Hydrogen Water Protects Gut Cells from Damage and Inflammation
- Authors
- Jayson M. Antonio, Ailyn Fadriquela, Yun Ju Jeong, Cheol-Su Kim, Soo-Ki Kim
- Journal
- Processes
- Year
- 2021
- DOI
- 10.3390/pr9101828
- Study Type
- Cell Culture
- Outcome
- Positive
- Peer Reviewed
- Yes
- Country
- South Korea
- Health Condition
- Inflammatory Bowel Disease
- Body System
- Digestive
TL;DR
Alkaline reduced water (ARW) helps protect gut cells from oxidative stress, potentially reducing inflammation and immune system issues related to intestinal damage.
Key Finding
Alkaline reduced water protected intestinal cells from oxidative stress damage in laboratory conditions by inhibiting specific cell-signaling pathways and reducing harmful inflammatory markers.
Summary
This laboratory study tested whether alkaline reduced water (water treated to have a lower oxidation level) could protect intestinal cells from damage caused by hydrogen peroxide, a molecule that creates oxidative stress (harmful chemical reactions in cells). Researchers found that the treated water reduced this damage by blocking certain cell-signaling pathways and preventing mitochondrial dysfunction (damage to the cell's energy-producing structures), and it also helped reduce inflammatory markers in immune cells.
Practical Takeaway
This is an early-stage laboratory study using isolated cells, not human testing, so it cannot yet demonstrate whether alkaline reduced water would have these protective effects in the human body. While the results are interesting, much more research—including animal studies and human trials—would be needed before any health claims could be supported.
Abstract
Redox imbalance in intestinal epithelial cells is critical in the early phases of intestinal injury. Dysfunction of the intestinal barrier can result in immunological imbalance and inflammation, thus leading to intestinal syndromes and associated illnesses. Several antioxidants have been discovered to be beneficial in resolving intestinal barrier dysfunction. Of these antioxidants, the effects of alkaline reduced water (ARW) in oxidative stress of intestinal epithelial cells and its immunokine modulation in vitro is unknown. In this study, we utilized ARW-enriched media to investigate its cytoprotective effect against H2O2-induced oxidative stress in DLD1 cells. We found that ARW rescued DLD1 from oxidative stress by diluting the influence of H2O2 on oxidative stress-activated MAPK signaling and mitochondrial dysfunction. Further, intestinal oxidative stress significantly affects immunokine profiles of Raw 264.7 cells (IL-6, IL-10, MCP, TNF-a, RANTES), which can be reversed by ARW. Collectively, ARW shields intestinal epithelial cells from oxidative stress, reducing the immunological mayhem caused by barrier failure.