Examining the Role of Histaminergic, Orexinergic, and Cannabinergic Systems in Redox Regulation in Gastric

Ana Laura Torres-Román1,2, Karla Lucero Rodríguez-Flores3, Víctor Manuel Hernández-Mora4

  • 1Laboratorio de Medicina Traslacional, Instituto Nacional de Cancerología, S.S.A., Mexico City, 14080, Mexico.

Insights

The histaminergic, orexinergic, and cannabinoid systems influence gastric cancer by altering redox balance. Targeting these systems offers potential therapeutic strategies for gastric cancer by modulating tumor growth and metastasis.

Area of Science:

  • Gastroenterology and Oncology
  • Molecular Biology and Signaling
  • Redox Biology

Background:

  • The histaminergic, orexinergic, and cannabinoid systems are implicated in both normal physiological functions and cancer development within digestive tissues.
  • Redox alterations, driven by these systems, are critical in oncological disorders, influencing key cellular processes like tumorigenesis.
  • These systems mediate changes in the gastric epithelium via intracellular signaling pathways, including oxidative phosphorylation and mitochondrial dysfunction.

Approach:

  • Reviewing the roles of histaminergic, orexinergic, and cannabinoid systems in gastric cancer.
  • Analyzing their association with redox alterations and intracellular signaling pathways.
  • Examining their impact on tumor transformation, proliferation, metastasis, angiogenesis, and cell death.

Key Points:

  • Histamine promotes gastric cell transformation via redox-mediated alterations in cell cycle, DNA repair, and immune response, potentially driving angiogenesis and metastasis.
  • Histamine receptor antagonists like cimetidine can counteract these pro-tumorigenic effects.
  • Orexin 1 Receptor (OX1R) agonists show potential for gastric cancer treatment by inducing tumor regression via apoptosis.
  • Cannabinoid receptor agonists exhibit dual roles: CB2 agonists increase reactive oxygen species (ROS) to promote apoptosis, while CB1 agonists decrease ROS and inflammation.

Conclusions:

  • Modulation of reactive oxygen species (ROS) by these three systems significantly impacts gastric cancer activity, affecting proliferation, metastasis, angiogenesis, and apoptosis.
  • Understanding these complex interactions is crucial for developing targeted therapies for gastric cancer.
  • Targeting these systems presents a promising avenue for novel therapeutic strategies in gastric cancer treatment.

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