Souza Andrea, Parnell Matthew, Rodriguez Brian J, Reynaud Emmanuel G
School of Biomolecular and Biomedical Science, University College Dublin, D04 V1W8 Dublin, Ireland.
School of Physics, University College Dublin, D04 V1W8 Dublin, Ireland.
Gels. 2023 Oct 27;9(11):853. doi: 10.3390/gels9110853.
Alginate-gelatin hydrogels are extensively used in bioengineering. However, despite different formulations being used to grow different cell types in vitro, their pH and its effect, together with the crosslinking ions of these formulations, are still infrequently assessed. In this work, we study how these elements can affect hydrogel stability and printability and influence cell viability and metabolism on the resulting 3D prints. Our results show that both the buffer pH and crosslinking ion (Ca or Ba) influence the swelling and degradation rates of prints. Moreover, buffer pH influenced the printability of hydrogel in the air but did not when printed directly in a fluid-phase CaCl or BaCl crosslinking bath. In addition, both U2OS and NIH/3T3 cells showed greater cell metabolic activity on one-layer prints crosslinked with Ca. In addition, Ba increased the cell death of NIH/3T3 cells while having no effect on U2OS cell viability. The pH of the buffer also had an important impact on the cell behavior. U2OS cells showed a 2.25-fold cell metabolism increase on one-layer prints prepared at pH 8.0 in comparison to those prepared at pH 5.5, whereas NIH/3T3 cells showed greater metabolism on one-layer prints with pH 7.0. Finally, we observed a difference in the cell arrangement of U2OS cells growing on prints prepared from hydrogels with an acidic buffer in comparison to cells growing on those prepared using a neutral or basic buffer. These results show that both pH and the crosslinking ion influence hydrogel strength and cell behavior.
藻酸盐 - 明胶水凝胶在生物工程中被广泛应用。然而,尽管使用了不同的配方在体外培养不同类型的细胞,但它们的pH值及其影响,以及这些配方的交联离子,仍然很少被评估。在这项工作中,我们研究了这些因素如何影响水凝胶的稳定性和可打印性,并影响所得3D打印物上的细胞活力和代谢。我们的结果表明,缓冲液pH值和交联离子(Ca或Ba)都会影响打印物的膨胀和降解速率。此外,缓冲液pH值影响水凝胶在空气中的可打印性,但直接在液相CaCl或BaCl交联浴中打印时则没有影响。此外,U2OS和NIH/3T3细胞在与Ca交联的单层打印物上均表现出更高的细胞代谢活性。此外,Ba增加了NIH/3T3细胞的细胞死亡,而对U2OS细胞活力没有影响。缓冲液的pH值对细胞行为也有重要影响。与在pH 5.5制备的单层打印物相比,U2OS细胞在pH 8.0制备的单层打印物上的细胞代谢增加了2.25倍,而NIH/3T3细胞在pH 7.0的单层打印物上表现出更高的代谢。最后,我们观察到与在使用中性或碱性缓冲液制备的打印物上生长的细胞相比,在使用酸性缓冲液的水凝胶制备的打印物上生长的U2OS细胞的细胞排列存在差异。这些结果表明,pH值和交联离子都会影响水凝胶强度和细胞行为。