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Hydrogen-rich water exerts anti-tumor effects comparable to 5-fluorouracil in a colorectal cancer xenograft model. | LitMetric

Background: Colorectal cancer (CRC) is the third leading cause of cancer-related deaths in the world. Tumor removal remains the preferred frontline treatment; however, effective non-surgical interventions remain a high priority. 5-fluorouracil (5-FU) is a widely used chemotherapy agent, and molecular hydrogen (H) has been recognized for its antioxidant and anti-inflammatory effects, with research also suggesting its potential anti-tumor effects. Therefore, H dissolved in water [hydrogen-rich water (HRW)], with or without 5-FU, may present itself as a novel therapeutic for CRC.

Aim: To investigate the effects of HRW, with or without 5-FU, as a novel therapeutic for CRC.

Methods: CRC was induced in the left flank of inbred Balb/c mice. A total of 24 mice bearing tumors were randomly divided into four groups ( = 6 per group) and treated as follows: (1) Control group; (2) 5-FU group that received intraperitoneal injection of 5-FU (5 mg/kg) every other day; (3) H group that received HRW, created and delivered dissolving the H-generating tablet in the animals' drinking water, with 200 μL also delivered by oral gavage; and (4) The combination group, H (administered in same way as for group three) combined with 5-FU administered same way as group two.

Results: Administration of HRW + 5-FU significantly improved tumor weight, tumor size, collagen content and fibrosis as compared to the CRC control group. Specifically, HRW attenuated oxidative stress (OS) and potentiated antioxidant activity (AA), whereas 5-FU treatment exacerbated OS and blunted AA. The combination of HRW + 5-FU significantly reduced tumor weight and size, as well as reduced collagen deposition and the degree of fibrosis, while further increasing OS and decreasing AA compared to administration of 5-FU alone.

Conclusion: Administration of HRW, with or without 5-FU, may serve as a therapeutic for treating CRC.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8790422PMC
http://dx.doi.org/10.4251/wjgo.v14.i1.242DOI Listing

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