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Cita

1. Bansal Y, Silakari O. The therapeutic journey of benzimidazoles: a review. Bioorganic & medicinal chemistry. 2012 Nov 1;20(21):6208–36. Search in Google Scholar

2. Boiani M, González M. Imidazole and benzimidazole derivatives as chemotherapeutic agents. Mini reviews in medicinal chemistry. 2005 Apr 1;5(4):409–24. Search in Google Scholar

3. Pathare B, Bansode T. Review – biological active benzimidazole derivatives. Results in Chemistry. 2021 Jan 1;3:100200. Search in Google Scholar

4. Sharma S, Anand N. Benzimidazoles. In Pharmacochemistry Library 1997 Jan 1 (Vol. 25, pp. 195–238). Elsevier. Search in Google Scholar

5. Block JH, Beale JM – Wilson and Gisvold’s Textbook of Organic Medicinal and Pharmaceutical Chemistry, Twelfth Edition, Philadelphia: Lippincott William and Wilkins, 2011, Beale JM – Antihelmintics, p 224–227. Search in Google Scholar

6. Gyires K, Fürst Zs – A farmakológia alapjai, Medicina Könyvkiadó, Budapest, 2011, p 1050–1052. Search in Google Scholar

7. Shaharyar M, Mazumder A. Benzimidazoles: A biologically active compounds. Arabian Journal of Chemistry. 2017 Feb 1;10:S157–73. Search in Google Scholar

8. Verma N, Gupta A, Soni D, Gupta JK. International Journal of Modern Pharmaceutical Research. JMPR 2021, 5(3), 167–197 Search in Google Scholar

9. European Pharmacopoeia 10th Edition, Council of Europe, Strasbourg, 2021. Search in Google Scholar

10. United States Pharmacopoeia 44th – National Formulary 39 United States Pharmacopoeia Convencion INC., Rockville Md., 2021. Search in Google Scholar

11. Son DS, Lee ES, Adunyah SE. The antitumor potentials of benzimidazole anthelmintics as repurposing drugs. Immune Network. 2020 Aug;20(4). Search in Google Scholar

12. Florio R, Carradori S, Veschi S, Brocco D, Di Genni T, Cirilli R, Casulli A, Cama A, De Lellis L. Screening of Benzimidazole-Based Anthelmintics and Their Enantiomers as Repurposed Drug Candidates in Cancer Therapy. Pharmaceuticals. 2021 Apr;14(4):372. Search in Google Scholar

13. Hamilton G, Rath B. Repurposing of anthelminthics as anti-cancer drugs. Oncomedicine. 2017;2:142–9. Search in Google Scholar

14. Chai JY, Jung BK, Hong SJ. Albendazole and mebendazole as anti-parasitic and anti-cancer agents: an update. The Korean Journal of Parasitology. 2021 Jun;59(3):189. Search in Google Scholar

15. Guerini AE, Triggiani L, Maddalo M, Bonù ML, Frassine F, Baiguini A, Alghisi A, Tomasini D, Borghetti P, Pasinetti N, Bresciani R. Mebendazole as a candidate for drug repurposing in oncology: An extensive review of current literature. Cancers. 2019 Sep;11(9):1284. Search in Google Scholar

16. Vardanyan R, Hruby V. Synthesis of essential drugs. Elsevier; 2006 Mar 10. p 583–584. Search in Google Scholar

17. Nobilis M, Vybíralová Z, Křížová V, Kubíček V, Soukupová M, Lamka J, Szotáková B, Skálová L. Sensitive chiral high-performance liquid chromatographic determination of anthelmintic flubendazole and its phase I metabolites in blood plasma using UV photodiode-array and fluorescence detection: Application to pharmacokinetic studies in sheep. Journal of Chromatography B. 2008 Dec 1;876(1):89–96 Search in Google Scholar

18. Garbuio AQ, Hanashiro T, Markman BE, Fonseca FL, Perazzo FF, Rosa PC. Evaluation and study of mebendazole polymorphs present in raw materials and tablets available in the Brazilian pharmaceutical market. J. Appl. Pharm. Sci. 2014 Nov;4:1–7.. Search in Google Scholar

19. Ogasawara Y, Ishii K, Togawa T, Tanabe S. Determination of trace amounts of sulphide in human red blood cells by high-performance liquid chromatography with fluorimetric detection after derivatization with p-phenylenediamine and iron (III). Analyst. 1991 Jan 1;116(12):1359–63. Search in Google Scholar

20. Tejada-Casado C, del Olmo-Iruela M, García-Campaña AM, Lara FJ. Green and simple analytical method to determine benzimidazoles in milk samples by using salting-out assisted liquid-liquid extraction and capillary liquid chromatography. Journal of Chromatography B. 2018 Aug 1;1091:46–52. Search in Google Scholar

21. Fresnais M, Muck A, Majewsky M, Statz B, Krausert S, Benzel J, Castel D, Le Dret L, Pfister S, Haefeli WE, Burhenne J. Rapid and sensitive drug quantification in tissue sections using matrix assisted laser desorption ionization-ion mobility-mass spectrometry profiling. Journal of the American Society for Mass Spectrometry. 2020 Jan 23;31(3):742–51. Search in Google Scholar

22. Chaudhary MK, Prajapati P, Srivastava K, Silva KF, Joshi BD, Tandon P, Ayala AP. Molecular interactions and vibrational properties of ricobendazole: Insights from quantum chemical calculation and spectroscopic methods. Journal of Molecular Structure. 2021 Apr 15;1230:129889. Search in Google Scholar

23. Tejada-Casado C, Moreno-González D, del Olmo-Iruela M, García-Campaña AM, Lara FJ. Coupling sweeping-micellar electrokinetic chromatography with tandem mass spectrometry for the therapeutic monitoring of benzimidazoles in animal urine by dilute and shoot. Talanta. 2017 Dec 1;175:542–9. Search in Google Scholar

24. Xu N, Dong J, Yang Y, Liu Y, Yang Q, Ai X. Development of a liquid chromatography–tandem mass spectrometry method with modified QuEChERS extraction for the quantification of mebendazole and its metabolites, albendazole and its metabolites, and levamisole in edible tissues of aquatic animals. Food chemistry. 2018 Dec 15;269:442–9. Search in Google Scholar

25. Hancu G, Toncean A, Podar D, Sarkany A, Drăguț C, Barabás E. Simultaneous determination of anthelmintic drugs by capillary electrophoresis using cyclodextrins as buffer additives. SN Applied Sciences. 2019 May;1(5):1–7. Search in Google Scholar

26. Tejada-Casado C, Moreno-González D, Lara FJ, García-Campaña AM, del Olmo-Iruela M. Determination of benzimidazoles in meat samples by capillary zone electrophoresis tandem mass spectrometry following dispersive liquid–liquid microextraction. Journal of Chromatography A. 2017 Mar 24;1490:212–9. Search in Google Scholar

27. Katiyar SK, Gordon VR, McLaughlin GL, Edlind TD. Antiprotozoal activities of benzimidazoles and correlations with beta-tubulin sequence. Antimicrobial agents and chemotherapy. 1994 Sep;38(9):2086–90. Search in Google Scholar

28. Yadav G, Ganguly S. Structure activity relationship (SAR) study of benzimidazole scaffold for different biological activities: A mini-review. European journal of medicinal chemistry. 2015 Jun 5;97:419–43. Search in Google Scholar

29. Stuchikova LR, Matouskova P, Vokral I – Metabolism of albendazole, ricobendazole and fubendazole in Haemonchus contortus adults: Sex differences, resistance-related differences and the identification of new metabolites, IJP: Drugs and Drug Resistance, 2018, 8(1):50–58 Search in Google Scholar

30. Kubíček V, Skálová L, Skarka A, Králová V, Holubová J, Štěpánková J, Šubrt Z, Szotáková B. Carbonyl Reduction of Flubendazole in the Human Liver: Strict Stereospecificity, Sex Difference, Low Risk of Drug Interactions. Frontiers in pharmacology. 2019 May 28;10:600. Search in Google Scholar

31. Spasov AA, Smirnova LA, Iezhitsa IN, Sergeeva SA, Ozerov AA. Pharmacokinetics of benzimidazole derivatives. Voprosy meditsinskoi khimii. 2002 May 1;48(3):233–58. Search in Google Scholar

32. Pawluk SA, Roels CA, Wilby KJ, Ensom MH. A review of pharmacokinetic drug–drug interactions with the anthelmintic medications albendazole and mebendazole. Clinical pharmacokinetics. 2015 Apr;54(4):371–83. Search in Google Scholar

33. ***Memomed 2021 (ediția 27), Editura Universitară, București 2021. Search in Google Scholar

34. Crotch-Harvey L, Thomas LA, Worgan HJ, Douglas JL, Gilby DE, McEwan NR. The effect of administration of fenbendazole on the microbial hindgut population of the horse. Journal of equine science. 2018;29(2):47–51. Search in Google Scholar

35. O’Neill M. Characterization of the effects of flubendazole, a benzimidazole anthelmintic, on filarial nematodes. McGill University (Canada); 2016. Search in Google Scholar

36. Aguayo-Ortiz R, Cano-González L, Castillo R, Hernández-Campos A, Dominguez L. Structure-based approaches for the design of benzimidazole-2-carbamate derivatives as tubulin polymerization inhibitors. Chemical biology & drug design. 2017 Jul;90(1):40–51. Search in Google Scholar

37. Son DS, Lee ES, Adunyah SE. The antitumor potentials of benzimidazole anthelmintics as repurposing drugs. Immune Network. 2020 Aug;20(4). Search in Google Scholar

38. Florio R, Carradori S, Veschi S, Brocco D, Di Genni T, Cirilli R, Casulli A, Cama A, De Lellis L. Screening of Benzimidazole-Based Anthelmintics and Their Enantiomers as Repurposed Drug Candidates in Cancer Therapy. Pharmaceuticals. 2021 Apr;14(4):372. Search in Google Scholar

39. Hanušová V, Skálová L, Králová V, Matoušková P. The effect of flubendazole on adhesion and migration in SW480 and SW620 colon cancer cells. Anti-Cancer Agents in Medicinal Chemistry (Formerly Current Medicinal Chemistry-Anti-Cancer Agents). 2018 May 1;18(6):837–46. Search in Google Scholar

40. Chen H, Weng Z, Xu C. Albendazole suppresses cell proliferation and migration and induces apoptosis in human pancreatic cancer cells. Anticancer Drugs. 2020 Jun;31(5):431–439 Search in Google Scholar

41. Lin S, Yang L, Yao Y, Xu L, Xiang Y, Zhao H, Wang L, Zuo Z, Huang X, Zhao C. Flubendazole demonstrates valid anti-tumor effects by inhibiting STAT3 and activating autophagy. Journal of Experimental & Clinical Cancer Research. 2019 Dec;38(1):1–3. Search in Google Scholar

42. Florio R, Veschi S, di Giacomo V, Pagotto S, Carradori S, Verginelli F, Cirilli R, Casulli A, Grassadonia A, Tinari N, Cataldi A. The benzimidazole-based anthelmintic parbendazole: a repurposed drug candidate that synergizes with gemcitabine in pancreatic cancer. Cancers. 2019 Dec;11(12):2042. Search in Google Scholar

43. Simbulan-Rosenthal CM, Dakshanamurthy S, Gaur A, Chen YS, Fang HB, Abdussamad M, Zhou H, Zapas J, Calvert V, Petricoin EF, Atkins MB. The repurposed anthelmintic mebendazole in combination with trametinib suppresses refractory NRASQ61K melanoma. Oncotarget. 2017 Feb 21;8(8):12576. Search in Google Scholar

44. Chen C, Ding Y, Liu H, Sun M, Wang H, Wu D. Flubendazole Plays an Important Anti-Tumor Role in Different Types of Cancers. International journal of molecular sciences. 2022 Jan;23(1):519. Search in Google Scholar

45. Rushworth LK, Hewit K, Munnings-Tomes S, Somani S, James D, Shanks E, Dufès C, Straube A, Patel R, Leung HY. Repurposing screen identifies mebendazole as a clinical candidate to synergise with docetaxel for prostate cancer treatment. Br J Cancer. 2020 Feb;122(4):517–527. Search in Google Scholar

46. Zhang F, Li Y, Zhang H, Huang E, Gao L, Luo W, Wei Q, Fan J, Song D, Liao J, Zou Y, Liu F, Liu J, Huang J, Guo D, Ma C, Hu X, Li L, Qu X, Chen L, Yu X, Zhang Z, Wu T, Luu HH, Haydon RC, Song J, He TC, Ji P. Anthelmintic mebendazole enhances cisplatin’s effect on suppressing cell proliferation and promotes differentiation of head and neck squamous cell carcinoma (HNSCC). Oncotarget. 2017 Feb 21;8(8):12968–12982. Search in Google Scholar

47. Kipper FC, Silva AO, Marc AL, Confortin G, Junqueira AV, Neto EP, Lenz G. Vinblastine and antihelmintic mebendazole potentiate temozolomide in resistant gliomas. Invest New Drugs. 2018 Apr;36(2):323–331. Search in Google Scholar

48. Simbulan-Rosenthal CM, Dakshanamurthy S, Gaur A, Chen YS, Fang HB, Abdussamad M, Zhou H, Zapas J, Calvert V, Petricoin EF, Atkins MB, Byers SW, Rosenthal DS. The repurposed anthelmintic mebendazole in combination with trametinib suppresses refractory NRASQ61K melanoma. Oncotarget. 2017 Feb 21;8(8):12576–12595. Search in Google Scholar

49. Pourgholami MH, Szwajcer M, Chin M, Liauw W, Seef J, Galettis P, Morris DL, Links M. Phase I clinical trial to determine maximum tolerated dose of oral albendazole in patients with advanced cancer. Cancer Chemother Pharmacol. 2010 Feb;65(3):597–605. Search in Google Scholar

50. Nygren P, Larsson R. Drug repositioning from bench to bedside: tumour remission by the antihelmintic drug mebendazole in refractory metastatic colon cancer. Acta Oncol. 2014 Mar;53(3):427–8. Search in Google Scholar

51. Dobrosotskaya IY, Hammer GD, Schteingart DE, Maturen KE, Worden FP. Mebendazole monotherapy and long-term disease control in metastatic adrenocortical carcinoma. Endocr Pract. 2011 May-Jun;17(3):e59–62. Search in Google Scholar

52. Morris DL, Jourdan JL, Pourgholami MH. Pilot study of albendazole in patients with advanced malignancy. Effect on serum tumor markers/high incidence of neutropenia. Oncology. 2001;61(1):42–6. Search in Google Scholar

53. Rodrigues LN, Tavares AC, Ferreira BT, Reis AK, Katiki LM. Inclusion complexes and self-assembled cyclodextrin aggregates for increasing the solubility of benzimidazoles. Brazilian Journal of Pharmaceutical Sciences. 2019 Nov 25;55. Search in Google Scholar

54. Priotti J, Baglioni MV, García A, Rico MJ, Leonardi D, Lamas MC, Márquez MM. Repositioning of anti-parasitic drugs in cyclodextrin inclusion complexes for treatment of triple-negative breast cancer. AAPS PharmSciTech. 2018 Nov;19(8):3734–41. Search in Google Scholar

55. Alavi SE, Shahmabadi HE. Anthelmintics for drug repurposing: Opportunities and challenges. Saudi Pharmaceutical Journal: SPJ. 2021 May;29(5):434. Search in Google Scholar

56. Esfahani MK, Islam N, Cabot PJ, Izake EL. Development of Thiabendazole-Loaded Mesoporous Silica Nanoparticles for Cancer Therapy. ACS Biomaterials Science & Engineering. 2021 May 30. Online ahead of print. Search in Google Scholar

57. Nath J, Paul R, Ghosh SK, Paul J, Singha B, Debnath N. Drug repurposing and relabeling for cancer therapy: Emerging benzimidazole antihelminthics with potent anticancer effects. Life Sci. 2020 Oct 1;258:118189. Search in Google Scholar

58. García-Rubiño ME, Lozano-López C, Kawano DF, Eifler-Lima VL, von Poser GL, Campos JM. Imidazoles and benzimidazoles as tubulin-modulators for anti-cancer therapy. Curr Med Chem. 2015;22(11):1312–23. Search in Google Scholar

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