Lindhoud Saskia, Norde Willem, Cohen Stuart Martien A
Laboratory of Physical Chemistry and Colloid Science, Wageningen University, Dreijenplein 6, 6703 HB Wageningen, The Netherlands.
J Phys Chem B. 2009 Apr 23;113(16):5431-9. doi: 10.1021/jp809489f.
In this study, the formation and disintegration of polyelectrolyte complex micelles is studied by dynamic light scattering titrations with the aim to assess the extent to which these complexes equilibrate. Also, the time evolution of samples at fixed (electroneutral) composition was followed to obtain information about the relaxation time of the complex formation. We find that, in 3.5 mM phosphate buffer with pH 7, polyelectrolyte complex micelles consisting of the positively charged homopolymer PDMAEMA(150), the negatively charged diblock copolymer PAA(42)-PAAm(417) (both having a pH-dependent charge), as well as the positively charged protein lysozyme slowly equilibrate with a relaxation time of about 2 days. The same structures were obtained, independent of the way the polymers and proteins had been mixed. In contrast, polyelectrolyte complex micelles (at the same pH) consisting of (pH-dependent) negatively charged homopolymer PAA(139), the pH-independent positively charged diblock copolymer P2MVP(41)-PEO(205), and the negatively charged protein alpha-lactalbumin did not equilibrate. The way in which solutions containing these macromolecules were mixed yielded different results that did not change over the period of at least a week.
在本研究中,通过动态光散射滴定法研究了聚电解质复合胶束的形成和解离,目的是评估这些复合物达到平衡的程度。此外,跟踪固定(电中性)组成的样品的时间演变,以获取有关复合物形成弛豫时间的信息。我们发现,在pH值为7的3.5 mM磷酸盐缓冲液中,由带正电的均聚物PDMAEMA(150)、带负电的二嵌段共聚物PAA(42)-PAAm(417)(两者均具有pH依赖性电荷)以及带正电的蛋白质溶菌酶组成的聚电解质复合胶束以约2天的弛豫时间缓慢达到平衡。无论聚合物和蛋白质的混合方式如何,都能得到相同的结构。相比之下,由(pH依赖性)带负电的均聚物PAA(139)、pH不依赖的带正电的二嵌段共聚物P2MVP(41)-PEO(205)以及带负电的蛋白质α-乳白蛋白组成的聚电解质复合胶束(在相同pH下)没有达到平衡。含有这些大分子的溶液的混合方式产生了不同的结果,且在至少一周的时间内没有变化。