Bartolomei Arianna, D'Amato Elvira, Scarpa Marina, Bergamaschi Greta, Gori Alessandro, Bettotti Paolo
Nanoscience Laboratory, Department of Physics, University of Trento, v. Sommarive 14, Povo, 38123 Trento, Italy.
National Research Council of Italy, Istituto di Chimica del Riconoscimento Molecolare (ICRM), Via Mario Bianco, 9, 20131 Milano, Italy.
Gels. 2025 Mar 12;11(3):197. doi: 10.3390/gels11030197.
Hydrogels find widespread use in bioapplications for their ability to retain large amounts of water while maintaining structural integrity. In this article, we investigate hybrid hydrogels made of nanocellulose and either amino-polyethylenglycol or sodium alginates and we present two novel results: (1) the biocompatibility of the amino-containing hybrid gel synthesized using a simplified receipt does not require any intermediate synthetic step to functionalize either component and (2) the fluctuation in the second-order correlation function of a dynamic light scattering experiment provides relevant information about the characteristic internal dynamics of the materials across the entire sol-gel transition as well as quantitative information about the ion-specific gel formation. This novel approach offers significantly better temporal (tens of μs) and spatial (tens of μm) resolution than many other state-of-the-art techniques commonly used for such analyses (such as rheometry, SAXS, and NMR) and it might find widespread application in the characterization of nano- to microscale dynamics in soft materials.
水凝胶因其能够在保持结构完整性的同时保留大量水分的能力,而在生物应用中得到广泛应用。在本文中,我们研究了由纳米纤维素与氨基聚乙二醇或海藻酸钠制成的混合水凝胶,并展示了两个新成果:(1)使用简化配方合成的含氨基混合凝胶的生物相容性,不需要任何中间合成步骤来使任何一种组分功能化;(2)动态光散射实验的二阶相关函数的波动,提供了有关材料在整个溶胶 - 凝胶转变过程中特征内部动力学的相关信息,以及有关离子特异性凝胶形成的定量信息。这种新方法提供了比许多其他常用于此类分析的先进技术(如流变学、小角X射线散射和核磁共振)明显更好的时间(数十微秒)和空间(数十微米)分辨率,并且它可能在软材料的纳米到微米尺度动力学表征中得到广泛应用。