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◆ Frontiers in cell and developmental biology2026-01-01

Citrus flavanones (naringenin, hesperidin, and hesperetin) in oral and gastric carcinogenesis: mechanistic insights into oxidative stress, cell death, epigenetic regulation, non-coding RNAs, and tumor microenvironment remodeling.

Ruiting Liang, Biying Wang, Yan Liu

一句话结论 · In one sentence

Panax quinquefolius-derived nanovesicles represent a novel synergistic nanotherapy for PMOP. Their therapeutic effects are mediated by concurrent modulation of gut microbiota homeostasis, suppression of MYC-dependent inflammation, and activation of the Nrf2/HO-1 pathway. Given their natural origin, biocompatibility, and multi-target action, PQs hold significant potential for clinical translation as a safe and effective alternative for PMOP management.

原始摘要(英文原文)· Original abstract
Flavonoids derived from citrus fruits, including naringenin, naringin, hesperetin, and hesperidin, represent a class of dietary bioactives with potential chemopreventive properties against oral cancer and gastric cancer (GC). However, previous reviews have largely focused on isolated molecular pathways or single cancer types, lacking an integrated comparison of oral and gastric carcinogenesis within a unified mechanistic framework. Preclinical investigations using chemical carcinogenesis models consistently show that these compounds attenuate oxidative stress, restore cellular redox balance, and modulate critical regulators of tumor progression through interconnected redox-sensitive signaling pathways. Nanoparticle-based delivery enhances bioavailability, tissue targeting, and pharmacokinetics, amplifying their therapeutic efficacy. In oral carcinoma models, flavonoids suppress tumor growth and enhance chemosensitivity, whereas in GC they inhibit malignant progression and metastatic behavior. Additionally, these compounds influence the tumor microenvironment (TME) by modulating immune surveillance, suppressing PD-L1 expression, restraining angiogenesis, and interacting with microbial and inflammatory pathways. Epigenetic and non-coding RNA mechanisms, including DNA methylation, microRNA, and long non-coding RNA regulation, further contribute to their anticancer activity. Unlike previous reports, this review integrates intracellular signaling, TME modulation, epigenetic regulation, and nanodelivery strategies across both oral and GC models, providing a unified multi-layered mechanistic framework. Collectively, these findings delineate a multi-layered mechanistic framework for citrus flavonoids, supporting their promise as adjunctive chemopreventive agents while emphasizing the necessity for translational and clinical validation.
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Citrus flavanones (naringenin, hesperidin, and hesperetin) in oral and gastric carcinogenesis: mechanistic insights into oxidative stress, cell death, epigenetic regulation, non-coding RNAs, and tumor microenvironment remodeling. — 科研速览 Science Skim