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1. Role of Curcuma longae Rhizoma in medical applications: research challenges and opportunities.

2. Curcumol: a review of its pharmacology, pharmacokinetics, drug delivery systems, structure–activity relationships, and potential applications.

3. Curcumol reduces lower limb arteriosclerosis in rats by inhibiting human arterial smooth muscle cell activity.

4. Curcumol Inhibits the Progression of Hepatocellular Carcinoma by Regulating the Expression of hsa_circ_0028861.

5. Icariin plus curcumol enhances autophagy through the mTOR pathway and promotes cathepsin B-mediated pyroptosis of prostate cancer cells

6. Curcumol metabolized by rat liver S9 fraction and orally administered in mouse suppressed the proliferation of colon cancer in vitro and in vivo.

7. Curcumol β-cyclodextrin inclusion complex enhances radiosensitivity of esophageal cancer under hypoxic and normoxic condition.

8. Degradation of HIF-1α induced by curcumol blocks glutaminolysis and inhibits epithelial-mesenchymal transition and invasion in colorectal cancer cells.

9. Icariin-Curcumol promotes docetaxel sensitivity in prostate cancer through modulation of the PI3K-Akt signaling pathway and the Warburg effect

10. Integrative transcriptomic and proteomics profiling analyses reveals PLK1 as a target of curcumol in hepatocellular carcinoma cells

11. Icariin-Curcumol promotes docetaxel sensitivity in prostate cancer through modulation of the PI3K-Akt signaling pathway and the Warburg effect.

13. Experimental study of curcumol inhibiting vascular endothelial growth factor-induced neovascularization

15. Curcumol inhibits EMCV replication by activating CH25H and inhibiting the formation of ROs

16. Curcumol inhibits proliferation and promotes apoptosis of human osteosarcoma cell lines

17. Curcumol Exerts Antitumor Effect via Inhibiting EGFR-Akt-Mcl-1 Signaling.

18. Curcumol Reduces Aerobic Glycolysis and Overcomes Chemoresistance by Inducing Cdh1-Mediated Skp2 Ubiquitination.

19. Effects of icariin and curcumol on autophagy, ferroptosis, and lipid metabolism based on miR‐7/m‐TOR/SREBP1 pathway on prostate cancer.

20. Design, synthesis, and biological evaluation of C-8 modified curcumol derivatives against colorectal cancer cell lines.

21. Safety Evaluation of Curcumol by a Repeated Dose 28-Day Oral Exposure Toxicity Study in Rats.

22. Synergistic anticancer mechanisms of curcumol and paclitaxel in triple-negative breast cancer treatment may involve down-regulating ZBTB7A expression via the NF-B signaling pathway

23. Therapeutic potential of Curcuma oil and its terpenoids in gynecological cancers

24. Curcumol inhibits EMCV replication by activating CH25H and inhibiting the formation of ROs.

25. Curcumol alleviates liver fibrosis through inducing autophagy and ferroptosis in hepatic stellate cells.

26. Pharmacokinetics, tissue distribution, and plasma protein binding rate of curcumol in rats using liquid chromatography tandem mass spectrometry.

27. Curcumol repressed cell proliferation and angiogenesis via SP1/mir-125b-5p/VEGFA axis in non-small cell lung cancer.

28. Effect of Curcumol on NOD-Like Receptor Thermoprotein Domain 3 Inflammasomes in Liver Fibrosis of Mice.

29. Curcumol Synergizes with Cisplatin in Osteosarcoma by Inhibiting M2-like Polarization of Tumor-Associated Macrophages.

30. A Systematic Review and Meta-Analysis of the Inhibitory Effects of Plant-Derived Sterilants on Rodent Population Abundance.

31. Role of Curcuma longae Rhizoma in medical applications: research challenges and opportunities.

32. Curcumol inhibits encephalomyocarditis virus by promoting IFN-β secretion

33. Therapeutic targets and functions of curcumol against COVID-19 and colon adenocarcinoma

34. Curcumol Suppresses CCF-Mediated Hepatocyte Senescence Through Blocking LC3B–Lamin B1 Interaction in Alcoholic Fatty Liver Disease.

35. Curcumol inhibits the growth of xenograft-tumors in mice and the biological activities of pancreatic cancer cells by regulating the miR-21-5p/SMAD7 axis.

36. Design, synthesis, and anticancer activity evaluation of curcumol derivatives.

37. Modification of lysine deacetylation regulates curcumol‐induced necroptosis through autophagy in hepatic stellate cells.

38. Curcumol alleviates liver fibrosis by inducing endoplasmic reticulum stress-mediated necroptosis of hepatic stellate cells through Sirt1/NICD pathway.

39. Synergistic anticancer mechanisms of curcumol and paclitaxel in triple-negative breast cancer treatment may involve down-regulating ZBTB7A expression via the NF-κB signaling pathway.

40. Curcumol Ameliorates Lung Inflammation and Airway Remodeling via Inhibiting the Abnormal Activation of the Wnt/β-Catenin Pathway in Chronic Asthmatic Mice

41. Curcumol Suppresses CCF-Mediated Hepatocyte Senescence Through Blocking LC3B–Lamin B1 Interaction in Alcoholic Fatty Liver Disease

42. Network Pharmacology and Comparative Transcriptome Reveals Biotargets and Mechanisms of Curcumol Treating Lung Adenocarcinoma Patients With COVID-19

43. Safety Evaluation of Curcumol by a Repeated Dose 28-Day Oral Exposure Toxicity Study in Rats

44. Curcumol simultaneously induces both apoptosis and autophagy in human nasopharyngeal carcinoma cells.

45. Curcumol Alleviates the Inflammation of Nucleus Pulposus Cells via the PI3K/Akt/NF-κB Signaling Pathway and Delays Intervertebral Disk Degeneration.

46. Curcumol inhibits encephalomyocarditis virus by promoting IFN-β secretion.

47. Curcumol inhibits ferritinophagy to restrain hepatocyte senescence through YAP/NCOA4 in non‐alcoholic fatty liver disease.

48. Curcumol Synergizes with Cisplatin in Osteosarcoma by Inhibiting M2-like Polarization of Tumor-Associated Macrophages

49. A Systematic Review and Meta-Analysis of the Inhibitory Effects of Plant-Derived Sterilants on Rodent Population Abundance

50. Terpenoids from Curcumae Rhizoma: Their anticancer effects and clinical uses on combination and versus drug therapies

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