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Updated: Sep 29, 2026

Affordable Oxygen Microscopy-Assisted Biofabrication of Multicellular Spheroids
Published on: April 6, 2022
Generation of Probiotic-Based Multifunctional Hydrogels Capable of Carrying Oxygen and Anti-Inflammatory Drugs and
Ulvi Suleymanzade1, Yağmur Damla Demir1, Dilek Tepeli1
1Department of Chemistry, Izmir Institute of Technology, Urla/Izmir, Türkiye.
Abstract:
Hypoxia and chronic inflammation have an interdependent relationship, as they stimulate each other. Under inflammation, hypoxia occurs in tissues and under hypoxia, transcription factors induce overproduction of pro-inflammatory cytokines, causing the chronic inflammatory process. There are very few studies that combine O2 with anti-inflammatory agents to simultaneously reduce the effects of hypoxia and inflammation. However, despite the important role of probiotic metabolites in regulating pro-inflammatory cytokines, none of these studies have addressed the combined use of O2, anti-inflammatory agents, and probiotic metabolites to effectively inhibit the harmful effects of hypoxia and inflammation. In this context, we report a biomaterial (GA-RutPMOF-CAP) consisting of a GelMA-Alginate (GA) hydrogel matrix incorporating rutin-loaded, perfluorocarbon-functionalized periodic mesoporous organosilica (RutPMOF) nanoparticles and probiotic-loaded alginate microcapsules (CAP), capable of delivering sustained O2, probiotic-derived metabolites, and pH-sensitive anti-inflammatory drug release. GA-RutPMOF-CAP, which provides approximately 90% release of the anti-inflammatory drug (Rut) at pH 6.0, > 5% O2 release within the first 5 days under hypoxic conditions, and release of probiotic metabolites over a 7-day incubation period. GA-RutPMOF-CAP does not increase the production of reactive oxygen species (ROS) during 1 and 7 day incubation periods under hypoxic conditions. Furthermore, GA-RutPMOF-CAP supports cell viability under hypoxia and promotes a decrease in TNF-α levels under LPS-stimulated normoxic conditions; this demonstrates that GA-RutPMOF-CAP has beneficial effects on cells under inflammatory-like conditions.
