力学参数根据壳聚糖反驳的性质明显不同。考虑到其不同的旋流性特征,解释了壳聚糖抗分的影响。用我们的siRNA载体的siRNA分离siRNA的分解受与壳聚糖相关的反逆性的性质的影响。由熵现象驱动,包括脱水,相互作用受醋酸乙酸抗体的青睐。尽管在与siRNA相关联的关系期间,需要更多的作品来破译壳聚糖的反逆剂的影响,但它被指出作为壳聚糖的新临界属性,同时用这种多糖配制siRNA载体。

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