Harnessing the Antioxidative Potential of Dental Pulp Stem Cell-Conditioned Medium in Photopolymerized GelMA Hydrogels.

IF 8.1 Q1 ENGINEERING, BIOMEDICAL
Biomaterials research Pub Date : 2024-09-17 eCollection Date: 2024-01-01 DOI:10.34133/bmr.0084
Shuntaro Yamada, Niyaz Al-Sharabi, Francesco Torelli, Ana Angelova Volponi, Linda Sandven, Minoru Ueda, Inge Fristad, Kamal Mustafa
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Abstract

Gelatin methacryloyl (GelMA) stands out for its biocompatibility, tunability, and functionality, being often selected as a scaffolding material. However, the biological modulations induced by its photocrosslinking process on mesenchymal stem cells as well as stress mitigation measures remain insufficiently explored. By using GelMA of Good Manufacturing Practice (GMP) grade, this study aimed (a) to achieve a comprehensive understanding of the biological effects of photocrosslinking process with a specific focus on oxidative stress and (b) to develop a strategy to mitigate the adverse effects by employing conditioned medium (CM) by dental pulp stem cells (DPSCs). Following photocrosslinking, pathways related to oxidative phosphorylation and DNA repair were enriched in the presence of DPSC-CM carrying various antioxidants such as peroxiredoxin (PRDX) 1-6 and superoxide dismutase type 1 (SOD1), while the control samples exhibited enrichment in inflammatory signaling pathways. Incorporating DPSC-CM into the hydrogel notably reduced the degree of cellular oxidation caused by photocrosslinking and stress responses, resulting in improved cell viability, growth, motility, and osteogenic differentiation, as well as fewer apoptotic and senescent cells compared to those without DPSC-CM. The deteriorated biocompatibility of freshly crosslinked GelMA hydrogel was confirmed by the disrupted vasculature of chorioallantoic membranes in chicken embryos after implantation, which was prevented by DPSC-CM. In conclusion, this study demonstrates the robust antioxidative effects of DPSC-CM, mitigating the negative effect of GelMA photocrosslinking processes.

在光聚合 GelMA 水凝胶中利用牙髓干细胞调节介质的抗氧化潜力。
甲基丙烯酰明胶(GelMA)因其生物相容性、可调性和功能性而脱颖而出,经常被选为支架材料。然而,其光交联过程对间充质干细胞的生物调节作用以及应力缓解措施仍未得到充分探索。本研究使用符合良好生产规范(GMP)等级的 GelMA,旨在:(a)全面了解光交联过程的生物效应,特别关注氧化应激;(b)开发一种策略,通过牙髓干细胞(DPSCs)使用条件培养基(CM)来减轻不利影响。光交联后,在含有各种抗氧化剂(如过氧化物酶(PRDX)1-6和1型超氧化物歧化酶(SOD1))的DPSC-CM存在下,与氧化磷酸化和DNA修复相关的通路变得丰富,而对照样本则显示炎症信号通路变得丰富。与未加入 DPSC-CM 的样品相比,在水凝胶中加入 DPSC-CM 显著降低了光交联和应激反应引起的细胞氧化程度,从而提高了细胞活力、生长、运动和成骨分化能力,减少了细胞凋亡和衰老。新鲜交联的 GelMA 水凝胶生物相容性的恶化通过植入后鸡胚绒毛膜血管的破坏得到了证实,而 DPSC-CM 则阻止了这种破坏。总之,本研究证明了 DPSC-CM 强大的抗氧化作用,可减轻 GelMA 光交联过程的负面影响。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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