Natural products as modulators of ferroptosis: Therapeutic implications and molecular mechanisms in disease treatment.
3/5 보강
TL;DR
The molecular and cellular mechanisms that cause CHIP, its interplay with inflammageing, as well as the pathophysiological consequences and the translational implications for diseases that affect older individuals are discussed.
OpenAlex 토픽 ·
Ferroptosis and cancer prognosis
Clusterin in disease pathology
Cancer, Lipids, and Metabolism
ℹ️ 이 논문은 무료 전문이 아직 없습니다. 코퍼스 전체의 43.7%는 무료 가능 (통계 →) · 🏥 기관 EZproxy로 시도
The molecular and cellular mechanisms that cause CHIP, its interplay with inflammageing, as well as the pathophysiological consequences and the translational implications for diseases that affect olde
APA
W. N. Tong, Xupeng Mu, et al. (2026). Natural products as modulators of ferroptosis: Therapeutic implications and molecular mechanisms in disease treatment.. The Journal of nutritional biochemistry, 151, 110259. https://doi.org/10.1016/j.jnutbio.2026.110259
MLA
W. N. Tong, et al.. "Natural products as modulators of ferroptosis: Therapeutic implications and molecular mechanisms in disease treatment.." The Journal of nutritional biochemistry, vol. 151, 2026, pp. 110259.
PMID
41490559 ↗
Abstract 한글 요약
Ferroptosis is a regulated form of cell death characterized by iron-dependent lipid peroxide accumulation and is implicated in the pathogenesis of various diseases, including cancer, neurodegenerative disorders, diabetes, and cardiovascular diseases. Natural products, with their unique chemical scaffolds and multitarget pharmacological effects, have recently been recognized as potent modulators of ferroptosis, offering promising drug-like properties. This review comprehensively summarizes the molecular mechanisms underlying ferroptosis, encompassing iron metabolism, lipid peroxidation, and the SLC7A11-GSH-GPX4 antioxidant axis, and systematically categorizes natural products such as terpenoids, flavonoids, alkaloids, saponins, and polyphenols based on their structural classes and mechanisms of action. These compounds modulate ferroptosis through various pathways, including iron chelation, ROS regulation, and key protein interactions, demonstrating efficacy in both experimental and preliminary clinical settings across a spectrum of diseases. In oncology, natural compounds can sensitize tumors to chemotherapy and overcome drug resistance by activating ferroptotic cell death. Conversely, their antiferroptotic actions protect against tissue injury in nononcological diseases such as neurodegenerative conditions, metabolic disorders, and organ injury. Nevertheless, their application remains limited by restricted availability, compositional complexity, and unstable pharmacokinetic features. Advances in nano-delivery systems and synthetic biology are highlighted as promising strategies to overcome these barriers. Overall, natural products represent a valuable resource for developing novel ferroptosis-targeting therapies, with significant implications for future drug discovery and therapeutic innovation in a wide range of human diseases.
🏷️ 키워드 / MeSH 📖 같은 키워드 OA만
🏷️ 같은 키워드 · 무료전문 — 이 논문 MeSH/keyword 기반
- A Phase I Study of Hydroxychloroquine and Suba-Itraconazole in Men with Biochemical Relapse of Prostate Cancer (HITMAN-PC): Dose Escalation Results.
- Self-management of male urinary symptoms: qualitative findings from a primary care trial.
- Clinical and Liquid Biomarkers of 20-Year Prostate Cancer Risk in Men Aged 45 to 70 Years.
- Diagnostic accuracy of Ga-PSMA PET/CT versus multiparametric MRI for preoperative pelvic invasion in the patients with prostate cancer.
- Association of patient health education with the postoperative health related quality of life in low- intermediate recurrence risk differentiated thyroid cancer patients.
- Early local immune activation following intra-operative radiotherapy in human breast tissue.