Nutrients

Urolithin A's role in insulin resistance and colon cancer development

Updated

Abstract

Essence

may target overlapping pathways linking insulin resistance and colorectal tumorigenesis.

Evidence

This review summarizes recent preclinical and clinical data on urolithin A mechanisms in colorectal cancer models, type 2 diabetes contexts, and limited human biomarker research.

Caveat

Most support is mechanistic or preclinical, while human biomarker data are limited and safety and effectiveness still need targeted trials.

Simplified

Full Text

What this is

  • (UA), a metabolite from dietary ellagitannins, may play a role in both colorectal cancer (CRC) and type 2 diabetes mellitus (T2DM).
  • This review synthesizes preclinical and clinical data on UA's mechanisms and therapeutic potential.
  • UA shows promise by inducing apoptosis in cancer cells and enhancing insulin signaling, but human data remains limited.

Essence

  • (UA) has potential therapeutic effects on both colorectal cancer (CRC) and type 2 diabetes mellitus (T2DM) through shared molecular pathways. Its mechanisms include apoptosis induction in cancer cells and enhancement of insulin sensitivity.

Key takeaways

  • UA promotes G2/M cell cycle arrest and apoptosis in CRC cells, enhancing the efficacy of chemotherapy, particularly 5-fluorouracil (5-FU). This dual action makes UA a candidate for combinatorial cancer therapies.
  • In T2DM, UA enhances glucose uptake and insulin signaling through the activation of AMPK and PI3K pathways. This modulation improves insulin sensitivity and may aid in managing metabolic dysfunction.
  • Despite promising preclinical findings, human clinical data on UA's efficacy in CRC and T2DM are limited. Variability in individual metabolism of UA poses challenges for therapeutic application.

Caveats

  • Limited human clinical trials hinder the validation of UA's therapeutic potential. Most studies rely on in vitro systems with UA concentrations exceeding those achievable in vivo.
  • Inter-individual variability in UA metabolism can affect efficacy, as not all individuals convert ellagitannins to UA efficiently.
  • The reliance on animal models raises questions about the translational relevance of findings to human health.

Definitions

  • Urolithin A: A gut microbiota-derived metabolite from dietary ellagitannins that may influence cancer and metabolic pathways.

Simplified

Funding

Competing interests

The authors declare no competing interests.
PubMed

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