Hydrogen-rich saline solution attenuates renal ischemia-reperfusion injury
Chihiro Shingu, Hironori Koga, Isao Yokoi, Koji Goto, Satoshi Hagiwara, Shigekiyo Matsumoto, Takayuki Noguchi
Abstract:
Renal ischemia-reperfusion (I/R), an important cause of acute kidney injury, is unavoidable during various types of operations, including renal transplantation, surgical revascularization of the renal artery, partial nephrectomy, and treatment of suprarenal aortic aneurysms. Exacerbation of I/R injury is mediated by reactive oxygen species (ROS). A recent study has shown that hydrogen has antioxidant properties. In this study, we tested the hypothesis that a hydrogen-rich saline solution (HRSS) attenuates renal I/R injury in a rodent model. Rats were treated with an intravenous injection of HRSS or control saline solution followed by renal I/R. After 24 h of treatment, we performed a histological examination and transmission electron microscopy, and measured serum levels of 8-OHdG. Histological analysis revealed a marked reduction of interstitial congestion, edema, inflammation, and hemorrhage in renal tissue harvested 24 h after HRSS treatment compared to saline administration. Renal I/R injury, which led to altered mitochondrial morphology, was also inhibited by HRSS. Furthermore, serum 8-OHdG levels were significantly lower in rats treated with HRSS and subjected to renal I/R. These protective effects were likely due to the antioxidant properties of HRSS. These results suggest that HRSS is a potential therapeutic candidate for treating various I/R diseases.
Publish Year |
2010 |
Country |
Japan |
Rank |
Positive |
Journal |
Journal of Anesthesia |
Primary Topic |
Kidney |
Secondary Topic | Surgery/Transplantation |
Model |
Rat |
Tertiary Topic | Ischemia-Reperfusion Injury |
Vehicle |
Saline (Dissolved) |
pH |
Neutral |
Application |
Injection |
Comparison |
|
Complement |
|
Molecular hydrogen: prospective treatment strategy of kidney damage after cardiac surgery
2023 - Kidney - Surgery/Transplantation
Cardiac surgery-associated acute kidney injury (CS-AKI) is a common postoperative complication, mostly due increasing oxidative stress. Recently, molecular hydrogen (H2 gas), has also been applied to cardiac surgery due to its ability to reduce ...
Effect of water diuresis with hydrogen saturation on the course of acute kidney damage during the ...
2022 - Kidney - Acute Kidney Injury
Molecular hydrogen has the ability to penetrate cells, easily reach mitochondria, overcome body barriers, penetrate areas of ischemia, edema and inflammation, improve energy supply by supplying additional electrons and have antioxidant and ...
Inhalation of 4% and 67% hydrogen ameliorates oxidative stress, inflammation, apoptosis, and ...
2023 - Kidney - Acute Kidney Injury
Acute kidney injury (AKI) is the major complication of rhabdomyolysis (RM) clinically, which is usually mimicked by glycerol injection in basic research. Oxidative stress, inflammatory response and apoptosis are recognized to play important roles in ...
Hydrogen attenuates endothelial glycocalyx damage associated with partial cardiopulmonary bypass in ...
2023 - Endothelium - Surgery/Transplantation
Cardiopulmonary bypass (CPB) causes systemic inflammation and endothelial glycocalyx damage. Hydrogen has anti-oxidant and anti-inflammatory properties; therefore, we hypothesized that hydrogen would alleviate endothelial glycocalyx damage caused by ...
Hydrogen Attenuates Inflammation by Inducing Early M2 Macrophage Polarization in Skin Wound Healing
2023 - Skin - Surgery/Transplantation
The heterogeneous and highly plastic cell populations of macrophages are important mediators of cellular responses during all stages of wound healing, especially in the inflammatory stage. Molecular hydrogen (H2), which has potent antioxidant and ...
Hydrogen-generating Si-based agent improves fat graft survival in rats
2023 - Skin - Surgery/Transplantation
Background: Regulating excessive inflammation and oxidative stress in fat grafting may improve retention rates. Hydrogen effectively combats oxidative stress and inflammation and reportedly inhibits ischemia-reperfusion injury in various organs. ...