Unveiling natural anti-inflammatory compounds for sinusitis treatments by modulating FOXP3, C5aR1, and LIF

Chengjian Cao1, Md Arefin Hossen2, Md Sahriyer Efti3

  • 1Zigong Academy of Medical Sciences, Zigong First People's Hospital, Zigong, China.

Insights

Natural compounds may treat chronic rhinosinusitis (CRS) by targeting the FOXP3-C5aR1-LIF immune axis. This approach offers a novel therapeutic strategy for CRS, addressing underlying immune dysregulation often missed by current treatments.

Area of Science:

  • Immunology
  • Pharmacology
  • Otolaryngology

Background:

  • Chronic rhinosinusitis (CRS) presents a significant global health burden, affecting 12% of Western populations.
  • Current therapies for CRS primarily manage downstream inflammation, failing to address root immune dysregulation leading to disease persistence.
  • A critical regulatory axis involving FOXP3+ regulatory T cells (Tregs), C5aR1, and LIF is vital for maintaining sinonasal immune tolerance.

Purpose of the Study:

  • To review the mechanistic basis for targeting the FOXP3-C5aR1-LIF axis with natural anti-inflammatory products for CRS treatment.
  • To explore the potential of natural compounds in modulating immune dysregulation underlying CRS.
  • To identify novel therapeutic strategies for CRS beyond conventional anti-inflammatory treatments.

Main Methods:

  • A comprehensive literature review of PubMed, Scopus, and Web of Science (2000-2026) was performed.
  • Searched for research on molecular mechanisms, preclinical evidence, and clinical applications of natural compounds in inflammatory disorders and sinonasal pathways.
  • Focused on studies investigating the FOXP3-C5aR1-LIF axis and natural product interactions.

Main Results:

  • FOXP3+ Tregs are notably depleted in CRS with nasal polyps.
  • Complement signaling via C5aR1 inhibits Treg induction by activating the PI3K-AKT-mTOR pathway.
  • Natural products like EGCG, curcumin, and rosmarinic acid modulate key inflammatory pathways; bromelain and cineole show efficacy in acute sinusitis.

Conclusions:

  • The FOXP3-C5aR1-LIF axis represents a promising, yet overlooked, therapeutic target for CRS.
  • Natural compounds offer multi-target benefits, favorable safety profiles, and upstream immune modulation potential for CRS treatment.
  • Future research should focus on phenotype-based CRS populations, optimized bioavailability, and synergistic combinations of natural compounds.

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