Related Experiment Video
Updated: Sep 27, 2026

Protocol to Create Chronic Wounds in Diabetic Mice
Published on: September 25, 2019
Selenomethionine Attenuates Hydrogen Peroxide-Induced Oxidative Injury and Modulates Unfolded Protein
Xin Xin1, Xiangzi Li2, Shiyu Jin1
1Department of Veterinary Medicine, College of Agriculture, Yanbian University, Yanji 133002, China.
Abstract:
Oxidative stress disrupts skeletal muscle cell survival and proteostasis, thereby compromising animal skeletal muscle health. As an organic selenium source, selenomethionine (SeMet) participates in antioxidant defense and selenoprotein regulation. However, its protective role in hydrogen peroxide (H2O2)-induced injury in C2C12 myoblasts and its association with unfolded protein response (UPR)-related molecular changes remain incompletely understood. This study investigated whether SeMet alleviates H2O2-induced injury in C2C12 myoblasts and whether this effect is associated with UPR-related marker changes. C2C12 myoblasts were treated with H2O2 and SeMet, and cell survival was evaluated using cell viability assays and calcein acetoxymethyl ester/propidium iodide co-staining. The expression of selenoprotein-, UPR-, and apoptosis-related genes was examined by quantitative real-time PCR, and corresponding protein levels were assessed by Western blotting. SeMet improved cell survival under oxidative stress and increased Selenof mRNA and SELENOF protein expression. It also attenuated aberrant changes in endoplasmic reticulum and mitochondrial UPR-related markers and reduced apoptosis-associated molecular responses. These findings indicate that SeMet protects C2C12 myoblasts against H2O2-induced oxidative injury. This protective effect may be associated with changes in SELENOF expression, UPR-related markers, and apoptosis-associated molecular responses, providing molecular evidence for its potential role in maintaining skeletal muscle cell homeostasis.
Related Concept Videos
Peroxisomes
Protein Modifications in the RER
Broadly, these modifications can be categorized into four main categories — glycosylation, formation of disulfide bonds, assembly of protein subunits, and specific proteolytic cleavages like removal of signal sequences.
The Unfolded Protein Response