Saravanou Sofia Falia, Samouilidou Thomai, Tsitsilianis Constantinos, Taraviras Stavros, Pasparakis George
Department of Chemical Engineering, University of Patras, Patras 26504, Greece.
Department of Physiology, School of Medicine, University of Patras, Patras 26504, Greece.
Biomacromolecules. 2025 Jan 13;26(1):567-578. doi: 10.1021/acs.biomac.4c01343. Epub 2024 Dec 29.
We report on 3D-printable polymer networks based on the combination of modified alginate-based polymer blends; two alginate polymers were prepared, namely, a thermoresponsive polymer grafted with P(NIPAM--NtBAM)-NH copolymer chains and a second polymer modified with diol/pH-sensitive 3-aminophenylboronic acid. The gelation properties were determined by the hydrophobic association of the thermosensitive chains and the formation of boronate esters. At a mixing ratio of 70/30 wt % of the thermo/diol-responsive polymers, the semi-interpenetrating network exhibited an optimum storage modulus ranging from ca. 150 Pa at 20 °C up to ca. 480 Pa at 37 °C due to the stimulated cross-linking synergism. The resulting bioink blends could promote the rapid formation of cell spheroids with an average diameter of 62.5 μm within 24 h. The network could easily be dissociated by the addition of free glucose, acting as an antagonistic disruptor of the cross-links. The proposed material was found to be nontoxic, with adequate injectability and 3D printability.
我们报道了基于改性海藻酸盐基聚合物共混物组合的3D可打印聚合物网络;制备了两种海藻酸盐聚合物,即接枝有P(NIPAM-NtBAM)-NH共聚物链的热响应聚合物和用二醇/pH敏感的3-氨基苯硼酸改性的第二种聚合物。凝胶化性质由热敏链的疏水缔合和硼酸酯的形成决定。在热响应/二醇响应聚合物的混合比例为70/30 wt%时,由于刺激的交联协同作用,半互穿网络表现出最佳储能模量,在20°C时约为150 Pa,在37°C时约为480 Pa。所得生物墨水共混物可促进在24小时内快速形成平均直径为62.5μm的细胞球。通过添加游离葡萄糖,该网络可很容易地解离,游离葡萄糖作为交联的拮抗破坏剂。所提出的材料被发现无毒,具有足够的可注射性和3D可打印性。