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April 23, 2026Nutritional Neuroscience0 citationsOpen Access

Preclinical study of red dragon fruit ( Hylocereus polyrhizus ) betacyanins in the G93A mutant hSOD1 mouse model of amyotrophic lateral sclerosis

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CPClaudia PeñaUniversity of DenverMSMadison K. SinarUniversity of DenverLKLilia A. KozaUniversity of Denver

Key Points

  • The study aims to evaluate the therapeutic effects of betacyanin-rich red dragon fruit extract on ALS pathology in a G93A mutant mouse model.
  • G93A mutant hSOD1 mice received oral DFE treatment from disease onset until end-stage.
  • Survival, muscle strength, and histopathological evaluations were performed to assess the impact of DFE.
  • Statistical analyses were conducted to compare treated and untreated groups.
  • DFE treatment extended median lifespan by approximately 13 days in treated G93A mice.
  • Significant preservation of muscle strength and endurance was observed in treated mice.
  • Histopathological findings showed improved NMJ complexity and increased surviving motor neurons.

Abstract

Amyotrophic lateral sclerosis (ALS) is a fatal neurodegenerative disorder characterized by loss of cortical and spinal motor neurons, oxidative stress, neuroinflammation, and mitochondrial dysfunction. Betacyanins, betalain pigments found in red dragon fruit and beetroot, display powerful anti-inflammatory and free-radical scavenging properties which may help ameliorate ALS pathology and slow disease progression. The present study characterized the therapeutic effects of a betacyanin-rich red dragon fruit extract (DFE) in the G93A mutant hSOD1 transgenic mouse model of ALS. Mice were treated orally with 5% (v/v) DFE in drinking water ad libitum, from disease onset until end-stage. DFE treatment had a statistically significant effect on survival, with an approximate 13-day extension of median lifespan in the treated G93A mutant hSOD1 group. Treatment with DFE also significantly preserved muscle strength and endurance, as assessed by grip strength and rotarod behavioral testing. This was associated with a modest but statistically significant preservation of gastrocnemius muscle weight in the DFE-treated group. Histopathological analyses demonstrated improvements in NMJ size and complexity, an increase in surviving spinal cord motor neurons, and a reduction in spinal cord astrogliosis in G93A mutant hSOD1 mice treated with DFE, when compared to their untreated mutant littermates. Overall, these findings indicate that DFE, or purified betacyanin compounds, should be investigated further as potential therapeutic agents for patients with SOD1-related ALS. Additional preclinical studies in non-SOD1 models of ALS will need to be completed to determine the potential benefit of betacyanin compounds in sporadic ALS.

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Cite This Study

Peña et al. (2026) studied this question.

synapsesocial.com/papers/69e9b6aa85696592c86eb0e8https://doi.org/10.1080/1028415x.2026.2661760
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