Bolanta Sharon O, Malijauskaite Sigita, McGourty Kieran, O'Reilly Emmet J
Department of Chemical Sciences, Bernal Institute University of Limerick, Limerick V94 T9PX, Ireland.
Health Research Institute (HRI), University of Limerick, Limerick V94 T9PX, Ireland.
ACS Omega. 2022 Mar 11;7(11):9108-9117. doi: 10.1021/acsomega.1c03408. eCollection 2022 Mar 22.
The fabrication of highly customizable scaffolds is a key enabling technology in the development of predictive cell models for applications in drug discovery, cancer research, and regenerative medicine. Naturally derived and synthetic hydrogels are good candidates for cell growth studies, owing to their soft and biocompatible nature; however, they are often hindered by limited ranges of stiffness and the requirement to modify the gel with additional extracellular matrix (ECM) proteins for cell adherence. Here, we report on the synthesis of a printable synthetic hydrogel based on cysteine-modified poly(acrylic acid) (PAA-Cys) with tuneable mechanical and swelling properties by incorporating acrylic acid into the PAA-Cys network and subsequent photoinitiated thiol-acrylate cross-linking. Control of the acrylic acid concentration and UV curing time produces a series of hydrogels with swelling ratios in excess of 100% and Young's modulus values ranging from ∼2 to ∼35 kPa, of which most soft tissues fall within. Biocompatibility studies with RPE1 cells showed excellent cell adhesion and cell viability without the need for further modification with ECM proteins, but still can be modified as needed. The versatility of the hydrogel tuneable properties is demonstrated by culturing with RPE1 cells, which perform an important function in the visual process and the dysfunction of which may lead to various retinal abnormalities, such as glaucoma.
制备高度可定制的支架是开发用于药物发现、癌症研究和再生医学的预测性细胞模型的关键 enabling 技术。天然衍生和合成水凝胶因其柔软且生物相容性好的特性,是细胞生长研究的良好候选材料;然而,它们常常受到刚度范围有限以及需要用额外的细胞外基质(ECM)蛋白修饰凝胶以实现细胞黏附的阻碍。在此,我们报道了一种基于半胱氨酸修饰的聚丙烯酸(PAA-Cys)的可打印合成水凝胶的合成方法,通过将丙烯酸引入 PAA-Cys 网络并随后进行光引发的硫醇-丙烯酸酯交联,使其具有可调节的机械性能和溶胀性能。控制丙烯酸浓度和紫外线固化时间可制备出一系列溶胀率超过 100%且杨氏模量值在约 2 至约 35 kPa 范围内的水凝胶,大多数软组织的模量值都在此范围内。对 RPE1 细胞的生物相容性研究表明,该水凝胶具有出色的细胞黏附性和细胞活力,无需用 ECM 蛋白进行进一步修饰,但仍可根据需要进行修饰。通过与 RPE1 细胞共培养证明了水凝胶可调性能的多功能性,RPE1 细胞在视觉过程中发挥着重要作用,其功能障碍可能导致各种视网膜异常,如青光眼。