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Okaliptol (1.8-sineol) gentamisin kaynaklı karaciğer hasarını hafifletir

Yıl 2024, Cilt: 35 Sayı: 2, 133 - 141, 03.01.2025
https://doi.org/10.35864/evmd.1549327

Öz

Aminoglikozid antibiyotik sınıfında yer alan gentamisin (GM), gram negatif bakterilere bağlı hastalıkların tedavisinde günümüzde sıklıkla tercih edilmektedir. Ancak karaciğer ve böbrek fonksiyonları üzerine belirgin yan etkilerinin olması klinik yararlılığını sınırlamaktadır. Okaliptolün (OKA, 1.8-sineol) antioksidan ve antiinflamatuar tıbbi aktiviteleri farklı çalışmalarda bildirilmiştir. Bu çalışmada GM kaynaklı hepatotoksisite üzerine OKA’nın etkilerinin değerlendirilmesi amaçlanmıştır. Çalışma grupları kontrol (K), OKA, GM ve GM + OKA'dan oluşmaktaydı ve her grupta 7 rat bulunmaktaydı. Çalışmanın sonunda ratlar uygun koşullar altında ötenazi edilerek örnekler toplandı ve biyokimyasal, histopatolojik ve immünohistokimyasal analizleri yapıldı. GM grubunda serum alanin aminotransferaz (ALT), aspartat aminotransferaz (AST) ve gama-glutamil transferaz (GGT) enzimlerinde K grubuna kıyasla anlamlı artış olduğu belirlendi (p<0.001). GM uygulamasının karaciğerlerde histopatolojik hasara neden olduğu belirlendi. Ayrıca immünohistokimyasal olarak GM grubundaki ratlarda K grubuna kıyasla 4-hidroksinonenal (4-HNE), 8-hidroksi-2'-deoksiguanozin (8-OHdG) ve malondialdehit (MDA) ekspresyonlarında anlamlı artışa neden oldu (p<0.001). Okaliptol uygulaması (GM+OKA) serum ALT, AST ve GGT enzimlerindeki artışı düzenledi. Ayrıca 4-HNE, 8-OHdG ve MDA ekspresyonlarını azalttı. GM uygulamasının neden olduğu histopatolojik hasarı azalttı. Bu çalışmanın sonuçları OKA'nın GM kaynaklı karaciğer hasarında antioksidan, koruyucu ve tedavi edici etkinlik gösterdiğini ortaya koydu.

Kaynakça

  • Abdollahi M, Asle-Rousta M, Mahmazi S. (2024) Protective effect of 1, 8-cineole (eucalyptol) against leadinduced liver injury by ameliorating oxidative stress and inflammation and modulating TLR4/MyD88/NF-κB signaling. Iranian J Basic Med Sci, 27(10), 1293-1299, doi: 10.22038/ijbms.2024.78448.16964.
  • Akcakavak G, Kazak F, Karatas O, Alakus H, Alakus I, Kirgiz O, Celik Z, Yilmaz Deveci MZ, Ozdemir O, Tuzcu M. (2024) Eucalyptol regulates Nrf2 and NF-kB signaling and alleviates gentamicin-induced kidney injury in rats by downregulating oxidative stress, oxidative DNA damage, inflammation, and apoptosis. Toxicol Mech Methods, 34(4), 413-422. doi: 10.1080/15376516.2023.2297234.
  • Akcakavak G, Kazak F, Yilmaz Deveci MZ. (2023) Eucalyptol Protects against Cisplatin-Induced Liver Injury in Rats. Biol Bullet, 50(5), 987-994. doi: 10.1134/s106235902360085x
  • Ali FE, Hassanein EH, Bakr AG, El-Shoura EA, El-Gamal DA, Mahmoud AR, Abd-Elhamid TH. (2020) Ursodeoxycholic acid abrogates gentamicin-induced hepatotoxicity in rats: Role of NF-κB-p65/TNF-α, Bax/Bcl-xl/Caspase-3, and eNOS/iNOS pathways. Life Sci, 254, 117760. doi: 10.1016/j.lfs.2020.117760
  • Al-Khamas AJ, Kadhim ZH, Al-Charak AG, Faris JK. (2020). Biochemical and histological study of rat liver toxicity induced by gentamicin and protective action of berberine. Plant Arch (09725210), 20(1), 3073-3078
  • Ayala A, Muñoz MF, Argüelles S. (2014) Lipid peroxidation: production, metabolism, and signaling mechanisms of malondialdehyde and 4‐hydroxy‐2‐nonenal. Oxid med cell longev, 2014(1), 360438.
  • Aycan-Ustyol E, Kabasakal M, Bekpinar S, Alp-Yıldırım FI, Tepe O, Giris M, Ozluk Y, Unlucerci Y, Uydes-Dogan BS, Uysal M (2017) Vascular function and arginine and dimethylarginines in gentamicin-induced renal failure: a possible effect of heme oxygenase 1 inducer hemin. Can J physiol pharmacol 95(12), 1406-1413. doi: 10.1139/cjpp-2016-0578.
  • Babaeenezhad E, Nouryazdan N, Nasri M, Ahmadvand H, Sarabi MM. (2021) Cinnamic acid ameliorate gentamicin-induced liver dysfunctions and nephrotoxicity in rats through induction of antioxidant activities. Heliyon, 7(7). e07465. doi: 10.1016/j.heliyon.2021.e07465
  • Banday AA, Farooq N, Priyamvada S, Yusufi AN, Khan F. (2008) Time dependent effects of gentamicin on the enzymes of carbohydrate metabolism, brush border membrane and oxidative stress in rat kidney tissues. Life Sci, 82(9-10), 450-459. doi: 10.1016/j.lfs.2007.11.014.
  • Bulboacă AE, Porfire AS, Rus V, Nicula CA, Bulboacă CA, Bolboacă SD. (2022) Protective effect of liposomal epigallocatechin-gallate in experimental gentamicin-induced hepatotoxicity. Antioxidants, 11(2), 412. doi: 10.3390/antiox11020412
  • Cai ZM, Peng JQ, Chen Y, Tao L, Zhang YY, Fu LY, Long QD, Shen XC. (2021) 1, 8-Cineole: A review of source, biological activities, and application. J Asian Nat prod res, 23(10), 938-954. doi: 10.1080/10286020.2020.1839432.
  • Chen C, Chen Y, Wu P, Chen B. (2014) Update on new medicinal applications of gentamicin: evidence-based review. J Formos Med Assoc 113(2), 72-82. doi: 10.1016/j.jfma.2013.10.002.
  • Cui J, Tang L, Hong Q, Lin S, Sun X, Cai G, Bai XY, Chen X. (2019) N-acetylcysteine ameliorates gentamicin-induced nephrotoxicity by enhancing autophagy and reducing oxidative damage in miniature pigs. Shock, 52(6), 622-630. doi: 10.1097/SHK.0000000000001319.
  • Ďuračková, Z. (2010). Some current insights into oxidative stress. Physiologic res, 59(4), 459-469. doi:10.33549/physiolres.931844.
  • Galaly S, Ahmed O, Mahmoud A. (2014) Thymoquinone and curcumin prevent gentamicin-induced liver injury by attenuating oxidative stress, inflammation and apoptosis. J Physiol Pharmacol, 65(6), 823-832.
  • Galan DM, Ezeudu NE, Garcia J, Geronimo CA, Berry NM, Malcolm B J. (2020) Eucalyptol (1, 8-cineole): an underutilized ally in respiratory disorders? J Essent oil res, 32(2), 103-110.
  • Graille M, Wild P, Sauvain JJ, Hemmendinger M, Guseva Canu I, Hopf NB. (2020) Urinary 8-OHdG as a biomarker for oxidative stress: a systematic literature review and meta-analysis. Int J Mol Sci 21(11), 3743. doi: 10.3390/ijms21113743
  • Hoch CC, Petry J, Griesbaum L, Weiser T, Werner K, Ploch M, Verschoor A, Multhoff G, Dezfouli AB, Wollenberg B. (2023) 1, 8-cineole (eucalyptol): A versatile phytochemical with therapeutic applications across multiple diseases. Biomed Pharmacother, 167, 115467.
  • Hsouna AB, Dhibi S, Dhifi W, Mnif W, Hfaiedh N. (2019) Chemical composition and hepatoprotective effect of essential oil from Myrtus communis L. flowers against CCL 4-induced acute hepatotoxicity in rats. RSC advances, 9(7), 3777-3787. doi:10.1039/c8ra08204a
  • Ibraheem ZO, Farhan SS, Al Sumaidaee A, Al Sufi L, Bashir A, Balwa A, Basir R. (2021) Liver functions in combined models of the gentamicin induced nephrotoxicity and metabolic syndrome induced by high fat or fructose diets: a comparative study. Toxicol Res, 37, 221-235. doi: 10.1007/s43188-020-00059-w.
  • Ince S, Kucukkurt I, Demirel HH, Arslan-Acaroz D, Varol N. (2020) Boron, a trace mineral, alleviates gentamicin-induced nephrotoxicity in rats. Biol Trace elem res, 195(2), 515-524. doi: 10.1007/s12011-019-01875-4.
  • Iqbal U, Malik A, Sial NT, Uttra AM, Rehman MF, Mehmood MH. (2024) Molecular insights of Eucalyptol (1, 8-Cineole) as an anti-arthritic agent: in vivo and in silico analysis of IL-17, IL-10, NF-κB, 5-LOX and COX-2. Inflammopharmacology, 32(3), 1941-1959. doi: 10.1007/s10787-024-01465-4.
  • Kazak F, Akcakavak G, Alakus I, Alakus H, Kirgiz O, Karatas O, Deveci MZY, Coskun P. (2024a) Proanthocyanidin alleviates testicular torsion/detorsion-induced ischemia/reperfusion injury in rats. Tissue and Cell, 89, 102459. doi: 10.1016/j.tice.2024.102459
  • Kazak F, Deveci MZY, Akçakavak G. (2024b) Eucalyptol alleviates cisplatin-induced kidney damage in rats. Drug chem toxicol, 47(2), 172-179. doi: 10.1080/01480545.2022.2156530.
  • Kazak F. (2022) A bioactive compound: eucalyptol. Livre de lyon, Lyon, France, pp.125-138.
  • Laaroussi H, Bakour, M, Ousaaid D, Ferreira-Santos P, Genisheva Z, El Ghouizi A, Aboulghazi A, Teixeira JA, Lyoussi B. (2021) Protective Effect of Honey and Propolis against Gentamicin‐Induced Oxidative Stress and Hepatorenal Damages. Oxid med cell longev, 2021(1), 9719906. doi: 10.1155/2021/9719906.
  • Lang M, Carvalho A, Baharoglu Z, Mazel D. (2023). Aminoglycoside uptake, stress, and potentiation in Gram-negative bacteria: new therapies with old molecules. Microbiol Mol Biol Rev. 87(4), e00036-00022.
  • Mahi-Birjand M, Yaghoubi S, Abdollahpour-Alitappeh M, Keshtkaran Z, Bagheri N, Pirouzi A, Khatami M, Sineh Sepehr K, Peymani P, Karimzadeh I. (2020) Protective effects of pharmacological agents against
  • aminoglycoside-induced nephrotoxicity: A systematic review. Expert Opin Drug Safety, 19(2), 167-186. doi: 10.1080/14740338.2020.1712357
  • Mirazi N, Baharvand, F, Moghadasali R, Nourian A, Hosseini A. (2021) Human umbilical cord blood serum attenuates gentamicin‐induced liver toxicity by restoring peripheral oxidative damage and inflammation in rats. Basic Clin Pharm Toxicol, 128(2), 268-274. doi: 10.1111/bcpt.13502
  • Mohammed M, Aboulhoda B, Mahmoud R. (2019) Vitamin D attenuates gentamicin-induced acute renal damage via prevention of oxidative stress and DNA damage. Hum exp toxicol, 38(3), 321-335.
  • Moon HK, Kang P, Lee HS, Min SS, Seol GH. (2014) Effects of 1, 8-cineole on hypertension induced by chronic exposure to nicotine in rats. J Pharm Pharmacol 66(5), 688-693. doi: 10.1111/jphp.12195.
  • Morales AI, Buitrago JM, Santiago JM, Fernández-Tagarro M, López-Novoa JM, Pérez-Barriocanal F. (2002) Protective effect of trans-resveratrol on gentamicin-induced nephrotoxicity. Antioxid Redox Signal, 4(6), 893-898. doi: 10.1089/152308602762197434.
  • Ogundipe OJ, Akinpelu OF, Oyerinde A, Oluwakemi OR. (2021) Ocimum gratissimum (Linn) leaves extract attenuates oxidative stress and liver injury in gentamicin-induced hepatotoxicity in rats. Egypt J Basic Appl Sci, 8(1), 146-155.
  • Rašković A, Milanović I, Pavlović N, Ćebović T, Vukmirović S, Mikov M. (2014) Antioxidant activity of rosemary (Rosmarinus officinalis L.) essential oil and its hepatoprotective potential. BMC complement alter med, 14, 1-9 . Randjelovic P, Veljkovic S, Stojiljkovic N, Sokolovic D, Ilic I. (2017) Gentamicin nephrotoxicity in animals: Current knowledge and future perspectives. EXCLI journal, 16, 388.
  • Ryu S, Park H, Seol GH, Choi IY. (2014) 1, 8-Cineole ameliorates oxygen-glucose deprivation/reoxygenation-induced ischaemic injury by reducing oxidative stress in rat cortical neuron/glia. J Pharm Pharmacol, 66(12), 1818-1826. doi: 10.1111/jphp.12295.
  • Sanchez-Gonzalez PD, Lopez-Hernandez FJ, Perez-Barriocanal F, Morales AI, Lopez-Novoa JM. (2011) Quercetin reduces cisplatin nephrotoxicity in rats without compromising its anti-tumour activity. Nephrol Dialysis Transplant, 26(11), 3484-3495. doi: 10.1093/ndt/gfr195.
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Eucalyptol (1.8-cineole) attenuates gentamicin-induced liver injury

Yıl 2024, Cilt: 35 Sayı: 2, 133 - 141, 03.01.2025
https://doi.org/10.35864/evmd.1549327

Öz

Gentamicin (GM), which is in the aminoglycoside antibiotic class, is frequently preferred today in the treatment of diseases caused by gram-negative bacteria. However, its significant side effects on liver and kidney functions limit its clinical usefulness. The antioxidant and anti-inflammatory medical activities of eucalyptol (EUC, 1.8-cineole) have been reported in different studies. This study aimed to evaluate the effects of EUC on GM-induced hepatotoxicity. The study groups are consisted of control (C), EUC, GM and GM + EUC, and there were 7 rats in each group. At the end of the study, the rats were euthanized under appropriate conditions and samples were collected and biochemical, histopathological and immunohistochemical analyzes were performed. It was determined that there was a important increase in serum alanine aminotransferase (ALT), aspartate transferase (AST) and gamma-glutamyl transferase (GGT) enzymes in the GM group relative to the C group (p<0.001). GM application is determined that it caused histopathological damage in livers. Additionally, immunohistochemically, it caused an important increase in the expressions of 4-hydroxynonenal (4-HNE), 8-hydroxy-2'-deoxyguanosine (8-OHdG) and malondialdehyde (MDA) in rats in the GM group relative to the C group (p<0.001). Eucalyptol application (GM+EUC) regulated the increase in serum ALT, AST and GGT enzymes. It also attenuated 4-HNE, 8-OHdG and MDA expressions. It attenuated the histopathological damage caused by GM application. The results of this study revealed that EUC showed antioxidative, protective and curative efficacy in GM-induced liver damage.

Kaynakça

  • Abdollahi M, Asle-Rousta M, Mahmazi S. (2024) Protective effect of 1, 8-cineole (eucalyptol) against leadinduced liver injury by ameliorating oxidative stress and inflammation and modulating TLR4/MyD88/NF-κB signaling. Iranian J Basic Med Sci, 27(10), 1293-1299, doi: 10.22038/ijbms.2024.78448.16964.
  • Akcakavak G, Kazak F, Karatas O, Alakus H, Alakus I, Kirgiz O, Celik Z, Yilmaz Deveci MZ, Ozdemir O, Tuzcu M. (2024) Eucalyptol regulates Nrf2 and NF-kB signaling and alleviates gentamicin-induced kidney injury in rats by downregulating oxidative stress, oxidative DNA damage, inflammation, and apoptosis. Toxicol Mech Methods, 34(4), 413-422. doi: 10.1080/15376516.2023.2297234.
  • Akcakavak G, Kazak F, Yilmaz Deveci MZ. (2023) Eucalyptol Protects against Cisplatin-Induced Liver Injury in Rats. Biol Bullet, 50(5), 987-994. doi: 10.1134/s106235902360085x
  • Ali FE, Hassanein EH, Bakr AG, El-Shoura EA, El-Gamal DA, Mahmoud AR, Abd-Elhamid TH. (2020) Ursodeoxycholic acid abrogates gentamicin-induced hepatotoxicity in rats: Role of NF-κB-p65/TNF-α, Bax/Bcl-xl/Caspase-3, and eNOS/iNOS pathways. Life Sci, 254, 117760. doi: 10.1016/j.lfs.2020.117760
  • Al-Khamas AJ, Kadhim ZH, Al-Charak AG, Faris JK. (2020). Biochemical and histological study of rat liver toxicity induced by gentamicin and protective action of berberine. Plant Arch (09725210), 20(1), 3073-3078
  • Ayala A, Muñoz MF, Argüelles S. (2014) Lipid peroxidation: production, metabolism, and signaling mechanisms of malondialdehyde and 4‐hydroxy‐2‐nonenal. Oxid med cell longev, 2014(1), 360438.
  • Aycan-Ustyol E, Kabasakal M, Bekpinar S, Alp-Yıldırım FI, Tepe O, Giris M, Ozluk Y, Unlucerci Y, Uydes-Dogan BS, Uysal M (2017) Vascular function and arginine and dimethylarginines in gentamicin-induced renal failure: a possible effect of heme oxygenase 1 inducer hemin. Can J physiol pharmacol 95(12), 1406-1413. doi: 10.1139/cjpp-2016-0578.
  • Babaeenezhad E, Nouryazdan N, Nasri M, Ahmadvand H, Sarabi MM. (2021) Cinnamic acid ameliorate gentamicin-induced liver dysfunctions and nephrotoxicity in rats through induction of antioxidant activities. Heliyon, 7(7). e07465. doi: 10.1016/j.heliyon.2021.e07465
  • Banday AA, Farooq N, Priyamvada S, Yusufi AN, Khan F. (2008) Time dependent effects of gentamicin on the enzymes of carbohydrate metabolism, brush border membrane and oxidative stress in rat kidney tissues. Life Sci, 82(9-10), 450-459. doi: 10.1016/j.lfs.2007.11.014.
  • Bulboacă AE, Porfire AS, Rus V, Nicula CA, Bulboacă CA, Bolboacă SD. (2022) Protective effect of liposomal epigallocatechin-gallate in experimental gentamicin-induced hepatotoxicity. Antioxidants, 11(2), 412. doi: 10.3390/antiox11020412
  • Cai ZM, Peng JQ, Chen Y, Tao L, Zhang YY, Fu LY, Long QD, Shen XC. (2021) 1, 8-Cineole: A review of source, biological activities, and application. J Asian Nat prod res, 23(10), 938-954. doi: 10.1080/10286020.2020.1839432.
  • Chen C, Chen Y, Wu P, Chen B. (2014) Update on new medicinal applications of gentamicin: evidence-based review. J Formos Med Assoc 113(2), 72-82. doi: 10.1016/j.jfma.2013.10.002.
  • Cui J, Tang L, Hong Q, Lin S, Sun X, Cai G, Bai XY, Chen X. (2019) N-acetylcysteine ameliorates gentamicin-induced nephrotoxicity by enhancing autophagy and reducing oxidative damage in miniature pigs. Shock, 52(6), 622-630. doi: 10.1097/SHK.0000000000001319.
  • Ďuračková, Z. (2010). Some current insights into oxidative stress. Physiologic res, 59(4), 459-469. doi:10.33549/physiolres.931844.
  • Galaly S, Ahmed O, Mahmoud A. (2014) Thymoquinone and curcumin prevent gentamicin-induced liver injury by attenuating oxidative stress, inflammation and apoptosis. J Physiol Pharmacol, 65(6), 823-832.
  • Galan DM, Ezeudu NE, Garcia J, Geronimo CA, Berry NM, Malcolm B J. (2020) Eucalyptol (1, 8-cineole): an underutilized ally in respiratory disorders? J Essent oil res, 32(2), 103-110.
  • Graille M, Wild P, Sauvain JJ, Hemmendinger M, Guseva Canu I, Hopf NB. (2020) Urinary 8-OHdG as a biomarker for oxidative stress: a systematic literature review and meta-analysis. Int J Mol Sci 21(11), 3743. doi: 10.3390/ijms21113743
  • Hoch CC, Petry J, Griesbaum L, Weiser T, Werner K, Ploch M, Verschoor A, Multhoff G, Dezfouli AB, Wollenberg B. (2023) 1, 8-cineole (eucalyptol): A versatile phytochemical with therapeutic applications across multiple diseases. Biomed Pharmacother, 167, 115467.
  • Hsouna AB, Dhibi S, Dhifi W, Mnif W, Hfaiedh N. (2019) Chemical composition and hepatoprotective effect of essential oil from Myrtus communis L. flowers against CCL 4-induced acute hepatotoxicity in rats. RSC advances, 9(7), 3777-3787. doi:10.1039/c8ra08204a
  • Ibraheem ZO, Farhan SS, Al Sumaidaee A, Al Sufi L, Bashir A, Balwa A, Basir R. (2021) Liver functions in combined models of the gentamicin induced nephrotoxicity and metabolic syndrome induced by high fat or fructose diets: a comparative study. Toxicol Res, 37, 221-235. doi: 10.1007/s43188-020-00059-w.
  • Ince S, Kucukkurt I, Demirel HH, Arslan-Acaroz D, Varol N. (2020) Boron, a trace mineral, alleviates gentamicin-induced nephrotoxicity in rats. Biol Trace elem res, 195(2), 515-524. doi: 10.1007/s12011-019-01875-4.
  • Iqbal U, Malik A, Sial NT, Uttra AM, Rehman MF, Mehmood MH. (2024) Molecular insights of Eucalyptol (1, 8-Cineole) as an anti-arthritic agent: in vivo and in silico analysis of IL-17, IL-10, NF-κB, 5-LOX and COX-2. Inflammopharmacology, 32(3), 1941-1959. doi: 10.1007/s10787-024-01465-4.
  • Kazak F, Akcakavak G, Alakus I, Alakus H, Kirgiz O, Karatas O, Deveci MZY, Coskun P. (2024a) Proanthocyanidin alleviates testicular torsion/detorsion-induced ischemia/reperfusion injury in rats. Tissue and Cell, 89, 102459. doi: 10.1016/j.tice.2024.102459
  • Kazak F, Deveci MZY, Akçakavak G. (2024b) Eucalyptol alleviates cisplatin-induced kidney damage in rats. Drug chem toxicol, 47(2), 172-179. doi: 10.1080/01480545.2022.2156530.
  • Kazak F. (2022) A bioactive compound: eucalyptol. Livre de lyon, Lyon, France, pp.125-138.
  • Laaroussi H, Bakour, M, Ousaaid D, Ferreira-Santos P, Genisheva Z, El Ghouizi A, Aboulghazi A, Teixeira JA, Lyoussi B. (2021) Protective Effect of Honey and Propolis against Gentamicin‐Induced Oxidative Stress and Hepatorenal Damages. Oxid med cell longev, 2021(1), 9719906. doi: 10.1155/2021/9719906.
  • Lang M, Carvalho A, Baharoglu Z, Mazel D. (2023). Aminoglycoside uptake, stress, and potentiation in Gram-negative bacteria: new therapies with old molecules. Microbiol Mol Biol Rev. 87(4), e00036-00022.
  • Mahi-Birjand M, Yaghoubi S, Abdollahpour-Alitappeh M, Keshtkaran Z, Bagheri N, Pirouzi A, Khatami M, Sineh Sepehr K, Peymani P, Karimzadeh I. (2020) Protective effects of pharmacological agents against
  • aminoglycoside-induced nephrotoxicity: A systematic review. Expert Opin Drug Safety, 19(2), 167-186. doi: 10.1080/14740338.2020.1712357
  • Mirazi N, Baharvand, F, Moghadasali R, Nourian A, Hosseini A. (2021) Human umbilical cord blood serum attenuates gentamicin‐induced liver toxicity by restoring peripheral oxidative damage and inflammation in rats. Basic Clin Pharm Toxicol, 128(2), 268-274. doi: 10.1111/bcpt.13502
  • Mohammed M, Aboulhoda B, Mahmoud R. (2019) Vitamin D attenuates gentamicin-induced acute renal damage via prevention of oxidative stress and DNA damage. Hum exp toxicol, 38(3), 321-335.
  • Moon HK, Kang P, Lee HS, Min SS, Seol GH. (2014) Effects of 1, 8-cineole on hypertension induced by chronic exposure to nicotine in rats. J Pharm Pharmacol 66(5), 688-693. doi: 10.1111/jphp.12195.
  • Morales AI, Buitrago JM, Santiago JM, Fernández-Tagarro M, López-Novoa JM, Pérez-Barriocanal F. (2002) Protective effect of trans-resveratrol on gentamicin-induced nephrotoxicity. Antioxid Redox Signal, 4(6), 893-898. doi: 10.1089/152308602762197434.
  • Ogundipe OJ, Akinpelu OF, Oyerinde A, Oluwakemi OR. (2021) Ocimum gratissimum (Linn) leaves extract attenuates oxidative stress and liver injury in gentamicin-induced hepatotoxicity in rats. Egypt J Basic Appl Sci, 8(1), 146-155.
  • Rašković A, Milanović I, Pavlović N, Ćebović T, Vukmirović S, Mikov M. (2014) Antioxidant activity of rosemary (Rosmarinus officinalis L.) essential oil and its hepatoprotective potential. BMC complement alter med, 14, 1-9 . Randjelovic P, Veljkovic S, Stojiljkovic N, Sokolovic D, Ilic I. (2017) Gentamicin nephrotoxicity in animals: Current knowledge and future perspectives. EXCLI journal, 16, 388.
  • Ryu S, Park H, Seol GH, Choi IY. (2014) 1, 8-Cineole ameliorates oxygen-glucose deprivation/reoxygenation-induced ischaemic injury by reducing oxidative stress in rat cortical neuron/glia. J Pharm Pharmacol, 66(12), 1818-1826. doi: 10.1111/jphp.12295.
  • Sanchez-Gonzalez PD, Lopez-Hernandez FJ, Perez-Barriocanal F, Morales AI, Lopez-Novoa JM. (2011) Quercetin reduces cisplatin nephrotoxicity in rats without compromising its anti-tumour activity. Nephrol Dialysis Transplant, 26(11), 3484-3495. doi: 10.1093/ndt/gfr195.
  • Thy M, Timsit JF, de Montmollin E. (2023) Aminoglycosides for the treatment of severe infection due to resistant gram-negative pathogens. Antibiotics, 12(5), 860.
  • Venkataraman B, Almarzooqi S, Raj V, Bhongade BA, Patil RB, Subramanian VS, Attoub S, Rizvi TA, Adrian TE, Subramanya SB. (2023) Molecular docking identifies 1, 8-Cineole (Eucalyptol) as a novel PPARγ agonist that alleviates colon inflammation. Int J Mol Sci, 24(7), 6160. doi: 10.3390/ijms24076160.
  • Yang Y, Sharma R, Sharma A, Awasthi S, Awasthi Y. (2003) Lipid peroxidation and cell cycle signaling: 4-hydroxynonenal, a key molecule in stress mediated signaling. Acta Biochim Pol, 50(2), 319-336.
  • Wijayanti H, Fadhilah Y, Yuniarti W, Lukiswanto B, Arimbi A, Suprihati E, Kurnijasanti R. (2023). Protective effect of Moringa oleifera leaves extract against gentamicin induced hepatic and nephrotoxicity in rats. Iraqi J Vet Sci. 37(1), 129-135.
  • Yarijani ZM, Najafi H, Shackebaei D, Madani SH, Modarresi M, Jassemi SV. (2019) Amelioration of renal and hepatic function, oxidative stress, inflammation and histopathologic damages by Malva sylvestris extract in gentamicin induced renal toxicity. Biomedi Pharmacother, 112, 108635. doi: 10.1016/j.biopha.2019.108635.
  • Zoppini G, Cacciatori V, Negri C, Stoico V, Lippi G, Targher G, Bonora E. (2016) The aspartate aminotransferase-to-alanine aminotransferase ratio predicts all-cause and cardiovascular mortality in patients with type 2 diabetes. Medicine, 95(43), e4821. doi: 10.1097/MD.0000000000004821.
Toplam 43 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Veteriner Patoloji
Bölüm Araştırma Makaleleri
Yazarlar

Özhan Karataş 0000-0002-2778-8059

Filiz Kazak 0000-0002-9065-394X

Gökhan Akçakavak 0000-0001-5949-4752

Halil Alakuş 0000-0001-9265-2310

Ahmed Abduljabbar 0000-0001-9689-4018

Ömer Kırgız 0000-0002-0222-1363

İbrahim Alakuş 0000-0002-2031-7035

Bahadır Kılınç 0000-0003-3426-2116

Zeynep Çelik 0000-0002-9667-5728

Mehmet Tuzcu 0000-0003-3118-1054

Yayımlanma Tarihi 3 Ocak 2025
Gönderilme Tarihi 13 Eylül 2024
Kabul Tarihi 2 Aralık 2024
Yayımlandığı Sayı Yıl 2024 Cilt: 35 Sayı: 2

Kaynak Göster

APA Karataş, Ö., Kazak, F., Akçakavak, G., Alakuş, H., vd. (2025). Eucalyptol (1.8-cineole) attenuates gentamicin-induced liver injury. Etlik Veteriner Mikrobiyoloji Dergisi, 35(2), 133-141. https://doi.org/10.35864/evmd.1549327


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