Related Experiment Video
Updated: Sep 16, 2025

Protection of H9c2 Myocardial Cells from Oxidative Stress by Crocetin via PINK1/Parkin Pathway-Mediated Mitophagy
Published on: May 26, 2023
Tartary Buckwheat Peptides Prevent Oxidative Damage in Differentiated SOL8 Cells via a Mitochondria-Mediated
Yifan Xu1,2, Yawen Wang3, Min Yang4
1National Institute for Nutrition and Health, Chinese Center for Disease Control and Prevention, Beijing 100050, China.
Abstract:
Background: Under oxidative stress conditions, the increased levels of reactive oxygen species (ROS) within cells disrupt the intracellular homeostasis. Tartary buckwheat peptides exert their effects by scavenging oxidative free radicals, such as superoxide anion and hydrogen peroxide, thereby reducing oxidative damage within cells. Meanwhile, these peptides safeguard mitochondria by maintaining the mitochondrial membrane potential, decreasing the production of mitochondrial oxygen free radicals, and regulating mitochondrial biogenesis and autophagy to preserve mitochondrial homeostasis. Through these mechanisms, Tartary buckwheat peptides restore the intracellular redox balance, sustain cellular energy metabolism and biosynthesis, and ensure normal cellular physiological functions, which is of great significance for cell survival and adaptation under oxidative stress conditions. Objectives: In this experiment, a classical cellular oxidative stress model was established. Indicators related to antioxidant capacity and mitochondrial membrane potential changes, as well as pathways associated with oxidative stress, were selected for detection. The aim was to elucidate the effects of Tartary buckwheat oligopeptides on the metabolism of cells in response to oxidative stress. Methods: In this study, we established an oxidative damage model of mouse skeletal muscle myoblast (SOL8) cells using hydrogen peroxide (H2O2), investigated the pre-protective effects of Tartary buckwheat oligopeptides on H2O2-induced oxidative stress damage in SOL8 cells at the cellular level, and explored the possible mechanisms. The CCK-8 method is a colorimetric assay based on WST-8-[2-(2-methoxy-4-nitrophenyl)-3-(4-nitrophenyl)-5-(2,4-disulfophenyl)-2H-tetrazolium, monosodiumsalt], which is used to detect cell proliferation and cytotoxicity. Results: The value of CCK-8 showed that, when the cells were exposed to 0.01 mmol/L H2O2 for 1 h and 10 mg/mL Tartary buckwheat oligopeptides intervention for 48 h, these were the optimal conditions. Compared with the H2O2 group, the intervention group (KB/H2O2 group) showed that the production of ROS was significantly reduced (p < 0.001), the malondialdehyde (MDA) content was significantly decreased (p < 0.05), and the activity of catalase (CAT) was significantly increased (p < 0.01); the mitochondrial membrane potential in the KB/H2O2 group tended to return to the level of the control group, and they all showed dose-dependent effects. Compared with the H2O2 group, the mRNA expression of KEAP1 in the KB/H2O2 group decreased, while the mRNA expression of NRF2α, HO-1, nrf1, PGC-1, P62, and PINK increased. Conclusions: Therefore, Tartary buckwheat oligopeptides have a significant pre-protective effect on H2O2-induced SOL8 cells, possibly by enhancing the activity of superoxide dismutase, reducing ROS attack, balancing mitochondrial membrane potential, and maintaining intracellular homeostasis.
Insights
Tartary buckwheat oligopeptides protect against oxidative stress by reducing reactive oxygen species (ROS) and malondialdehyde, while boosting catalase activity. These peptides safeguard mitochondria, restoring cellular homeostasis and function under stress.
Area of Science:
- Cell Biology
- Biochemistry
- Nutraceutical Science
Background:
- Oxidative stress disrupts cellular homeostasis via increased reactive oxygen species (ROS).
- Tartary buckwheat peptides scavenge free radicals and protect mitochondria, preserving cellular functions.
- These peptides are crucial for cell survival and adaptation under oxidative stress.
Purpose of the Study:
- To investigate the protective effects of Tartary buckwheat oligopeptides against oxidative stress in a cellular model.
- To elucidate the mechanisms by which these peptides modulate cellular metabolism and antioxidant defense pathways.
Main Methods:
- Established an oxidative damage model using hydrogen peroxide (H2O2) in mouse skeletal muscle myoblast (SOL8) cells.
- Assessed cell viability and cytotoxicity using the CCK-8 assay.
- Measured reactive oxygen species (ROS) production, malondialdehyde (MDA) content, catalase (CAT) activity, and mitochondrial membrane potential.
- Analyzed mRNA expression of key genes involved in oxidative stress response (KEAP1, NRF2α, HO-1, nrf1, PGC-1, P62, PINK).
Main Results:
- Optimal conditions identified as 0.01 mmol/L H2O2 for 1 h and 10 mg/mL Tartary buckwheat oligopeptides for 48 h.
- Oligopeptide treatment significantly reduced ROS production (p < 0.001) and MDA content (p < 0.05).
- Catalase activity significantly increased (p < 0.01), and mitochondrial membrane potential was restored.
- Dose-dependent effects observed, with decreased KEAP1 and increased NRF2α, HO-1, nrf1, PGC-1, P62, and PINK mRNA expression.
Conclusions:
- Tartary buckwheat oligopeptides exhibit significant pre-protective effects against H2O2-induced oxidative stress in SOL8 cells.
- Mechanisms involve enhancing antioxidant enzyme activity, reducing ROS, balancing mitochondrial potential, and maintaining intracellular homeostasis.
- These findings highlight the potential of Tartary buckwheat oligopeptides as a therapeutic agent for oxidative stress-related conditions.
More Related Videos
19:44Enhancement of Apoptotic and Autophagic Induction by a Novel Synthetic C-1 Analogue of 7-deoxypancratistatin in Human Breast Adenocarcinoma and Neuroblastoma Cells with Tamoxifen
Published on: May 30, 2012
07:55Subcellular Fractionation for ERK Activation Upon Mitochondrial-derived Peptide Treatment
Published on: September 25, 2017
Related Concept Videos
The Intrinsic Apoptotic Pathway
The Extrinsic Apoptotic Pathway