INFORMAZIONI SU QUESTO ARTICOLO

Cita

1. Abdel-Azeem AS, Hegazy AM, Ibrahim KS, Farrag ARH, El-Sayed EM (2013) Hepatoprotective, antioxidant, and ameliorative effects of ginger (Zingiber officinale Roscoe) and vitamin E in acetaminophen treated rats. Journal of dietary supplements 10(3):195–209.10.3109/19390211.2013.82245023927622 Search in Google Scholar

2. Almeer RS, Alarifi S, Alkahtani S, Ibrahim SR, Ali D, Moneim A (2018) The potential hepatoprotective effect of royal jelly against cadmium chloride-induced hepatotoxicity in mice is mediated by suppression of oxidative stress and upregulation of Nrf2 expression. Biomedicine & Pharmacotherapy 106:1490–1498.10.1016/j.biopha.2018.07.08930119224 Search in Google Scholar

3. Adeyemi OS, Atolani O, Banerjee P, Arolasafe G, Preissner R, Etukudoh P, Ibraheem O (2018) Computational and experimental validation of antioxidant properties of synthesized bioactive ferulic acid derivatives. International Journal of Food Properties 21(1):86–88.10.1080/10942912.2018.1439958 Search in Google Scholar

4. Antioxidants: In Depth. NCCIH (2010) Archived from the original on 25 August 2018. Retrieved 20 June 2018. Search in Google Scholar

5. Atolani O, Areh ET, Oguntoye OS, Zubair MF, Fabiyi OA, Oyegoke RA, Tarigha DE, Adamu N, Adeyemi OS, Kambizi L, Olatunji GA (2020) Chemical characterization, antioxidant, cytotoxicity, anti-toxoplasma gondii and antimicrobial potentials of the Citrus sinensis seed oil for sustainable cosmeceutical production. Heliyon, 6(2):e03399.10.1016/j.heliyon.2020.e03399703139132099925 Search in Google Scholar

6. Atolani O, Oguntoye H, Areh ET, Adeyemi OS, Kambizi L (2019) Chemical composition, anti-toxoplasma, cytotoxicity, antioxidant, and anti-inflammatory potential of Cola gigantea seed oil. Pharmaceutical Biology 57(1):154–160.10.1080/13880209.2019.1577468644222430905238 Search in Google Scholar

7. Bektur NE, Sahin E, Baycu C, Unver G (2016) Protective effects of silymarin against acetaminophen-induced hepatotoxicity and nephrotoxicity in mice. Toxicology and Industrial Health 32(4):589–600.10.1177/074823371350284124193058 Search in Google Scholar

8. Bessems JG, Vermeulen NP (2001) Paracetamol (acetaminophen)-induced toxicity: molecular and biochemical mechanisms, analogues and protective approaches. Critical reviews in toxicology 31(1):55–138. Search in Google Scholar

9. Bulku EJ, Stohs S, Cicero L, Brooks T, Halley H, Ray DS (2012) Curcumin exposure modulates multiple pro-apoptotic and anti-apoptotic signaling pathways to antagonize acetaminophen-induced toxicity. Current neurovascular research 9(1):58–71.10.2174/15672021279929708322272768 Search in Google Scholar

10. Chandrasekaran VRM, Hsu DZ, Liu MY (2009) The protective effect of sesamol against mitochondrial oxidative stress and hepatic injury in acetaminophen-overdosed rats. Shock 32(1):89–93.10.1097/SHK.0b013e31818ede6f18948843 Search in Google Scholar

11. Choi JH, Choi CY, Lee KJ, Hwang YP, Chung YC, Jeong HG (2009) Hepatoprotective effects of an anthocyanin fraction from purple-fleshed sweet potato against acetaminophen-induced liver damage in mice. Journal of medicinal food 12(2):320–326.10.1089/jmf.2007.069119459732 Search in Google Scholar

12. Corcoran GB, Racz WJ, Smith CV, Mitchell JR (1985) Effects of N-acetylcysteine on acetaminophen covalent binding and hepatic necrosis in mice. Journal of Pharmacology and Experimental Therapeutics 232(3):864–872. Search in Google Scholar

13. Dargan P, Jones A (2002) Paracetamol: balancing risk against benefit. Qjm 95(12):831–832.10.1093/qjmed/95.12.83112454327 Search in Google Scholar

14. Dkhil MA, Abdel Moneim AE, Hafez TA, Mubaraki MA, Mohamed WF, Thagfan FA, Al-Quraishy S (2019) Myristica fragrans kernels prevent paracetamol-induced hepatotoxicity by inducing anti-apoptotic genes and Nrf2/HO-1 pathway. International journal of molecular sciences 20(4):993.10.3390/ijms20040993 Search in Google Scholar

15. Du K, McGill MR, Xie Y, Bajt ML, Jaeschke H (2015) Resveratrol prevents protein nitration and release of endonucleases from mitochondria during acetaminophen hepatotoxicity. Food and Chemical Toxicology 81:62–70.10.1016/j.fct.2015.04.014 Search in Google Scholar

16. Elshazly SM, El-Moselhy MA, Barakat W (2014) Insights in the mechanism underlying the protective effect of α-lipoic acid against acetaminophen-hepatotoxicity. European journal of pharmacology, 726:116–123.10.1016/j.ejphar.2014.01.042 Search in Google Scholar

17. Esterline RL, Ray SD, Ji S (1989) Reversible and irreversible inhibition of hepatic mitochondrial respiration by acetaminophen and its toxic metabolite, N-acetyl-p-benzoquinoneimine (NAPQI). Biochemical pharmacology 38(14):2387–2390.10.1016/0006-2952(89)90481-4 Search in Google Scholar

18. Galal RM, Zaki HF, Seif ENMM, Agha AM (2012) Potential protective effect of honey against paracetamol-induced hepatotoxicity. Archives of Iranian medicine 15(11):674–80. Search in Google Scholar

19. Ghosh J, Das J, Manna P, Sil PC (2010) Arjunolic acid, a triterpenoid saponin, prevents acetaminophen (APAP)-induced liver and hepatocyte injury via the inhibition of APAP bioactivation and JNK-mediated mitochondrial protection. Free Radical Biology and Medicine 48(4):535–553.10.1016/j.freeradbiomed.2009.11.02319969075 Search in Google Scholar

20. Gum SI, Cho MK (2013) Korean red ginseng extract prevents APAP-induced hepatotoxicity through metabolic enzyme regulation: The role of ginsenoside Rg3, a protopanaxadiol. Liver International 33(7):1071–1084. Search in Google Scholar

21. Hazai E, Vereczkey L, Monostory K (2002) Reduction of toxic metabolite formation of acetaminophen. Biochemical and Biophysical Research Communications 291(4):1089–1094.10.1006/bbrc.2002.654111866476 Search in Google Scholar

22. Hinson JA, Bucci TJ, Irwin LK, Michael SL, Mayeux PR (2002) Effect of inhibitors of nitric oxide synthase on acetaminophen-induced hepatotoxicity in mice. Nitric Oxide 6(2):160–167.10.1006/niox.2001.040411890740 Search in Google Scholar

23. Hinson JA, Reid AB, McCullough SS, James LP (2004) Acetaminophen-induced hepatotoxicity: role of metabolic activation, reactive oxygen/nitrogen species, and mitochondrial permeability transition. Drug metabolism reviews 36(3-4):805–822.10.1081/DMR-200033494 Search in Google Scholar

24. Hinson JA, Roberts DW, James LP (2010) Mechanisms of acetaminophen-induced liver necrosis. In: Adverse drug reactions, Springer, Berlin, Heidelberg. pp 369–405.10.1007/978-3-642-00663-0_12283680320020268 Search in Google Scholar

25. Hu JN, Liu Z, Wang Z, Li XD, Zhang LX, Li W, Wang YP (2017) Ameliorative effects and possible molecular mechanism of action of black ginseng (Panax ginseng) on acetaminophen-mediated liver injury. Molecules 22(4):664. Search in Google Scholar

26. Jaeschke H, Williams CD, Ramachandran A, Bajt ML (2012) Acetaminophen hepatotoxicity and repair: the role of sterile inflammation and innate immunity. Liver International 32(1):8–20.10.1111/j.1478-3231.2011.02501.x358682521745276 Search in Google Scholar

27. James LP, Mayeux PR, Hinson JA (2003) Acetaminophen-induced hepatotoxicity. Drug metabolism and disposition 31(12):1499–1506.10.1124/dmd.31.12.149914625346 Search in Google Scholar

28. Kon K, Ikejima K, Okumura K, Aoyama T, Arai K, Takei Y, Sato N (2007) Role of apoptosis in acetaminophen hepatotoxicity. Journal of gastroenterology and hepatology 22:S49–S52. doi: 10.1111/j.1440-1746.2007.04962.x10.1111/j.1440-1746.2007.04962.x17567465 Search in Google Scholar

29. Kumari A, Kakkar P (2012) Lupeol prevents acetaminophen-induced in vivo hepatotoxicity by altering the Bax/Bcl-2 and oxidative stress-mediated mitochondrial signaling cascade. Life sciences 90(15-16):561–570.10.1016/j.lfs.2012.01.01222326499 Search in Google Scholar

30. Larson AM (2007) Acetaminophen hepatotoxicity. Clinics in liver disease 11(3):525–548.10.1016/j.cld.2007.06.00617723918 Search in Google Scholar

31. Lee CH, Kuo CY, Wang CJ, Wang CP, Lee YR, Hung CN, Lee HJ (2012) A polyphenol extract of Hibiscus sabdariffa L. ameliorates acetaminophen-induced hepatic steatosis by attenuating the mitochondrial dysfunction in vivo and in vitro. Bioscience, biotechnology, and biochemistry 76(4):646–651. Search in Google Scholar

32. Liu J, Luo D, Wu Y, Gao C, Lin G, Chen J, Su Z (2019) The protective effect of Sonneratia apetala fruit extract on acetaminophen-induced liver injury in mice. Evidence-Based Complementary and Alternative Medicine. https://doi.org/10.1155/2019/691983410.1155/2019/6919834660770631320915 Search in Google Scholar

33. McGill MR, Sharpe MR, Williams CD, Taha M, Curry SC, Jaeschke H (2012) The mechanism underlying acetaminophen-induced hepatotoxicity in humans and mice involves mitochondrial damage and nuclear DNA fragmentation. The Journal of clinical investigation 122(4):1574–1583.10.1172/JCI59755331446022378043 Search in Google Scholar

34. Michael SL, Pumford NR, Mayeux PR, Niesman MR, Hinson JA (1999) Pretreatment of mice with macrophage inactivators decreases acetaminophen hepatotoxicity and the formation of reactive oxygen and nitrogen species. Hepatology 30(1):186–195.10.1002/hep.51030010410385655 Search in Google Scholar

35. Nelson SD (1990) Molecular mechanisms of the hepatotoxicity caused by acetaminophen. In: Seminars in liver disease, Thieme Medical Publishers, Inc., Vol. 10, No. 04, pp 267–278. Search in Google Scholar

36. Noh JR, Kim YH, Hwang JH, Choi DH, Kim KS, Oh WK, Lee CH (2015) Sulforaphane protects against acetaminophen-induced hepatotoxicity. Food and Chemical Toxicology 80:193–200.10.1016/j.fct.2015.03.02025818464 Search in Google Scholar

37. Pang C, Zheng Z, Shi L, Sheng Y, Wei H, Wang Z, Ji L (2016) Caffeic acid prevents acetaminophen-induced liver injury by activating the Keap1-Nrf2 antioxidative defense system. Free Radical Biology and Medicine 91:236–246.10.1016/j.freeradbiomed.2015.12.02426721592 Search in Google Scholar

38. Ray SD, Corcoran GB (2009) Apoptosis and cell death. General and Applied Toxicology 247–312. Search in Google Scholar

39. Sabina E, Samuel J, RajappaRamya S, Patel S, Mandal N, Pranatharthiiharan P, Mishra PP, Rasool M (2009) Hepatoprotective and antioxidant potential of Spirulina fusiformis on acetaminophen-induced hepatotoxicity in mice. IJIB 6(1):1–5. Search in Google Scholar

40. Tien YH, Chen BH, Wang Hsu GS, Lin WT, Huang JH, Lu YF (2014) Hepatoprotective and anti-oxidant activities of Glossogyne tenuifolia against acetaminophen-induced hepatotoxicity in mice. The American journal of Chinese medicine 42(06):1385–1398.10.1142/S0192415X1450087625384447 Search in Google Scholar

41. Wang EJ, Li Y, Lin M, Chen L, Stein AP, Reuhl KR, Yang CS (1996) Protective effects of garlic and related organosulfur compounds on acetaminophen-induced hepatotoxicity in mice. Toxicology and applied pharmacology 136(1):146–154.10.1006/taap.1996.00188560468 Search in Google Scholar

42. Werawatganon D, Linlawan S, Thanapirom K, Somanawat K, Klaikeaw N, Rerknimitr R, Siriviriyakul P (2014) Aloe vera attenuated liver injury in mice with acetaminophen-induced hepatitis. BMC complementary and alternative medicine 14(1):229.10.1186/1472-6882-14-229422700225005608 Search in Google Scholar

43. Wu H, Zhang G, Huang L, Pang H, Zhang N, Chen Y, Wang G (2017) Hepatoprotective effect of polyphenol-enriched fraction from Folium Microcos on oxidative stress and apoptosis in acetaminophen-induced liver injury in mice. Oxid Med Cell Longev 2017:3631565. doi: 10.1155/2017/3631565.10.1155/2017/3631565546319528626497 Search in Google Scholar

44. Xu XY, Hu JN, Liu Z, Zhang R, He YF, Hou W, Wang ZQ, Yang G, Li W (2017) Saponins (Ginsenosides) from the leaves of Panax quinquefolius ameliorated acetaminophen-induced hepatotoxicity in mice. Journal of agricultural and food chemistry 65(18):3684–3692. Search in Google Scholar

45. Yang J, Wang XY, Xue J, Gu ZL, Xie ML (2013) Protective effect of apigenin on mouse acute liver injury induced by acetaminophen is associated with increment of hepatic glutathione reductase activity. Food & function, 4(6):939–943.10.1039/c3fo60071h23673978 Search in Google Scholar

46. Yen FL, Wu TH, Lin LT, Cham TM, Lin CC (2008) Nanoparticles formulation of Cuscuta chinensis prevents acetaminophen-induced hepatotoxicity in rats. Food and chemical toxicology 46(5):1771–1777.10.1016/j.fct.2008.01.02118308443 Search in Google Scholar

47. ***https://medlineplus.gov/druginfo/meds/a681004.html#:~:text=Acetaminophen%20is%20used%20to%20relieve,)%2C%20and%20to%20reduce%20fever. Search in Google Scholar

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