Hlushko Raman, Marin Alexander, Andrianov Alexander K
Institute for Bioscience and Biotechnology Research, University of Maryland, Rockville, MD 20850, USA.
Soft Matter. 2025 Jan 15;21(3):418-426. doi: 10.1039/d4sm01254b.
Self-assembly of proteins and polyelectrolytes in aqueous solutions is a promising approach for the development of advanced biotherapeutics and engineering efficient biotechnological processes. Synthetic polyions containing sterically repulsive ethylene oxide moieties are especially attractive as protein modifying agents, as they can potentially induce a PEGylation-like stabilizing effect without the need for complex covalent binding reactions. In this study, we investigated the protein-binding properties of anionic polyelectrolytes based on an inorganic polyphosphazene backbone, with ethylene oxide groups incorporated into both grafted and linear macromolecular topologies. The study was conducted in aqueous solutions using isothermal titration calorimetry, dynamic light scattering, and cryogenic electron microscopy to analyze the samples in their vitrified state. Our findings revealed that the stability of the resulting protein-polyion complexes and the thermodynamic profiles of these interactions were influenced by the molecular architecture of the polyions. Furthermore, the formation of hierarchical assemblies of polyions, through ionic crosslinking into nanogels, rapidly reduced or eliminated the ability of the polyelectrolyte to bind proteins. The comprehensive analysis, combining thermodynamic, spectroscopy and direct visualization techniques, provides valuable insights into the multivalent charge-charge interactions that are critical for the development of successful non-covalent protein modification methods.
蛋白质与聚电解质在水溶液中的自组装是开发先进生物治疗药物和构建高效生物技术工艺的一种很有前景的方法。含有空间排斥性环氧乙烷部分的合成聚离子作为蛋白质修饰剂特别具有吸引力,因为它们有可能在无需复杂共价结合反应的情况下诱导类似聚乙二醇化的稳定作用。在本研究中,我们研究了基于无机聚磷腈主链的阴离子聚电解质的蛋白质结合特性,其中环氧乙烷基团同时引入了接枝和线性大分子拓扑结构中。该研究在水溶液中使用等温滴定量热法、动态光散射和低温电子显微镜对玻璃化状态的样品进行分析。我们的研究结果表明,所得蛋白质 - 聚离子复合物的稳定性以及这些相互作用的热力学概况受聚离子分子结构的影响。此外,通过离子交联形成纳米凝胶的聚离子分级组装迅速降低或消除了聚电解质结合蛋白质的能力。结合热力学、光谱学和直接可视化技术的综合分析为多价电荷 - 电荷相互作用提供了有价值的见解,这些相互作用对于成功开发非共价蛋白质修饰方法至关重要。