Prakash Gayatri, Clasky Aaron J, Gadani Kunal, Nazeri Mohammad, Gu Frank X
Department of Chemical Engineering & Applied Chemistry, University of Toronto, 200 College Street, Toronto, Ontario M5S 3E5, Canada.
Department of Chemistry, University of Waterloo, 200 University Avenue West, Waterloo, Ontario N2L 3G1, Canada.
Biomacromolecules. 2024 Dec 9;25(12):7723-7735. doi: 10.1021/acs.biomac.4c00985. Epub 2024 Nov 1.
Hyaluronic acid (HA) is a biomedically relevant polymer widely explored as a component of hydrogels. The prevailing approaches for cross-linking HA into hydrogels require chemically modifying the polymer, which can increase processing steps and complicate biocompatibility. Herein, we demonstrate an alternative approach to cross-link HA that eliminates the need for chemical modifications by leveraging the interactions between metal cations and the negatively charged, ionizable functional groups on HA. We demonstrate that HA can be cross-linked with the bivalent metal cations Mn(II), Fe(II), Co(II), Ni(II), Cu(II), Zn(II), Pd(II), and notably Mg(II). Using Mg(II) as a model, we show that ion-HA hydrogel rheological properties can be tuned by altering the HA molecular weight and concentrations of ions, NaOH, and HA. Mg(II)-HA hydrogels showed the potential for self-healing and stimulus response. Our findings lay the groundwork for developing a new class of HA-based hydrogels for use in biomedical applications and beyond.
透明质酸(HA)是一种具有生物医学相关性的聚合物,作为水凝胶的一种成分被广泛研究。将HA交联成水凝胶的主流方法需要对聚合物进行化学改性,这会增加加工步骤并使生物相容性复杂化。在此,我们展示了一种交联HA的替代方法,该方法通过利用金属阳离子与HA上带负电荷的可电离官能团之间的相互作用,消除了化学改性的需求。我们证明HA可以与二价金属阳离子Mn(II) , Fe(II) , Co(II) , Ni(II) , Cu(II) , Zn(II) , Pd(II)交联,特别是Mg(II)。以Mg(II)为例,我们表明离子-HA水凝胶的流变学性质可以通过改变HA分子量以及离子、NaOH和HA的浓度来调节。Mg(II)-HA水凝胶显示出自我修复和刺激响应的潜力。我们的研究结果为开发一类新型的基于HA的水凝胶用于生物医学及其他应用奠定了基础。