Aug 2026· Anti-Cancer Agents in Medicinal Chemistry· Vol 26· 0 citations
Medicine
TL;DR
This review provides a theoretical basis for Isorhamnetin's anti-tumor mechanism and supports its clinical translational potential as a new strategy for cancer treatment.
Abstract
INTRODUCTION
Cancer remains a leading contributor to global mortality, and current therapeutic interventions continue to grapple with significant limitations. The multi-target characteristics and low toxicity of natural products position them as promising sources of novel anti-tumor agents. Isorhamnetin (ISO), a naturally occurring O-methylated flavonol, exemplifies this potential, demonstrating diverse bioactivities such as cardiovascular protection, inflammation modulation, and cancer suppression.
Method
This review systematically analyzed the latest advances in ISO mediated anti-tumor effects by searching databases such as PubMed and Web of Science, focusing on elucidating their molecular mechanisms, experimental evidence, and combination therapy strategies.
RESULT
Research has shown that ISO has broad-spectrum anti-tumor activity against various malignant tumors. Mechanistically, ISO inhibits tumor cell proliferation, induces apoptosis, suppresses angiogenesis, and metastasis by regulating key signaling pathways. In addition, combining ISO with traditional chemotherapy drugs or autophagy inhibitors has a synergistic effect.
Discussion
Although the multi-target anti-tumor potential of ISO has been validated, the direct molecular targets have not been fully identified, and pharmacokinetics, metabolic pathways, and bioavailability still need to be systematically evaluated. The optimal clinical dose and long-term toxicity also need to be considered to promote translational applications.
Conclusion
ISO is a promising natural anti-tumor drug with multi-target regulatory ability. This review provides a theoretical basis for its anti-tumor mechanism and supports its clinical translational potential as a new strategy for cancer treatment.
Breast and ovarian cancers represent the major contributors to cancer-related mortality among women globally. To overcome chemoresistance and other mechanisms of therapeutic escape, kaempferol- a dietary flavonoid present in fruits and vegetables- has gained attention for its marked anticancer, anti-inflammatory, and a...
R. K, Unnikrishnan B. S., Subhash Kumar et al.· Frontiers in Oncology· 0 citations
The treatment of malignant tumors is plagued by intricate challenges of pathogenesis and drug resistance, which continuously drive the scientific community to explore novel therapeutic strategies. Natural products, with their inherent chemical diversity and multi-targeted effects, have emerged as a crucial direction in...
Huan-Yun Zhang, Meng-Ran Guo, Yuwen Li et al.· Discover Oncology· 0 citations
Cancer is one of the leading causes of death worldwide, and its high incidence and mortality pose a significant threat to public health. Studies show that more than two-thirds of cancer-related deaths could be prevented through changes in lifestyle, especially dietary patterns. Proanthocyanidins, as a class of poly...
Li-Hua Wang, Wei-Dong Huang, Yan-Qiu Zhang et al.· Food Science and Human Welln...· 0 citations
Introduction Pancreatic ductal adenocarcinoma (PDAC) remains one of the most lethal malignancies of the gastrointestinal tract, characterized by its subtle onset, aggressive progression, and poor prognosis. Due to intrinsic resistance to drugs and high relapse rates after conventional therapies, the need to investigate...
Sivaramasundaram Sankarasubramanian, N. Perumal· Frontiers in Pharmacology· 0 citations
Levoglucosenone is a versatile chiral scaffold that has attracted growing interest for the design of structurally diverse bioactive molecules with potential therapeutic value. In this study, we explored the antitumor activity of three levoglucosenone-based derivatives in preclinical breast cancer models. In vitro, all...
Luciana Cañonero, Aldana M. Schey, Lizeth Ariza Bareño et al.· European Journal of Pharmaco...· 0 citations
Gastrodin (GAS), a natural polyphenolic compound derived primarily from Gastrodia elata, exhibited a wide spectrum of pharmacological activities, with growing evidence supporting its anticancer potential. This review summarized preclinical findings on the anticancer effects of GAS across multiple cancer types, includin...