Alkaline Water Shows Heart Risks in Rat Study

Authors
Journal
The Journal of Toxicological Sciences
Year
DOI
10.2131/jts.22.2_141
Study Type
Rat
Outcome
Negative
Peer Reviewed
Yes
Country
Japan
Health Condition
Hyperkalemia
Body System
Cardiovascular

TL;DR

Drinking alkaline ionized water (AKW) from before birth until 15 weeks old made young rats gain more weight and affected their blood cell metabolism and heart muscle, especially in males.

Key Finding

Alkaline ionized water increased metabolic enzyme activity and body weight in rats but also caused elevated blood potassium levels and heart muscle damage, particularly in males.

Summary

Researchers gave alkaline ionized water (water made alkaline through electrical treatment) to pregnant rats and their offspring up to 15 weeks of age, then compared them to rats given regular tap water. The rats drinking alkaline water gained more body weight and showed increased activity of an enzyme involved in energy production in their red blood cells. However, they also developed dangerously high potassium levels in their blood and showed signs of damage to heart muscle tissue, especially in males.

Practical Takeaway

This rat study raises safety concerns about long-term alkaline ionized water consumption, particularly regarding heart and electrolyte effects. However, this is animal research only, and results may not directly apply to humans. Anyone considering alkaline water should consult a healthcare provider, especially those with heart conditions or potassium metabolism issues.

Abstract

Alkaline ionized water (AKW) produced by the electrolysis of tap water (TPW) was given to pregnant rats throughout gestation. AKW was subsequently given to infants as a test group until 15 weeks old to determine changes in body and organ weights, erythrocyte hexokinase (HK) activity and histological preparations of myocardiac muscle. The results were compared with those for rats given TPW. Body weight of male and female rats given AKW at 3 to 11 weeks of age after birth significantly increased beyond control group values. Organ weights of offspring at 15weeks-old showed no statistical difference for either group. HK activity, the rate-determining enzyme in erythrocyte glycolysis, significantly increased in males given AKW at 15 weeks-old. This suggests that AKW intake causes elevation of metabolic activity. Hyperkalemia was observed in males and females given AKW at 15 weeks-old. Especially in males, pathological changes of necrosis in myocardiac muscle were observed.