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Kurşun Nitrat ve Kadmiyum Klorürün Sıçan Akciğer Dokusu Üzerindeki Toksik Etkileri ve Sesamolün Koruyucu Rolü

Yıl 2026, Cilt: 9 Sayı: 2, 888 - 901, 16.03.2026
https://doi.org/10.47495/okufbed.1749953
https://izlik.org/JA29ZG43AR

Öz

Yaygın çevre kirleticileri olarak kabul edilen kadmiyum ve kurşun, insan sağlığını olumsuz etkileyen toksik ağır metallerdir. Susam yağında bulunan sesamol, güçlü antioksidan özelliklere sahip fenolik bir bileşiktir. Bu çalışma, sıçan akciğer dokusunda kadmiyum ve/veya kurşunun neden olduğu toksisiteye karşı sesamolün koruyucu potansiyelini değerlendirmek amacıyla yürütülmüştür. Bu amaçla, Kurşun nitrat (LN), kadmiyum klorür (CdCl2), LN artı CdCl2, sesamol, LN artı sesamol, CdCl2 artı sesamol ve LN artı CdCl2 artı sesamol erkek sıçanlara 28 gün boyunca gavaj yoluyla uygulandı. Deneylerin sonunda akciğer dokusunda malondialdehit düzeyleri ve antioksidan enzimlerin (SOD, CAT, GPx and GST) aktiviteleri ile akciğer dokusundaki histopatolojik değişiklikler incelendi. LN ve/veya CdCl2 uygulamaları, akciğer dokusunda antioksidan enzim aktivitelerinde önemli bir düşüşe ve malondialdehit seviyelerinde artışa neden olmuştur. Ayrıca, sıçanların akciğer dokusuna ağır metal uygulamaları, interalveolar septumda kalınlaşma, alveolar dilatasyon, inflamatuar hücre infiltrasyonu ve bronşiyal epitel dejenerasyonu gibi histopatolojik değişikliklere neden olmuştur. Ağır metal uygulamalarına ek olarak sesamol uygulaması ise antioksidan enzim aktivitelerinde önemli bir artışa, malondialdehit seviyelerinde önemli bir düşüşe ve akciğer dokusundaki patolojik değişikliklerin hafifletilmesine yol açmıştır.

Kaynakça

  • Adiguzel C., Kalender Y. Lead nitrate induced toxic effects on small intestine tissues in diabetic and non-diabetic rats: role of sodium selenite. Gazi University Journal of Science 2015; 28(4): 541-544.
  • Adiguzel C., Kalender Y. Bendiocarb-induced nephrotoxicity in rats and the protective role of vitamins C and E. Environmental Science and Pollution Research 2020; 27: 6449-6458.
  • Adiguzel C., Karaboduk H., Apaydin FG., Kalender S., Kalender Y. Comparison of nickel oxide nano and microparticles toxicity in rat liver: molecular, biochemical, and histopathological study. Toxicology Research 2023; 12(5): 741-750.
  • Aebi H. Catalase in vitro. Methods in Enzymology 1984; 105: 121-126.
  • Apaydin FG., Kalender S., Bas H., Demir F., Kalender Y. Lead nitrate induced testicular toxicity in diabetic and non-diabetic rats: Protective role of sodium selenite. Brazilian Archives of Biology and Technology 2014; 58: 68-74.
  • Apaydın FG., Baş H., Kalender S., Kalender Y. Subacute effects of low dose lead nitrate and mercury chloride exposure on kidney of rats. Environmental Toxicology and Pharmacology 2016; 41: 219-224.
  • Atabay E., Kalender Y. Protective effect of taurine and curcumin on lung toxicity of bisphenol A in rats. Bozok Journal of Science 2023; 1(1): 16-22.
  • Ayhan H., Adiguzel C., Bayram KK., Akin AT., Apaydin FG., Kalender Y. Effect of propolis supplementation on cadmium toxicity associated with renal and hepatic dysfunction in rats. Journal of Trace Elements in Medicine and Biology 2025; 87: 127587.
  • Baş L., Demet Ö. Çevresel toksikoloji yönünden bazı ağır metaller. Ekoloji Dergisi 1992; 5: 42-46, 1992.
  • Baş H., Apaydın FG., Kalender S., Kalender Y. Lead nitrate and cadmium chloride induced hepatotoxicity and nephrotoxicity: Protective effects of sesamol on biochemical indices and pathological changes. Journal of Food Biochemistry 2021; 45(7): e13769.
  • Bosebabu B., Cheruku SP., Chamallamudi MR., Nampoothiri M., Shenoy RR., Nandakumar K., Parial VK., Kumar N. An appraisal of current pharmacological perspectives of sesamol: A review. Mini-Reviews in Medicinal Chemistry 2020; 20(11): 988-1000.
  • Celikoglu E., Aslanturk A., Kalender Y. Vitamin E and sodium selenite against mercuric chloride-induced lung toxicity in the rats. Brazilian Archives of Biology and Technology 2015; 58(4): 587-594.
  • Davuljigari CB., Gottipolu RR. Late-life cardiac injury in rats following early life exposure to lead: reversal effect of nutrient metal mixture. Cardiovascular Toxicology 2020; 20: 249-260.
  • El-Demerdash FM., Yousef MI., Kedwany FS., Baghdadi HH. Cadmium induced changes in lipid peroxidation, blood hematology, biochemical parameters and semen quality of male rats: Protective role of vitamin E and b-carotene. Food and Chemical Toxicology 2004; 42(10): 1563-1571.
  • Genchi G., Sinicropi MS., Lauria G., Carocci A., Catalano A. The effects of cadmium toxicity. International Journal of Environmental Research and Public Health 2020; 17(4): 3782.
  • Habig WH., Pabst MJ., Jakoby WB. Glutathione-S-transferases: The first enzymatic step in mercapturic acid formation. Journal of Biological Chemistry 1974; 249: 7130-7139.
  • Hemalatha G., Pugalendi KV. Saravanan R. Modulatory effect of sesamol on DOCA-salt-induced oxidative stress in uninephrectomized hypertensive rats. Molecular and Cellular Biochemistry 2013; 379: 255-265.
  • Jaafarzadeh M., Mahjoob Khaligh R., Mohsenifar Z., Shabani A., Rezvani Gilkalaei M., Rajabi Keleshteri M., Beigi Harchegani A. Protecting effects of N-acetyl cysteine supplementation against lead and cadmium-induced brain toxicity in rat models. Biological Trace Element Research 2022; 200(10): 4395-4403.
  • Jan AT., Azam M., Siddiqui K., Ali A., Choi I., Haq QMR. Heavy metals and human health: mechanistic insight into toxicity and counter defense system of antioxidants. International Journal of Molecular Sciences 2015; 16(12): 29592-29630.
  • Kanimozhi P., Prasad NR. Antioxidant potential of sesamol and its role on radiation-induced DNA damage in whole-body irradiated Swiss albino mice. Environmental Toxicology Pharmacology 2009; 28(2): 192-197.
  • Kalender S., Apaydin FG., Kalender Y. Testicular toxicity of orally administrated bisphenol A in rats and protective role of taurine and curcumin. Pakistan Journal of Pharmaceutical Sciences 2019; 32(3):1043-1047.
  • Karaboduk H., Adiguzel C., Apaydin FG., Kalender S., Kalender Y. Investigating the impact of different routes of nano and micro nickel oxide administration on rat kidney architecture, apoptosis markers, oxidative stress, and histopathology. Journal of Molecular Histology 2024; 55(5): 675-686.
  • Karaboduk H., Adiguzel C., Uzunhisarcikli M., Apaydin FG., Kalender Y. Melatonin mitigates abamectin-induced subacute hematotoxicity and hepato-renal toxicity in rats by regulating oxidative stress, inflammatory responses, and apoptosis. Journal of Biochemical and Molecular Toxicology 2025; 39(10): e70512.
  • Karaboduk H., Uzunhisarcikli M., Kalender Y. Protective effects of sodium selenite and vitamin E on mercuric chloride-induced cardiotoxicity in male rats. Brazilian Archives of Biology and Technology 2015; 58(2): 229-238.
  • Kayhan FE., Muşlu MN., Koç ND. Bazı ağır metallerin sucul organizmalar üzerinde yarattiği stres ve biyolojik yanitlar. Journal of Fisheries Sciences 2009; 3(2): 153-162.
  • Kira CS., Sakuma A.M., De Capitani EM., De Freitas CU., Cardoso MRA., Gouveia N. Associated factors for higher lead and cadmium blood levels, and reference values derived from general population of São Paulo, Brazil. Science of The Total Environment 2016; 543: 628-635.
  • Kumar A., Bajaj P., Singh B., Paul K., Sharma P., Mehra S., Robin, Kaur P., Jasrotia S., Kumar P., Rajat Singh V., Tuli HS. Sesamol as a potent anticancer compound: From chemistry to cellular interactions. Naunyn-Schmiedebergs Archives of Pharmacology 2024; 1-19.
  • Liou CJ., Chen YL., Yu MC., Yeh KW, Shen SC., Huang WC. Sesamol alleviates airway hyperresponsiveness and oxidative stress in asthmatic mice. Antioxidants 2020; 9(4): 295.
  • Lowry OH., Rosebrough NJ., Farr AL., Randall RJ. Protein measurement with the Folin phenol reagent. Journal of Biological Chemistry 1951; 193: 265-275.
  • Luparello C., Sirchia R., Longo A. Cadmium as a transcriptional modulator in human cells. Critical Reviews in Toxicology 2021; 41: 75-82.
  • Madkour DA., Ahmed MM., Orabi SH., Sayed SM., Korany RM., Khalifa HK. Nigella sativa oil protects against emamectin benzoate‐Induced neurotoxicity in rats. Environmental Toxicology 2021; 36(8): 1521-1535.
  • Mahurpawar M. Effects of heavy metals on human health. Int. J. Res.-Granthaalayah 2015; 1-7.
  • Majdalawieh AF., Mansour ZR. Sesamol, a major lignan in sesame seeds (Sesamum indicum): Anti-cancer properties and mechanisms of action. European Journal of Pharmacology 2019; 855: 75-89.
  • Marklund S., Marklund G. Involvement of the superoxide anion radical in the autoxidation of pyrogallol and a convenient assay for superoxide dismutase. European Journal of Biochemistry 1974; 47: 469-474.
  • Matovi´c V., Buha A., Đukić-Ćosić D., Bulat Z. Insight into the oxidative stress induced by lead and/or cadmium in blood, liver and kidneys. Food and Chemical Toxicology 2015; 78: 130-140.
  • Mitra P., Sharma S., Purohit P., Sharma P. Clinical and molecular aspects of lead toxicity: An update. Critical Reviews in Clinical Laboratory Sciences 2017; 54(7-8): 506-528.
  • Mognetti B., Franco F., Castrignano C., Bovolin P., Berta GN. Mechanisms of phytoremediation by resveratrol against cadmium toxicity. Antioxidants 2024; 13(7): 782.
  • Mumtaz U., Ali Y., Petrillo AA. linear regression approach to evaluate the green supply chain management impact on industrial organizational performance. Science of Total Environment 2018; 624: 162-169.
  • Naka S., Mendes LCS., de Queiroz TKL., Costa BNS., de Jesus IM., Camara MC., Lima MO. A comparative study of cadmium levels in blood from exposed populations in an industrial area of the amazon, Brazil. Science of Total Environment 2020; 698: 134309.
  • Ohkawa H., Ohishi N., Yagi K. Assay for lipid peroxides in animal tissues by thiobarbituric acid reaction. Analytical Biochemistry 1979; 95: 351-358.
  • Paglia DE., Valentine WN. Studies on the quantitative and qualitative characterization of glutathione peroxidase. Journal of Laboratory Medicine 1987; 70: 158-165.
  • Patra RC., Swarup D. Effect of lead on erythrocytic antioxidant defence, lipid peroxide level and thiol groups in calves. Research in Veterinary Science 2000; 68: 71-74.
  • Patra RC., Rautray AK., Swarup D. Oxidative stress in lead and cadmium toxicity and its amelioration. Veterinary Medicine International 2011; 1: 457327.
  • Plastunov B., Zub S. Lipid peroxidation processes and antioxidant defense under lead intoxication and iodine-deficient in experiment. Anales Universitatis Mariae Curie Sklodowska Lublin-Polonia 2008; 21: 215-217.
  • Saasia S., Amine B., Nadia B., Hadda A., Smail M. Investigation of single and combined effects of repeated oral cadmium and lead administration in ewes. Scientific African 2021; 13: e00870.
  • Shaban NZ., Abd El‑Kader SE., Mogahed FAK., El‑Kersh MAL., Habashy NH. Synergistic protective effect of Beta vulgaris with meso-2, 3-dimercaptosuccinic acid against lead-induced neurotoxicity in male rats. Scientific Reports 2021; 11: 252.
  • Sharma V., Sharma A., Kansal L. The effect of oral administration of Allium sativum extracts on lead nitrate induced toxicity in male mice. Food and Chemical Toxicology 2010; 48: 928-936.
  • Tirunavalli SK., Kuncha M., Sistla R., Andugulapati SB. Targeting TGF-β/periostin signaling by sesamol ameliorates pulmonary fibrosis and improves lung function and survival. The Journal of Nutritional Biochemistry 2023; 116: 109294.
  • Tubsakul A., Sangartit W., Pakdeechote P., Kukongviriyapan V., Apaijit K., Kukongviriyapan U. Curcumin mitigates hypertension, endothelial dysfunction and oxidative stress in rats with chronic exposure to lead and cadmium. Tohoku Journal of Experimental Medicine 2021; 253(1): 69-76.
  • Uzun FG., Kalender Y. Protective effect of vitamins C and E on malathion induced nephrotoxicity in male rats. Gazi University Journal of Science 2011; 24(2): 193-201.
  • Uzunhisarcikli M., Apaydin, FG., Bas H., Kalender Y. Hepatoprotective effects of quercetin and curcumin against fipronil-ınduced hepatic ınjury in rats. Fresenius Environmental Bulletin 2021; 30(07A): 9309-9321.
  • Uzunhisarcikli M., Apaydin FG., Bas H., Kalender Y. The ameliorative effects of quercetin and curcumin against subacute nephrotoxicity of fipronil induced in Wistar rats. Toxicological Research 2023; 12(3): 493-502.
  • Yuan G., Dai S., Yin Z., Lu H., Jia R., Xu J., Song X., Li L., Shu Y., Zhao X. Toxicological assessment of combined lead and cadmium: Acute and sub-chronic toxicity study in rats. Food and Chemical Toxicology 2024; 65: 260-268.

Toxic Effects of Lead Nitrate and Cadmium Chloride on Rat Lung Tissue and The Protective Role of Sesamol

Yıl 2026, Cilt: 9 Sayı: 2, 888 - 901, 16.03.2026
https://doi.org/10.47495/okufbed.1749953
https://izlik.org/JA29ZG43AR

Öz

Cadmium and lead, considered common environmental pollutants, are toxic heavy metals that adversely affect human health. Sesamol, found in sesame oil, is a phenolic compound with powerful antioxidant properties. This study was conducted to evaluate the protective potential of sesamol against toxicity induced by cadmium and/or lead in the lung tissue of rats. For this purpose, Lead nitrate (LN), cadmium chloride (CdCl2), LN plus CdCl2, sesamol, LN plus sesamol, CdCl2 plus sesamol, and LN plus CdCl2 plus sesamol were administered to male rats by gavage for 28 days. At the end of the experiments, malondialdehyde levels and activities of antioxidant enzymes (SOD, CAT, GPx and GST) in the lung tissue and pathological changes in the lung tissue were examined. LN and/or CdCl2 treatments caused a significant decrease in antioxidant enzyme activities and an increase in malondialdehyde levels in lung tissue. In addition, heavy metal applications in the lung tissue of rats caused histopathological changes such as thickening of the interalveolar septum, alveolar dilatation, inflammatory cell infiltration, and degeneration of the bronchial epithelium. The application of sesamol, in addition to heavy metal applications, led to a significant increase in antioxidant enzyme activities, a significant decrease in malondialdehyde levels, and an alleviation of pathological changes in lung tissue.

Etik Beyan

This study has been approved by the Local Ethics Committee for Animal Experiments at Gazi University, and the Ethics Committee Decision Number is G.Ü.ET-17.086.

Teşekkür

We would like to thank Gazi University Scientific Research Coordination Unit for financially supporting the animal experiments part of this study.

Kaynakça

  • Adiguzel C., Kalender Y. Lead nitrate induced toxic effects on small intestine tissues in diabetic and non-diabetic rats: role of sodium selenite. Gazi University Journal of Science 2015; 28(4): 541-544.
  • Adiguzel C., Kalender Y. Bendiocarb-induced nephrotoxicity in rats and the protective role of vitamins C and E. Environmental Science and Pollution Research 2020; 27: 6449-6458.
  • Adiguzel C., Karaboduk H., Apaydin FG., Kalender S., Kalender Y. Comparison of nickel oxide nano and microparticles toxicity in rat liver: molecular, biochemical, and histopathological study. Toxicology Research 2023; 12(5): 741-750.
  • Aebi H. Catalase in vitro. Methods in Enzymology 1984; 105: 121-126.
  • Apaydin FG., Kalender S., Bas H., Demir F., Kalender Y. Lead nitrate induced testicular toxicity in diabetic and non-diabetic rats: Protective role of sodium selenite. Brazilian Archives of Biology and Technology 2014; 58: 68-74.
  • Apaydın FG., Baş H., Kalender S., Kalender Y. Subacute effects of low dose lead nitrate and mercury chloride exposure on kidney of rats. Environmental Toxicology and Pharmacology 2016; 41: 219-224.
  • Atabay E., Kalender Y. Protective effect of taurine and curcumin on lung toxicity of bisphenol A in rats. Bozok Journal of Science 2023; 1(1): 16-22.
  • Ayhan H., Adiguzel C., Bayram KK., Akin AT., Apaydin FG., Kalender Y. Effect of propolis supplementation on cadmium toxicity associated with renal and hepatic dysfunction in rats. Journal of Trace Elements in Medicine and Biology 2025; 87: 127587.
  • Baş L., Demet Ö. Çevresel toksikoloji yönünden bazı ağır metaller. Ekoloji Dergisi 1992; 5: 42-46, 1992.
  • Baş H., Apaydın FG., Kalender S., Kalender Y. Lead nitrate and cadmium chloride induced hepatotoxicity and nephrotoxicity: Protective effects of sesamol on biochemical indices and pathological changes. Journal of Food Biochemistry 2021; 45(7): e13769.
  • Bosebabu B., Cheruku SP., Chamallamudi MR., Nampoothiri M., Shenoy RR., Nandakumar K., Parial VK., Kumar N. An appraisal of current pharmacological perspectives of sesamol: A review. Mini-Reviews in Medicinal Chemistry 2020; 20(11): 988-1000.
  • Celikoglu E., Aslanturk A., Kalender Y. Vitamin E and sodium selenite against mercuric chloride-induced lung toxicity in the rats. Brazilian Archives of Biology and Technology 2015; 58(4): 587-594.
  • Davuljigari CB., Gottipolu RR. Late-life cardiac injury in rats following early life exposure to lead: reversal effect of nutrient metal mixture. Cardiovascular Toxicology 2020; 20: 249-260.
  • El-Demerdash FM., Yousef MI., Kedwany FS., Baghdadi HH. Cadmium induced changes in lipid peroxidation, blood hematology, biochemical parameters and semen quality of male rats: Protective role of vitamin E and b-carotene. Food and Chemical Toxicology 2004; 42(10): 1563-1571.
  • Genchi G., Sinicropi MS., Lauria G., Carocci A., Catalano A. The effects of cadmium toxicity. International Journal of Environmental Research and Public Health 2020; 17(4): 3782.
  • Habig WH., Pabst MJ., Jakoby WB. Glutathione-S-transferases: The first enzymatic step in mercapturic acid formation. Journal of Biological Chemistry 1974; 249: 7130-7139.
  • Hemalatha G., Pugalendi KV. Saravanan R. Modulatory effect of sesamol on DOCA-salt-induced oxidative stress in uninephrectomized hypertensive rats. Molecular and Cellular Biochemistry 2013; 379: 255-265.
  • Jaafarzadeh M., Mahjoob Khaligh R., Mohsenifar Z., Shabani A., Rezvani Gilkalaei M., Rajabi Keleshteri M., Beigi Harchegani A. Protecting effects of N-acetyl cysteine supplementation against lead and cadmium-induced brain toxicity in rat models. Biological Trace Element Research 2022; 200(10): 4395-4403.
  • Jan AT., Azam M., Siddiqui K., Ali A., Choi I., Haq QMR. Heavy metals and human health: mechanistic insight into toxicity and counter defense system of antioxidants. International Journal of Molecular Sciences 2015; 16(12): 29592-29630.
  • Kanimozhi P., Prasad NR. Antioxidant potential of sesamol and its role on radiation-induced DNA damage in whole-body irradiated Swiss albino mice. Environmental Toxicology Pharmacology 2009; 28(2): 192-197.
  • Kalender S., Apaydin FG., Kalender Y. Testicular toxicity of orally administrated bisphenol A in rats and protective role of taurine and curcumin. Pakistan Journal of Pharmaceutical Sciences 2019; 32(3):1043-1047.
  • Karaboduk H., Adiguzel C., Apaydin FG., Kalender S., Kalender Y. Investigating the impact of different routes of nano and micro nickel oxide administration on rat kidney architecture, apoptosis markers, oxidative stress, and histopathology. Journal of Molecular Histology 2024; 55(5): 675-686.
  • Karaboduk H., Adiguzel C., Uzunhisarcikli M., Apaydin FG., Kalender Y. Melatonin mitigates abamectin-induced subacute hematotoxicity and hepato-renal toxicity in rats by regulating oxidative stress, inflammatory responses, and apoptosis. Journal of Biochemical and Molecular Toxicology 2025; 39(10): e70512.
  • Karaboduk H., Uzunhisarcikli M., Kalender Y. Protective effects of sodium selenite and vitamin E on mercuric chloride-induced cardiotoxicity in male rats. Brazilian Archives of Biology and Technology 2015; 58(2): 229-238.
  • Kayhan FE., Muşlu MN., Koç ND. Bazı ağır metallerin sucul organizmalar üzerinde yarattiği stres ve biyolojik yanitlar. Journal of Fisheries Sciences 2009; 3(2): 153-162.
  • Kira CS., Sakuma A.M., De Capitani EM., De Freitas CU., Cardoso MRA., Gouveia N. Associated factors for higher lead and cadmium blood levels, and reference values derived from general population of São Paulo, Brazil. Science of The Total Environment 2016; 543: 628-635.
  • Kumar A., Bajaj P., Singh B., Paul K., Sharma P., Mehra S., Robin, Kaur P., Jasrotia S., Kumar P., Rajat Singh V., Tuli HS. Sesamol as a potent anticancer compound: From chemistry to cellular interactions. Naunyn-Schmiedebergs Archives of Pharmacology 2024; 1-19.
  • Liou CJ., Chen YL., Yu MC., Yeh KW, Shen SC., Huang WC. Sesamol alleviates airway hyperresponsiveness and oxidative stress in asthmatic mice. Antioxidants 2020; 9(4): 295.
  • Lowry OH., Rosebrough NJ., Farr AL., Randall RJ. Protein measurement with the Folin phenol reagent. Journal of Biological Chemistry 1951; 193: 265-275.
  • Luparello C., Sirchia R., Longo A. Cadmium as a transcriptional modulator in human cells. Critical Reviews in Toxicology 2021; 41: 75-82.
  • Madkour DA., Ahmed MM., Orabi SH., Sayed SM., Korany RM., Khalifa HK. Nigella sativa oil protects against emamectin benzoate‐Induced neurotoxicity in rats. Environmental Toxicology 2021; 36(8): 1521-1535.
  • Mahurpawar M. Effects of heavy metals on human health. Int. J. Res.-Granthaalayah 2015; 1-7.
  • Majdalawieh AF., Mansour ZR. Sesamol, a major lignan in sesame seeds (Sesamum indicum): Anti-cancer properties and mechanisms of action. European Journal of Pharmacology 2019; 855: 75-89.
  • Marklund S., Marklund G. Involvement of the superoxide anion radical in the autoxidation of pyrogallol and a convenient assay for superoxide dismutase. European Journal of Biochemistry 1974; 47: 469-474.
  • Matovi´c V., Buha A., Đukić-Ćosić D., Bulat Z. Insight into the oxidative stress induced by lead and/or cadmium in blood, liver and kidneys. Food and Chemical Toxicology 2015; 78: 130-140.
  • Mitra P., Sharma S., Purohit P., Sharma P. Clinical and molecular aspects of lead toxicity: An update. Critical Reviews in Clinical Laboratory Sciences 2017; 54(7-8): 506-528.
  • Mognetti B., Franco F., Castrignano C., Bovolin P., Berta GN. Mechanisms of phytoremediation by resveratrol against cadmium toxicity. Antioxidants 2024; 13(7): 782.
  • Mumtaz U., Ali Y., Petrillo AA. linear regression approach to evaluate the green supply chain management impact on industrial organizational performance. Science of Total Environment 2018; 624: 162-169.
  • Naka S., Mendes LCS., de Queiroz TKL., Costa BNS., de Jesus IM., Camara MC., Lima MO. A comparative study of cadmium levels in blood from exposed populations in an industrial area of the amazon, Brazil. Science of Total Environment 2020; 698: 134309.
  • Ohkawa H., Ohishi N., Yagi K. Assay for lipid peroxides in animal tissues by thiobarbituric acid reaction. Analytical Biochemistry 1979; 95: 351-358.
  • Paglia DE., Valentine WN. Studies on the quantitative and qualitative characterization of glutathione peroxidase. Journal of Laboratory Medicine 1987; 70: 158-165.
  • Patra RC., Swarup D. Effect of lead on erythrocytic antioxidant defence, lipid peroxide level and thiol groups in calves. Research in Veterinary Science 2000; 68: 71-74.
  • Patra RC., Rautray AK., Swarup D. Oxidative stress in lead and cadmium toxicity and its amelioration. Veterinary Medicine International 2011; 1: 457327.
  • Plastunov B., Zub S. Lipid peroxidation processes and antioxidant defense under lead intoxication and iodine-deficient in experiment. Anales Universitatis Mariae Curie Sklodowska Lublin-Polonia 2008; 21: 215-217.
  • Saasia S., Amine B., Nadia B., Hadda A., Smail M. Investigation of single and combined effects of repeated oral cadmium and lead administration in ewes. Scientific African 2021; 13: e00870.
  • Shaban NZ., Abd El‑Kader SE., Mogahed FAK., El‑Kersh MAL., Habashy NH. Synergistic protective effect of Beta vulgaris with meso-2, 3-dimercaptosuccinic acid against lead-induced neurotoxicity in male rats. Scientific Reports 2021; 11: 252.
  • Sharma V., Sharma A., Kansal L. The effect of oral administration of Allium sativum extracts on lead nitrate induced toxicity in male mice. Food and Chemical Toxicology 2010; 48: 928-936.
  • Tirunavalli SK., Kuncha M., Sistla R., Andugulapati SB. Targeting TGF-β/periostin signaling by sesamol ameliorates pulmonary fibrosis and improves lung function and survival. The Journal of Nutritional Biochemistry 2023; 116: 109294.
  • Tubsakul A., Sangartit W., Pakdeechote P., Kukongviriyapan V., Apaijit K., Kukongviriyapan U. Curcumin mitigates hypertension, endothelial dysfunction and oxidative stress in rats with chronic exposure to lead and cadmium. Tohoku Journal of Experimental Medicine 2021; 253(1): 69-76.
  • Uzun FG., Kalender Y. Protective effect of vitamins C and E on malathion induced nephrotoxicity in male rats. Gazi University Journal of Science 2011; 24(2): 193-201.
  • Uzunhisarcikli M., Apaydin, FG., Bas H., Kalender Y. Hepatoprotective effects of quercetin and curcumin against fipronil-ınduced hepatic ınjury in rats. Fresenius Environmental Bulletin 2021; 30(07A): 9309-9321.
  • Uzunhisarcikli M., Apaydin FG., Bas H., Kalender Y. The ameliorative effects of quercetin and curcumin against subacute nephrotoxicity of fipronil induced in Wistar rats. Toxicological Research 2023; 12(3): 493-502.
  • Yuan G., Dai S., Yin Z., Lu H., Jia R., Xu J., Song X., Li L., Shu Y., Zhao X. Toxicological assessment of combined lead and cadmium: Acute and sub-chronic toxicity study in rats. Food and Chemical Toxicology 2024; 65: 260-268.
Toplam 53 adet kaynakça vardır.

Ayrıntılar

Birincil Dil İngilizce
Konular Hayvan Fizyolojisi - Ekofizyoloji
Bölüm Araştırma Makalesi
Yazarlar

Elvan Talay 0000-0002-8373-8873

Meltem Uzunhisarcikli

Yusuf Kalender 0000-0001-5457-0517

Gönderilme Tarihi 24 Temmuz 2025
Kabul Tarihi 23 Ekim 2025
Yayımlanma Tarihi 16 Mart 2026
DOI https://doi.org/10.47495/okufbed.1749953
IZ https://izlik.org/JA29ZG43AR
Yayımlandığı Sayı Yıl 2026 Cilt: 9 Sayı: 2

Kaynak Göster

APA Talay, E., Uzunhisarcikli, M., & Kalender, Y. (2026). Toxic Effects of Lead Nitrate and Cadmium Chloride on Rat Lung Tissue and The Protective Role of Sesamol. Osmaniye Korkut Ata Üniversitesi Fen Bilimleri Enstitüsü Dergisi, 9(2), 888-901. https://doi.org/10.47495/okufbed.1749953
AMA 1.Talay E, Uzunhisarcikli M, Kalender Y. Toxic Effects of Lead Nitrate and Cadmium Chloride on Rat Lung Tissue and The Protective Role of Sesamol. Osmaniye Korkut Ata Üniversitesi Fen Bilimleri Enstitüsü Dergisi. 2026;9(2):888-901. doi:10.47495/okufbed.1749953
Chicago Talay, Elvan, Meltem Uzunhisarcikli, ve Yusuf Kalender. 2026. “Toxic Effects of Lead Nitrate and Cadmium Chloride on Rat Lung Tissue and The Protective Role of Sesamol”. Osmaniye Korkut Ata Üniversitesi Fen Bilimleri Enstitüsü Dergisi 9 (2): 888-901. https://doi.org/10.47495/okufbed.1749953.
EndNote Talay E, Uzunhisarcikli M, Kalender Y (01 Mart 2026) Toxic Effects of Lead Nitrate and Cadmium Chloride on Rat Lung Tissue and The Protective Role of Sesamol. Osmaniye Korkut Ata Üniversitesi Fen Bilimleri Enstitüsü Dergisi 9 2 888–901.
IEEE [1]E. Talay, M. Uzunhisarcikli, ve Y. Kalender, “Toxic Effects of Lead Nitrate and Cadmium Chloride on Rat Lung Tissue and The Protective Role of Sesamol”, Osmaniye Korkut Ata Üniversitesi Fen Bilimleri Enstitüsü Dergisi, c. 9, sy 2, ss. 888–901, Mar. 2026, doi: 10.47495/okufbed.1749953.
ISNAD Talay, Elvan - Uzunhisarcikli, Meltem - Kalender, Yusuf. “Toxic Effects of Lead Nitrate and Cadmium Chloride on Rat Lung Tissue and The Protective Role of Sesamol”. Osmaniye Korkut Ata Üniversitesi Fen Bilimleri Enstitüsü Dergisi 9/2 (01 Mart 2026): 888-901. https://doi.org/10.47495/okufbed.1749953.
JAMA 1.Talay E, Uzunhisarcikli M, Kalender Y. Toxic Effects of Lead Nitrate and Cadmium Chloride on Rat Lung Tissue and The Protective Role of Sesamol. Osmaniye Korkut Ata Üniversitesi Fen Bilimleri Enstitüsü Dergisi. 2026;9:888–901.
MLA Talay, Elvan, vd. “Toxic Effects of Lead Nitrate and Cadmium Chloride on Rat Lung Tissue and The Protective Role of Sesamol”. Osmaniye Korkut Ata Üniversitesi Fen Bilimleri Enstitüsü Dergisi, c. 9, sy 2, Mart 2026, ss. 888-01, doi:10.47495/okufbed.1749953.
Vancouver 1.Elvan Talay, Meltem Uzunhisarcikli, Yusuf Kalender. Toxic Effects of Lead Nitrate and Cadmium Chloride on Rat Lung Tissue and The Protective Role of Sesamol. Osmaniye Korkut Ata Üniversitesi Fen Bilimleri Enstitüsü Dergisi. 01 Mart 2026;9(2):888-901. doi:10.47495/okufbed.1749953

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