Pumford Elizabeth A, Jackson Hoffman Brooke A, Kasko Andrea M
Department of Bioengineering, University of California Los Angeles, Los Angeles, California 90095, United States.
ACS Appl Bio Mater. 2024 Apr 15;7(4):2264-2271. doi: 10.1021/acsabm.3c01264. Epub 2024 Mar 14.
Polymeric hydrogels are versatile biomaterials, offering unique advantages in tunability and biocompatibility that make them well-suited to a range of applications. Cross-linking, a fundamental step in hydrogel fabrication, is often initiated using a toxic redox system, ammonium persulfate (APS), and tetramethylethylenediamine (TEMED), which hinders hydrogel utility in direct contact with cells (e.g., wound dressings). To overcome this limitation, we developed alternative redox gelation systems that serve as nontoxic replacements for TEMED. The alternate initiators were either synthetic or bioinspired amine-containing polymers, Glycofect and polyethylenimine (PEI). Used with APS, these initiator candidates produced hydrogels with short gelation time and comparable moduli to TEMED-based gels and underwent further mechanical testing and biocompatibility characterization. While achieving mechanical properties similar to those of the control, the gels based on Glycofect and PEI outperformed TEMED-based gels in two cell viability studies, with Glycofect-initiated gels displaying significantly higher cytocompatibility. Taken together, these results indicate that Glycofect may serve as a drop-in replacement for TEMED to fabricate hydrogels with improved biocompatibility.
聚合物水凝胶是用途广泛的生物材料,在可调性和生物相容性方面具有独特优势,使其非常适合一系列应用。交联是水凝胶制备中的一个基本步骤,通常使用有毒的氧化还原体系——过硫酸铵(APS)和四甲基乙二胺(TEMED)来引发,这阻碍了水凝胶在与细胞直接接触的应用(如伤口敷料)中的使用。为了克服这一限制,我们开发了替代的氧化还原凝胶化体系,作为TEMED的无毒替代品。替代引发剂是合成的或受生物启发的含胺聚合物,即Glycofect和聚乙烯亚胺(PEI)。与APS一起使用时,这些候选引发剂制备的水凝胶具有较短的凝胶化时间,模量与基于TEMED的凝胶相当,并进行了进一步的力学测试和生物相容性表征。在两项细胞活力研究中,基于Glycofect和PEI的凝胶在实现与对照相似的力学性能的同时,其表现优于基于TEMED的凝胶,其中由Glycofect引发的凝胶显示出显著更高的细胞相容性。综上所述,这些结果表明,Glycofect可以作为TEMED的直接替代品,用于制备具有更好生物相容性的水凝胶。