Amirsadeghi Armin, Mahdavi Shahriar, Jager Paula, Kamperman Marleen, Es Sayed Julien
Zernike Institute for Advanced Materials, University of Groningen, Nijenborgh 3, Groningen 9747 AG, The Netherlands.
Biotechnology Centre, The Silesian University of Technology, B. Krzywoustego 8, Gliwice 44-100, Poland.
Biomacromolecules. 2025 Jun 9;26(6):3641-3650. doi: 10.1021/acs.biomac.5c00228. Epub 2025 May 22.
When it comes to 3D printing of hydrogels, optimizing rheological properties is crucial to ensure (i) a smooth flow of the ink through the nozzle during printing and (ii) structural integrity postprinting. Granular hydrogels offer excellent printability due to their intrinsic yield-stress properties; however, they typically lack postprinting integrity in aqueous environments. To address this limitation, a novel approach is proposed to integrate the yield-stress behavior of granular hydrogels with polyelectrolyte complexes, which exhibit tunable mechanical properties and structural integrity in aqueous media. In this approach, hybrid microgels composed of chemically co-cross-linked hyaluronic acid-chitosan polyelectrolytes are prepared in a high-salt medium to shield electrostatic interactions and then jammed to form a printable granular hydrogel. By reducing the salt concentration below the critical threshold for electrostatic association, intra- and interparticle electrostatic interactions are activated, causing both the microgels and the granular hydrogel to shrink. This process yields a hydrogel with tunable stiffness, packing density, and dimensions. Overall, this strategy paves the way for the design of 3D hydrogel constructs with dynamic properties.
在水凝胶的3D打印方面,优化流变学特性对于确保(i)打印过程中墨水在喷嘴内顺畅流动以及(ii)打印后的结构完整性至关重要。粒状水凝胶因其固有的屈服应力特性而具有出色的可打印性;然而,它们在水性环境中通常缺乏打印后的完整性。为了解决这一局限性,提出了一种新方法,即将粒状水凝胶的屈服应力行为与聚电解质复合物相结合,聚电解质复合物在水性介质中具有可调的机械性能和结构完整性。在这种方法中,由化学共交联的透明质酸 - 壳聚糖聚电解质组成的混合微凝胶在高盐介质中制备,以屏蔽静电相互作用,然后使其聚集形成可打印的粒状水凝胶。通过将盐浓度降低到静电缔合的临界阈值以下,颗粒内和颗粒间的静电相互作用被激活,导致微凝胶和粒状水凝胶都收缩。这一过程产生了一种具有可调刚度、堆积密度和尺寸的水凝胶。总体而言,该策略为设计具有动态特性的3D水凝胶结构铺平了道路。