International journal of molecular sciences

Melatonin Production, Its Receptors, and Gut Microbiome Interactions Show Similar Imbalance Patterns in Heart Rhythm Problems, Epilepsy, Cancer Growth, and Brain Function Changes

Updated

Abstract

Essence

A microbiota-- axis may connect with arrhythmia, epilepsy, advanced solid cancer, and cognitive phenotypes.

Evidence

This original research combined four prospectively enrolled clinical cohorts totaling 577 participants with microbiome, SCFA, melatonin, cognitive, and exploratory immune or metabolite analyses plus literature synthesis.

Caveat

The links are mostly observational and mechanistic, and systemic chronotherapy conclusions depend on circulating melatonin amplitude and phase rather than gut-local crosstalk alone.

Simplified

Key numbers

577
Total Participants
Total participants across four clinical cohorts.
111
Cohort Size: Cardiac Arrhythmias
Participants aged 46-75 with cardiac arrhythmias.
77
Cohort Size: Epilepsy
Participants aged 20-59 with epilepsy.

Full Text

What this is

  • This research investigates the relationship between , the gut microbiota, and metabolism across various health conditions.
  • It integrates data from four clinical cohorts, totaling 577 participants, focusing on cardiac arrhythmias, epilepsy, advanced cancer, and cognitive function.
  • The findings reveal a shared signature characterized by reduced microbial diversity and its implications for biosynthesis and health outcomes.

Essence

  • , characterized by reduced microbial diversity, was observed in cardiac arrhythmias, epilepsy, and advanced cancer cohorts, affecting biosynthesis. A novel microbiota-- axis suggests that gut microbes influence host production, linking dietary and behavioral factors to health outcomes.

Key takeaways

  • Moderate-to-severe was found across all disease cohorts, with reduced alpha-diversity and altered beta-structure. This aligns with existing literature linking to various health issues.
  • The core involved -active taxa, such as Bacteroides and Clostridiales, which are linked to protein breakdown and regulation. These microbial changes could impact levels and related health outcomes.
  • Participants without showed stable rhythms and better cognitive performance across ages, suggesting that maintaining a healthy microbiome may support cognitive function and production.

Caveats

  • The study's cross-sectional design limits causal inference regarding and production. Longitudinal studies are needed to establish direct relationships.
  • Novel findings about -binding sites on bacteria require independent validation to confirm their physiological relevance and specificity.
  • Cohort heterogeneity in diet and medications may confound microbiome signatures, affecting the generalizability of the results.

Definitions

  • Dysbiosis: An imbalance in the microbial communities in the body, often characterized by reduced diversity and altered composition.
  • Tryptophan: An essential amino acid that serves as a precursor for serotonin and melatonin, influencing mood and sleep.
  • Melatonin: A hormone primarily produced in the pineal gland that regulates sleep-wake cycles and has various physiological roles.

Simplified

Funding

Competing interests

2 of 14
authors report competing interests
PubMed

What Lands in Your Inbox Each Week:

  • 📚7 fresh studies
  • 📝plain-language summaries
  • direct links to original studies
  • 🏅top journal indicators
  • 📅weekly delivery
  • 🧘‍♂️always free