Safronov Alexander P, Kurilova Nadezhda M, Adamova Lidiya V, Shklyar Tatyana F, Blyakhman Felix A, Zubarev Andrey Yu
Institute of Natural Sciences and Mathematics, Ural Federal University, 620002 Ekaterinburg, Russia.
Institute of Electrophysics UB RAS, 620016 Ekaterinburg, Russia.
Biomimetics (Basel). 2023 Jun 28;8(3):279. doi: 10.3390/biomimetics8030279.
The synthesis and physicochemical properties of hydrogels with interpenetrated physical and chemical networks were considered in relation to their prospective application as biomimetic materials in biomedicine and bioengineering. The study was focused on combined hydrogels based on natural polysaccharide-calcium alginate (CaAlg) and a synthetic polymer-polyacrylamide (PAAm). The series of hydrogels with varying proportions among alginate and polyacrylamide have been synthesized, and their water uptake has been characterized depending on their composition. The equilibrium swelling and re-swelling in water after drying were considered. The compatibility of alginate and polyacrylamide in the combined blend was studied by the thermodynamic approach. It showed a controversial combination of negative enthalpy of mixing among PAAm and CaAlg with positive Gibbs energy of mixing. Mechanical and electrical properties of the combined gels with double networking were studied as relevant for their prospective use as scaffolds for tissue regeneration and working bodies in actuators. The storage modulus and the loss modulus were determined in the oscillatory compression mode as a function of proportions among natural and synthetic polymers. Both moduli substantially increased with the content of CaAlg and PAAm. The electrical (Donnan) potential of hydrogels was measured using the capillary electrode technique. The Donnan potential was negative at all compositions of hydrogels, and its absolute values increased with the content of CaAlg and PAAm.
研究了具有互穿物理和化学网络的水凝胶的合成及其物理化学性质,以及它们作为生物医学和生物工程中仿生材料的潜在应用。该研究聚焦于基于天然多糖海藻酸钙(CaAlg)和合成聚合物聚丙烯酰胺(PAAm)的复合水凝胶。合成了一系列海藻酸盐和聚丙烯酰胺比例不同的水凝胶,并根据其组成对其吸水性进行了表征。考虑了干燥后在水中的平衡溶胀和再溶胀情况。采用热力学方法研究了海藻酸盐和聚丙烯酰胺在复合共混物中的相容性。结果表明,PAAm和CaAlg的混合焓为负,而混合吉布斯自由能为正,这是一种有争议的组合。研究了具有双网络结构的复合凝胶的机械和电学性质,这些性质与它们作为组织再生支架和致动器工作体的潜在用途相关。在振荡压缩模式下测定了储能模量和损耗模量,作为天然和合成聚合物比例的函数。随着CaAlg和PAAm含量的增加,两种模量均显著增加。使用毛细管电极技术测量了水凝胶的电(唐南)电位。在所有水凝胶组成中,唐南电位均为负,其绝对值随CaAlg和PAAm含量的增加而增大。