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399 results on '"β-lapachone"'

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1. Human NQO1 as a Selective Target for Anticancer Therapeutics and Tumor Imaging.

2. Evaluation of doxorubicin and β‐lapachone analogs as anticancer agents, a biological and computational study.

3. Antimicrobial Efficacy of Photocaged β‐Lapachone in Bacillus subtilis Biofilms.

4. A Novel Polyamino Acid Sulfur Dioxide Prodrug Synergistically Elevates ROS with β-Lapachone in Cancer Treatment.

5. β-Lapachone promotes the recruitment and polarization of tumor-associated neutrophils (TANs) toward an antitumor (N1) phenotype in NQO1-positive cancers

6. A ferroptosis-reinforced nanocatalyst enhances chemodynamic therapy through dual H2O2 production and oxidative stress amplification.

7. β‐lapachone protects against doxorubicin‐induced hepatotoxicity through modulation of NAD+/SIRT‐1/FXR/p‐AMPK/NF‐kB and Nrf2 signaling axis.

8. Unlocking the effective alliance of β-lapachone and hydroxytyrosol against triple-negative breast cancer cells

9. Human NQO1 as a Selective Target for Anticancer Therapeutics and Tumor Imaging

10. Artemisia annua L. Polyphenols Enhance the Anticancer Effect of β-Lapachone in Oxaliplatin-Resistant HCT116 Colorectal Cancer Cells.

11. Mild-temperature responsive nanocatalyst for controlled drug release and enhanced catalytic therapy.

12. β-lapachone regulates mammalian inositol pyrophosphate levels in an NQO1-and oxygen-dependent manner.

13. A tumor-specific ROS self-supply enhanced cascade-responsive prodrug activation nanosystem for amplified chemotherapy against multidrug-resistant tumors.

14. β-Lapachone Exerts Anticancer Effects by Downregulating p53, Lys-Acetylated Proteins, TrkA, p38 MAPK, SOD1, Caspase-2, CD44 and NPM in Oxaliplatin-Resistant HCT116 Colorectal Cancer Cells.

15. Antibacterial and Antibiofilm Activities of β-Lapachone by Modulating the Catalase Enzyme.

16. Single-Cell Kinetic Modeling of β-Lapachone Metabolism in Head and Neck Squamous Cell Carcinoma.

17. Injectable thermo-sensitive hydrogel loaded hollow copper sulfide nanoparticles for ROS burst in TME and effective tumor treatment

18. Artemisia annua L. Polyphenols Enhance the Anticancer Effect of β-Lapachone in Oxaliplatin-Resistant HCT116 Colorectal Cancer Cells

19. DFT study on Fe and N decorated graphene as the drug delivery system for β-lapachone anticancer drug.

20. A Carbon‐Carbon Bond Cleavage‐Based Prodrug Activation Strategy Applied to β‐Lapachone for Cancer‐Specific Targeting.

21. A dual responsive nitric oxide / β-lapachone co-delivery platform for redox imbalance-enhanced tumor therapy.

22. Enzymatic drug release cascade from polymeric prodrug nanoassemblies enables targeted chemotherapy.

23. β-Lapachone Exerts Hypnotic Effects via Adenosine A 1 Receptor in Mice.

24. Engineering Magnetic Extracellular Vesicles Mimetics for Enhanced Targeting Chemodynamic Therapy to Overcome Ovary Cancer.

25. A CRISPR screen identifies redox vulnerabilities for KEAP1/NRF2 mutant non-small cell lung cancer

26. β-Lapachone Exerts Anticancer Effects by Downregulating p53, Lys-Acetylated Proteins, TrkA, p38 MAPK, SOD1, Caspase-2, CD44 and NPM in Oxaliplatin-Resistant HCT116 Colorectal Cancer Cells

27. β-LAPachone is renoprotective in streptozotocin-induced diabetic mice via regulating the PI3K/Akt/mTOR signaling pathway

28. β-Lapachone, an NQO1 bioactivatable drug, prevents lung tumorigenesis in mice.

29. Unlocking the effective alliance of β-lapachone and hydroxytyrosol against triple-negative breast cancer cells.

30. A collective hyperthermia-facilitated glutathione inhibition strategy for boosted oxidative stress treatment.

31. Antibacterial and Antibiofilm Activities of β-Lapachone by Modulating the Catalase Enzyme

32. Single-Cell Kinetic Modeling of β-Lapachone Metabolism in Head and Neck Squamous Cell Carcinoma

33. Inhibition of thioredoxin reductase by natural anticancer candidate β-lapachone accounts for triggering redox activation-mediated HL-60 cell apoptosis.

34. PCNA inhibition enhances the cytotoxicity of β-lapachone in NQO1-Positive cancer cells by augmentation of oxidative stress-induced DNA damage.

35. β-Lapachone promotes the recruitment and polarization of tumor-associated neutrophils (TANs) toward an antitumor (N1) phenotype in NQO1-positive cancers.

36. β-LAPachone is renoprotective in streptozotocin-induced diabetic mice via regulating the PI3K/Akt/mTOR signaling pathway.

37. Synthesis and antileishmanial activity of naphthoquinone-based hybrids.

38. Reprogramming of erythrocyte lifespan by NFκB-TNFα naphthoquinone antagonist β-lapachone is regulated by calcium overload and CK1α.

39. β-Lapachone induces ferroptosis of colorectal cancer cells via NCOA4-mediated ferritinophagy by activating JNK pathway.

40. Evaluation of acute toxicity of β-lapachone associated with chitosan as a cytoprotective agent

41. MTHFD2 Blockade Enhances the Efficacy of β-Lapachone Chemotherapy With Ionizing Radiation in Head and Neck Squamous Cell Cancer

42. Nanoparticles loaded with β -Lapachone and Fe 3+ exhibit enhanced chemodynamic therapy by producing H 2 O 2 through cascaded amplification.

43. β-lapachone protects against doxorubicin-induced hepatotoxicity through modulation of NAD + /SIRT-1/FXR/p-AMPK/NF-kB and Nrf2 signaling axis.

44. MTHFD2 Blockade Enhances the Efficacy of β-Lapachone Chemotherapy With Ionizing Radiation in Head and Neck Squamous Cell Cancer.

45. Nanostructured lipid carriers co-delivering lapachone and doxorubicin for overcoming multidrug resistance in breast cancer therapy

46. Targeting Base Excision Repair in Cancer: NQO1-Bioactivatable Drugs Improve Tumor Selectivity and Reduce Treatment Toxicity Through Radiosensitization of Human Cancer.

47. Synthesis and biological evaluation of β-lapachone and nor-β-lapachone complexes with 2-hydroxypropyl-β-cyclodextrin as trypanocidal agents.

48. β‐LAPachone ameliorates doxorubicin‐induced cardiotoxicity via regulating autophagy and Nrf2 signalling pathways in mice.

49. Synthesis of quinones with highlighted biological applications: A critical update on the strategies towards bioactive compounds with emphasis on lapachones.

50. Measuring NQO1 Bioactivation Using [2H7]Glucose

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