Antioxidant Activity of Hydrogen Nanobubbles in Water with Different Reactive Oxygen Species both in Vivo and in Vitro.
Shu Liu, Seiichi Oshita, Dang Quoc Thuyet, Masanao Saito, Takahiko Yoshimoto · Langmuir : the ACS journal of surfaces and colloids · 2018
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Independent study record
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H2HUBB TAKEAWAY
In The antioxidant capacity of hydrogen NB water was studied with respect to different reactive oxygen species (ROS) both in vitro and in vivo, using a relatively weak reduced dye, APF, the researchers showed that hydrogen NB water can effectively remove three cytotoxic ROS, •OH, ClO-, and ONOO-, from water. These findings come from a laboratory model and suggest molecular hydrogen's biological potential. Further research is needed to determine clinical relevance.
What the Researchers Tested
The antioxidant capacity of hydrogen NB water was studied with respect to different reactive oxygen species (ROS) both in vitro and in vivo.
Laboratory Model
The antioxidant capacity of hydrogen NB water was studied with respect to different reactive oxygen species (ROS) both in vitro and in vivo.
How Molecular Hydrogen Was Used
The antioxidant capacity of hydrogen NB water was studied with respect to different reactive oxygen species (ROS) both in vitro and in vivo.
What Molecular Hydrogen Changed
Using a relatively weak reduced dye, APF, the researchers showed that hydrogen NB water can effectively remove three cytotoxic ROS, •OH, ClO-, and ONOO-, from water.
H₂ Mechanisms / Biological Findings
The source material reviewed did not establish a specific molecular hydrogen mechanism for the reported findings.
Authors’ Conclusion
A distinct authors’ conclusion was not available in the source material reviewed by H2HUBB.