Trudicova Monika, Smilek Jiri, Kalina Michal, Smilkova Marcela, Adamkova Katerina, Hrubanova Kamila, Krzyzanek Vladislav, Sedlacek Petr
Faculty of Chemistry, Brno University of Technology, Purkynova 118, 61200 Brno, Czech Republic.
Institute of Scientific Instruments of the Czech Academy of Sciences, Kralovopolska 147, 61264 Brno, Czech Republic.
Polymers (Basel). 2020 Oct 31;12(11):2561. doi: 10.3390/polym12112561.
This study introduces an original concept in the development of hydrogel materials for controlled release of charged organic compounds based on semi-interpenetrating polymer networks composed by an inert gel-forming polymer component and interpenetrating linear polyelectrolyte with specific binding affinity towards the carried active compound. As it is experimentally illustrated on the prototype hydrogels prepared from agarose interpenetrated by poly(styrene sulfonate) (PSS) and alginate (ALG), respectively, the main benefit brought by this concept is represented by the ability to tune the mechanical and transport performance of the material independently via manipulating the relative content of the two structural components. A unique analytical methodology is proposed to provide complex insight into composition-structure-performance relationships in the hydrogel material combining methods of analysis on the macroscopic scale, but also in the specific microcosms of the gel network. Rheological analysis has confirmed that the complex modulus of the gels can be adjusted in a wide range by the gelling component (agarose) with negligible effect of the interpenetrating component (PSS or ALG). On the other hand, the content of PSS as low as 0.01 wt.% of the gel resulted in a more than 10-fold decrease of diffusivity of model-charged organic solute (Rhodamine 6G).
本研究提出了一种用于带电有机化合物控释的水凝胶材料开发的原创概念,该材料基于由惰性凝胶形成聚合物组分和对所载活性化合物具有特定结合亲和力的互穿线性聚电解质组成的半互穿聚合物网络。正如分别由聚(苯乙烯磺酸盐)(PSS)和藻酸盐(ALG)互穿的琼脂糖制备的原型水凝胶的实验所示,这一概念带来的主要好处是能够通过操纵两种结构组分的相对含量来独立调节材料的机械性能和传输性能。提出了一种独特的分析方法,以深入了解水凝胶材料中组成-结构-性能关系,该方法结合了宏观尺度以及凝胶网络特定微观层面的分析方法。流变学分析证实,凝胶的复数模量可通过凝胶组分(琼脂糖)在很宽的范围内进行调节,而互穿组分(PSS或ALG)的影响可忽略不计。另一方面,PSS含量低至凝胶的0.01 wt.% 会导致模型带电有机溶质(罗丹明6G)的扩散率下降超过10倍。