The Potential Application of Plasma-Activated Water in Fibromyalgia Patients

NCT07659236 · Status: RECRUITING · Phase: NA · Type: INTERVENTIONAL · Enrollment: 80

Last updated 2026-06-22

No results posted yet for this study

Summary

Fibromyalgia is a chronic syndrome characterized by widespread pain that is commonly observed in pain, rheumatology, or rehabilitation clinics. Previous studies have suggested a fibromyalgia prevalence rate of approximately 2%. Currently, evidence shows that fibromyalgia might be partially associated with increased oxidative stress, caused by mitochondrial abnormalities, genetic abnormalities, and excessive metal intake. Some research teams have experimented with dietary adjustments to control oxidative stress, but the relationship between diet and oxidative stress has not been conclusively confirmed.

Plasma-activated water is a method of storing the high-energy benefits of water and effectively utilizing its energy. It also improves solubility and conductivity at room temperature. It involves activating nano gold particles with a specific wavelength light source to create surface plasmon resonance, resulting in thermoelectrons. These thermoelectrons then disrupt or reduce the hydrogen bonding capacity between water molecules in the tetrahedral chemical structure network, leading to the formation of smaller water molecules known as plasma-activated water.

Studies on animals have shown that plasma-activated water possesses free radical-scavenging and antioxidant properties. It can reduce liver oxidative stress damage induced by sleep deprivation and is non-toxic. Recent studies have shown that plasma-activated water can treat cancer, chronic diseases, and degenerative conditions in animal models. In a lung cancer animal model, combining plasma-activated water with cisplatin chemotherapy increased the mice's survival time. In an animal model with chronic kidney disease, drinking plasma-activated water reduced fibronectin expression and slowed kidney fibrosis. Plasma-activated water reduced oxidative stress in an animal model of chronic sleep deprivation-induced liver damage, thereby enhancing the antioxidant and anti-inflammatory capabilities of the liver cells. In an animal model with Alzheimer's disease, it reduced amyloid-β protein expression and improved memory. In a rat model with Parkinson's disease, plasma-activated water suppressed inflammation and protected nerve cells.

Since plasma-activated water has demonstrated antioxidant effects in mouse and rat animal models and previous clinical trials have shown that drinking plasma-activated water does not have toxic reactions and does not significantly affect drug metabolism in the human body, this study aims to assess the safety and potential symptom improvement effects of long-term consumption of plasma-activated water in fibromyalgia patients.

Conditions

  • Safety and Potential Symptom Improvement Effects of Long Term Consumption of Plasma Activated Water in Fibromyalgia Patients

Interventions

DIETARY_SUPPLEMENT

Plasma-Activated Water

Plasma-activated water is a method of storing the high-energy benefits of water and effectively utilizing its energy. It also enhances properties such as solubility and conductivity at room temperature. It involves activating nano gold particles with a specific wavelength light source to create surface plasmon resonance, resulting in thermoelectrons. These thermoelectrons then disrupt or reduce the hydrogen bonding capacity between water molecules in the tetrahedral chemical structure network, leading to the formation of smaller water molecules known as plasma-activated water.

OTHER

Placebo

Typical drinking water

Sponsors & Collaborators

  • Taipei Medical University

    lead OTHER

Study Design

Allocation
NON_RANDOMIZED
Purpose
TREATMENT
Masking
NONE
Model
PARALLEL

Eligibility

Min Age
20 Years
Max Age
75 Years
Sex
ALL
Healthy Volunteers
No

Timeline & Regulatory

Start
2024-07-01
Primary Completion
2026-07-31
Completion
2026-07-31

Countries

  • Taiwan

Study Locations

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Read the full study record

This page highlights key information. For complete eligibility criteria, study locations, investigator contacts, and the full protocol, visit the original record on ClinicalTrials.gov.

View NCT07659236 on ClinicalTrials.gov