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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >A Discussion of the pH-Dependent Protonation Behaviors of Poly(2-(dimethylamino)ethyl methacrylate) (PDMAEMA) and Poly(ethylenimine-ran-2-ethyl-2-oxazoline) (P(EI-r-EOz))
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A Discussion of the pH-Dependent Protonation Behaviors of Poly(2-(dimethylamino)ethyl methacrylate) (PDMAEMA) and Poly(ethylenimine-ran-2-ethyl-2-oxazoline) (P(EI-r-EOz))

机译:聚(甲基丙烯酸2-(二甲氨基)乙酯)(PDMAEMA)和聚(乙烯亚胺-ran-2-乙基-2-恶唑啉)(P(EI-r-EOz))的pH依赖质子化行为的讨论

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In this article, we present results of our experimental and atomistic simulation studies of the pH-dependent protonation behaviors of poly-(2-(dimethy)amino)ethyl methacrylate) (PDMAEMA) and poly(ethylenimine) (PEl). The potentiometric titration profiles of the PDMAEMA polymer and its unpolymerized monomer (i.e., DMAEMA) were measured under identical conditions in order to study the influence of the covalent linkage of the amine groups on their protonation behavior. The titration curves of poly(emylenimine-ran-2-ethyl-2-oxazoiine) (P(EI-r-EOz)) random copolymers with varying monomer composition were measured in order to study the effect of the spacing between the EI monomers on the protonation behavior of the P(EI-r-EOz) copolymer. The results of these two sets of measurements demonstrate that the connectivity and tight spacing between amine groups in a polyamine chain causes the retardation of the protonation of the amine groups relative to the same compounds in their isolated state. The same titration measurements were also performed with added NaCl. The results of these measurements demonstrate that added NaCl weakens the electrostatic repulsion between charged amine groups in a polyamine chain and thus enhances the protonation of the chain, and this effect is quite significant at a physiological NaCl concentration of ISO mM. However, on the quantitative level, the effect of added NaCl was found to be very different between the PDMAEMA and P(EI-r-EOz) cases. In PDMAEMA, since the amine groups are located at the termini of the side chains, the interaction between adjacent charged monomers occurs through the aqueous medium, and therefore at a sufficiently high concentration of added NaCl, the amine groups on the chain behave almost identically to their unpolymerized equivalents. In contrast, the electrostatic interaction between two closely spaced charged EI monomers in a P(EI-r-EOz) chain is significantly less influenced by a change of the ionic strength of the medium, because it is dominated by the local dielectric property of the polymer segment located between the charged monomers. This interpretation is further supported by ab initio electron density functional theory (DFT) calculations on model oligomeric compounds whose structures imitate the repeat unit structures of the polymers. Lastly, in connection with potential applications of the PEI and PDMAEMA polymers in gene delivery technologies, it was also examined how complexation with negatively charged polymers at the physiological NaCl concentration (150 mM) impacts the protonation behaviors of the polyamines. We found that the oppositely charged polyanion greatly stabilizes the protonated form of the amine groups on the polyamine chain. However, the proton buffering capacity of the polyamine in the complexed form under the influence of added 150 mM NaCl for the intracellularly relevant pH change was found to be significantly lower than that of the pure polyamine in the uncomplexed state with no added salt.
机译:在本文中,我们介绍了聚(2-(二甲基氨基)乙基甲基丙烯酸乙酯)(PDMAEMA)和聚(乙烯亚胺)(PE1)的pH依赖质子化行为的实验和原子模拟研究的结果。为了研究胺基团的共价键合对其质​​子化行为的影响,在相同条件下测量了PDMAEMA聚合物及其未聚合单体(即DMAEMA)的电位滴定曲线。测量了具有不同单体组成的聚(亚乙基亚胺-ran-2-乙基-2-恶唑烷)(P(EI-r-EOz))无规共聚物的滴定曲线,以研究EI单体之间的间距对P(EI-r-EOz)共聚物的质子化行为这两组测量的结果表明,相对于处于分离状态的相同化合物,多胺链中胺基之间的连接性和紧密间隔会导致胺基质子化的延迟。添加的氯化钠也进行了相同的滴定测量。这些测量的结果表明,添加的NaCl会减弱多胺链中带电胺基之间的静电排斥力,从而增强链的质子化,并且在生理mCl浓度为ISO mM的情况下,这种作用非常明显。然而,在定量水平上,发现添加NaCl的效果在PDMAEMA和P(EI-r-EOz)案例之间有很大差异。在PDMAEMA中,由于胺基位于侧链的末端,相邻带电单体之间的相互作用通过水性介质发生,因此,在添加的NaCl浓度足够高的情况下,链上的胺基的行为几乎与其未聚合的等价物。相比之下,P(EI-r-EOz)链中两个紧密排列的带电EI单体之间的静电相互作用受介质离子强度变化的影响要小得多,因为它受介质的局部介电特性支配。位于带电单体之间的聚合物链段。从头开始电子密度泛函理论(DFT)对模型低聚物的结构进行模拟(其结构模仿聚合物的重复单元结构)进一步支持了这种解释。最后,结合PEI和PDMAEMA聚合物在基因传递技术中的潜在应用,还研究了在生理NaCl浓度(150 mM)下与带负电荷的聚合物的络合如何影响多胺的质子化行为。我们发现带相反电荷的聚阴离子极大地稳定了多胺链上胺基的质子化形式。然而,发现在添加的150mM NaCl的影响下,复合形式的多胺对细胞内相关pH变化的质子缓冲能力显着低于未复合状态下不添加盐的纯多胺的质子缓冲能力。

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