Cerium oxide nanoparticle elicits oxidative stress, endocrine imbalance and lowers sperm characteristics in testes of balb/c mice

Summary The toxicity of metallic nanoparticles is a growing concern due to its application in industries and homes. We investigated the toxicity of cerium oxide nanoparticles (CeO2NPs) on reproductive system in male balb/c mice. Twenty mice were divided into four groups of five animals each and trea...

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Published inAndrologia Vol. 50; no. 3; pp. e12920 - n/a
Main Authors Adebayo, O. A., Akinloye, O., Adaramoye, O. A.
Format Journal Article
LanguageEnglish
Published Germany Wiley Subscription Services, Inc 01.04.2018
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Abstract Summary The toxicity of metallic nanoparticles is a growing concern due to its application in industries and homes. We investigated the toxicity of cerium oxide nanoparticles (CeO2NPs) on reproductive system in male balb/c mice. Twenty mice were divided into four groups of five animals each and treated thus: normal saline (control), 100, 200 and 300 μg/kg CeO2NPs (i.p.,) thrice in a week for five consecutive weeks. Results showed that CeO2NPs significantly reduced the levels of haemoglobin, PCV and RBC count relative to controls. In addition, luteinising and follicle‐stimulating hormones (FSH and LH) and prolactin were significantly reduced in the mice. Specifically, CeO2NPs at 100 μg/kg decreased testosterone by 23%, while CeO2NPs at 200 μg/kg decreased FSH, LH and prolactin by 25%, 26% and 13%, respectively. Testicular malondialdehyde was increased by 103%, 106% and 135% in mice treated with 100, 200 and 300 μg/kg CeO2NPs, respectively. CeO2NPs caused a significant reduction in activities of antioxidant enzymes and levels of reduced glutathione and total nitric oxide. Moreso, CeO2NPs decreased sperm motility and count and increased total sperm abnormality in mice. Histology revealed congestion and degeneration of seminiferous tubules. Overall, CeO2NPs induces testicular dysfunction via disruption of antioxidant/oxidant balance and endocrine suppression.
AbstractList The toxicity of metallic nanoparticles is a growing concern due to its application in industries and homes. We investigated the toxicity of cerium oxide nanoparticles (CeO NPs) on reproductive system in male balb/c mice. Twenty mice were divided into four groups of five animals each and treated thus: normal saline (control), 100, 200 and 300 μg/kg CeO NPs (i.p.,) thrice in a week for five consecutive weeks. Results showed that CeO NPs significantly reduced the levels of haemoglobin, PCV and RBC count relative to controls. In addition, luteinising and follicle-stimulating hormones (FSH and LH) and prolactin were significantly reduced in the mice. Specifically, CeO NPs at 100 μg/kg decreased testosterone by 23%, while CeO NPs at 200 μg/kg decreased FSH, LH and prolactin by 25%, 26% and 13%, respectively. Testicular malondialdehyde was increased by 103%, 106% and 135% in mice treated with 100, 200 and 300 μg/kg CeO NPs, respectively. CeO NPs caused a significant reduction in activities of antioxidant enzymes and levels of reduced glutathione and total nitric oxide. Moreso, CeO NPs decreased sperm motility and count and increased total sperm abnormality in mice. Histology revealed congestion and degeneration of seminiferous tubules. Overall, CeO NPs induces testicular dysfunction via disruption of antioxidant/oxidant balance and endocrine suppression.
Summary The toxicity of metallic nanoparticles is a growing concern due to its application in industries and homes. We investigated the toxicity of cerium oxide nanoparticles (CeO2NPs) on reproductive system in male balb/c mice. Twenty mice were divided into four groups of five animals each and treated thus: normal saline (control), 100, 200 and 300 μg/kg CeO2NPs (i.p.,) thrice in a week for five consecutive weeks. Results showed that CeO2NPs significantly reduced the levels of haemoglobin, PCV and RBC count relative to controls. In addition, luteinising and follicle‐stimulating hormones (FSH and LH) and prolactin were significantly reduced in the mice. Specifically, CeO2NPs at 100 μg/kg decreased testosterone by 23%, while CeO2NPs at 200 μg/kg decreased FSH, LH and prolactin by 25%, 26% and 13%, respectively. Testicular malondialdehyde was increased by 103%, 106% and 135% in mice treated with 100, 200 and 300 μg/kg CeO2NPs, respectively. CeO2NPs caused a significant reduction in activities of antioxidant enzymes and levels of reduced glutathione and total nitric oxide. Moreso, CeO2NPs decreased sperm motility and count and increased total sperm abnormality in mice. Histology revealed congestion and degeneration of seminiferous tubules. Overall, CeO2NPs induces testicular dysfunction via disruption of antioxidant/oxidant balance and endocrine suppression.
The toxicity of metallic nanoparticles is a growing concern due to its application in industries and homes. We investigated the toxicity of cerium oxide nanoparticles (CeO2NPs) on reproductive system in male balb/c mice. Twenty mice were divided into four groups of five animals each and treated thus: normal saline (control), 100, 200 and 300 μg/kg CeO2NPs (i.p.,) thrice in a week for five consecutive weeks. Results showed that CeO2NPs significantly reduced the levels of haemoglobin, PCV and RBC count relative to controls. In addition, luteinising and follicle‐stimulating hormones (FSH and LH) and prolactin were significantly reduced in the mice. Specifically, CeO2NPs at 100 μg/kg decreased testosterone by 23%, while CeO2NPs at 200 μg/kg decreased FSH, LH and prolactin by 25%, 26% and 13%, respectively. Testicular malondialdehyde was increased by 103%, 106% and 135% in mice treated with 100, 200 and 300 μg/kg CeO2NPs, respectively. CeO2NPs caused a significant reduction in activities of antioxidant enzymes and levels of reduced glutathione and total nitric oxide. Moreso, CeO2NPs decreased sperm motility and count and increased total sperm abnormality in mice. Histology revealed congestion and degeneration of seminiferous tubules. Overall, CeO2NPs induces testicular dysfunction via disruption of antioxidant/oxidant balance and endocrine suppression.
Author Akinloye, O.
Adaramoye, O. A.
Adebayo, O. A.
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2017 Blackwell Verlag GmbH.
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Keywords toxicity
cerium oxide nanoparticles
reproductive hormones
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    fullname: Cai
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  article-title: Korean red ginseng extract rejuvenates testicular ineffectiveness and sperm maturation process in aged rats by regulating redox proteins and oxidative defense mechanisms
  publication-title: Experimental Gerontology
  doi: 10.1016/j.exger.2015.05.004
  contributor:
    fullname: Kopalli
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Snippet Summary The toxicity of metallic nanoparticles is a growing concern due to its application in industries and homes. We investigated the toxicity of cerium...
The toxicity of metallic nanoparticles is a growing concern due to its application in industries and homes. We investigated the toxicity of cerium oxide...
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wiley
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StartPage e12920
SubjectTerms Antioxidants
cerium oxide nanoparticles
Cerium oxides
Degeneration
Follicle-stimulating hormone
Glutathione
Hemoglobin
Luteinizing hormone
Malondialdehyde
Nanoparticles
Nitric oxide
Oxidative stress
Prolactin
reproductive hormones
Reproductive system
Rodents
Sperm
Testes
Testosterone
Toxicity
Tubules
Title Cerium oxide nanoparticle elicits oxidative stress, endocrine imbalance and lowers sperm characteristics in testes of balb/c mice
URI https://onlinelibrary.wiley.com/doi/abs/10.1111%2Fand.12920
https://www.ncbi.nlm.nih.gov/pubmed/29164652
https://www.proquest.com/docview/2009066463
Volume 50
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