Department of Applied Chemistry, Kyushu University, Nishi-ku, Fukuoka, Japan.
J Colloid Interface Sci. 2013 Jan 15;390(1):78-84. doi: 10.1016/j.jcis.2012.09.015. Epub 2012 Sep 19.
Here, we synthesized dextrans modified with trivalent cationic or anionic groups. Aqueous solutions of the cationic and anionic dextrans were then mixed resulting in the formation of polyion complex nanogels (PIC-NGs), which have physically crosslinked salt bridges formed between the cationic and anionic groups. To prepare PIC-NGs in high yield, the content of ionic groups in the cationic and anionic dextrans should be low to avoid interparticle salt bridge formation. The structure of the PIC-NGs is easily affected by the ionic strength of the solution because of shielding of the charges in the ionic groups. However, the conversion of a small amount of the physical crosslinks to covalent crosslinks significantly improved the stability of the PIC-NGs. The covalent crosslinking also stabilized the PIC-NGs against pH change, which will destabilize the salt bridges. These results indicated that the conversion of the small amount of physical crosslinks to covalent crosslinks stabilized the other salt bridges.
在这里,我们合成了带有三价阳离子或阴离子基团的葡聚糖。然后将阳离子和阴离子葡聚糖的水溶液混合,形成聚离子复合纳米凝胶(PIC-NGs),其中在阳离子和阴离子基团之间形成了物理交联的盐桥。为了以高产率制备 PIC-NGs,阳离子和阴离子葡聚糖中的离子基团的含量应该较低,以避免颗粒间盐桥的形成。由于离子基团的电荷被屏蔽,因此 PIC-NGs 的结构很容易受到溶液离子强度的影响。然而,将少量的物理交联转化为共价交联显著提高了 PIC-NGs 的稳定性。共价交联还稳定了 PIC-NGs 对抗 pH 值变化,这会破坏盐桥。这些结果表明,将少量的物理交联转化为共价交联稳定了其他盐桥。