EOFY SALE: iBOTTLE+ NOW $199 — WAS $399. FINAL HOURS · 30-day risk-free trial · Free shipping

Discussion – 

0

Discussion – 

0

Hydrogen improves neurological function through attenuation of blood–brain barrier disruption in spontaneously hypertensive stroke-prone rats


Hydrogen Water Studies

StrokeIschemia-Reperfusion Injury

Hydrogen improves neurological function through attenuation of blood–brain barrier disruption in spontaneously hypertensive stroke-prone rats

by Kentaro Mori, Kojiro Wada, Naoki Otani, Satoru Takeuchi, Kimihiro Nagatani, Hiroshi Nawashiro, Takashi Sugawara

Abstract:

Enhanced oxidative stress occurs in spontaneously hypertensive stroke-prone rats (SHRSP), and is important in blood-brain barrier (BBB) disruption. Hydrogen can exert potent protective cellular effects via reduction in oxidative stress in various diseases. The present study investigated whether long-term hydrogen treatment can improve neurological function outcome in the SHRSP model, and the effects of hydrogen on BBB function, especially the oxidative stress and the activity of matrix metalloproteinases (MMPs) in this model. Fifty-six animals were randomly assigned to 2 groups and treated as follows: SHRSP treated with hydrogen-rich water (HRW) (HRW group, n = 28); and SHRSP treated with regular water (control group, n = 28). The effect of HRW on overall survival and neurological function, and the effects of HRW on reactive oxygen species, BBB function, and MMP activities were examined. HRW treatment improved neurological function and tended to improve overall survival but without significant difference. The numbers of bleeds and infarcts were lower in the cortex and hippocampus in the HRW group. The HRW group exhibited a significantly lower number of 8-hydroxy-2′-deoxyguanosine-positive cells and vessels of extravasated albumin in the hippocampus compared with the control group. MMP-9 activity was reduced in the hippocampus in the HRW group compared with the control group. The present study suggests that ingestion of HRW can improve neurological function outcome in the SHRSP model. This beneficial effect may be due to attenuation of BBB disruption via reduction in reactive oxygen species and suppression of MMP-9 activity in the hippocampus.

Read more:

https://doi.org/10.1186/s12868-015-0165-3

Related Articles:

Efficacy of inhaled hydrogen on neurological outcome following brain ischaemia during post-cardiac…

Background: Inhaled molecular hydrogen gas (H2) has been shown to improve outcomes in animal models of cardiac arrest (CA). H2 inhalation is safe and feasible in patients after CA. We investigated whether inhaled H2 would improve outcomes after out-of-hospital CA…

Year Published: 2023BrainCardiac Arrest

Hypothermic Machine Perfusion with Hydrogen Gas Reduces Focal Injury in Rat Livers…

Background: We have previously reported the efficacy of post-reperfusion H2 gas treatment in cold storage (CS) and subsequent reperfusion of the rat liver. The present study aimed to evaluate the effect of H2 gas treatment during hypothermic machine perfusion (HMP)…

Year Published: 2023LiverSurgery/Transplantation

Combination of Cold Storage in a Heavy Water-Containing Solution and Post-Reperfusion Hydrogen…

We previously reported the efficacy of cold storage (CS) using a heavy water-containing solution (Dsol) and post-reperfusion hydrogen gas treatment separately. This study aimed to clarify the combined effects of these treatments. Rat livers were subjected to 48-hour CS and…

Year Published: 2023LiverSurgery/Transplantation

The Role of LincRNA-EPS/Sirt1/Autophagy Pathway in the Neuroprotection Process by Hydrogen against…

Cerebral ischemia/reperfusion (CI/R) injury causes high disability and mortality. Hydrogen (H2) enhances tolerance to an announced ischemic event; however, the therapeutic targets for the effective treatment of CI/R injury remain uncertain. Long non-coding RNA lincRNA-erythroid prosurvival (EPS) (lincRNA-EPS) regulate various…

Year Published: 2023BrainStroke

Hyperbaric oxygen combined with hydrogen-rich saline protects against acute lung injury

Background: This study sought to investigate therapeutic effects of hydrogen-rich saline (HRS) combined with hyperbaric oxygen (HBO2) in an experimental rat model of acute lung injury (ALI). Method: Forty male Sprague-Dawley rats were randomly divided into sham, LPS, LPS +…

Year Published: 2023LungLung Injury

Molecular hydrogen: prospective treatment strategy of kidney damage after cardiac surgery

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 oxidative stress. We evaluated the potential…

Year Published: 2023KidneySurgery/Transplantation

Sam Solomon

Research Scientist at iBottle

0 Comments

Submit a Comment

0
    0
    Your Cart
    Empty CartYour cart is emptyReturn to Shop
    Secure Checkout
    Free Shipping
    30-Day Money-Back