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Developmental toxicity of carbon nanoparticles during embryogenesis in chicken
Faculty
Agriculture
Year:
2018
Type of Publication:
ZU Hosted
Pages:
Authors:
Sameh Abdelbary Abdelnour abdelbary
Staff Zu Site
Abstract In Staff Site
Journal:
Environmental Science and Pollution Research ٍSpringer
Volume:
Keywords :
Developmental toxicity , carbon nanoparticles during embryogenesis
Abstract:
Nanoparticles (NPs) are very small particles present in a wide range of materials. There is a dearth of knowledge regarding their potential secondary effects on the health of living organisms and the environment. Increasing research attention, however, has been directed toward determining the effects on humans exposed to NPs in the environment. Although the majority of studies focus on adult animals or populations, embryos of various species are considered more susceptible to environmental effects and pollutants. Hence, research studies dealing mainly with the impacts of NPs on embryogenesis have emerged recently, as this has become a major concern. Chicken embryos occupy a special place among animal models used in toxicity and developmental investigations and have also contributed significantly to the fields of genetics, virology, immunology, cell biology, and cancer. Their rapid development and easy accessibility for experimental observance and manipulation are just a few of the advantages that have made them the vertebrate model of choice for more than two millennia. The early stages of chicken embryogenesis, which are characterized by rapid embryonic growth, provide a sensitive model for studying the possible toxic effects on organ development, body weight, and oxidative stress. The objective of this review was to evaluate the toxicity of various types of carbon black nanomaterials administered at the beginning of embryogenesis in a chicken embryo model. In addition, the effects of diamond and graphene NPs and carbon nanotubes are reviewed.
Author Related Publications
Sameh Abdelbary Abdelnour abdelbary, "Enhancing in vitro oocyte maturation competence and embryo development in farm animals: roles of vitamin-based antioxidants – a review", Walter de Gruyter GmbH, 2021
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Sameh Abdelbary Abdelnour abdelbary, "OXYGEN CONSUMPTION AND SOME PHYSIOLOGICAL TRAITS OF WEANED GIZA AND NEW ZEALAND WHITE RABBITS SUBJECTED TO LOW AND HIGH TEMPERATURES", Zagazig Journal of Agricultural Research, 2013
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Sameh Abdelbary Abdelnour abdelbary, "Growth, Carcass Traits, Blood Hematology, Serum Metabolites, Immunity, and Oxidative Indices of Growing Rabbits Fed Diets Supplemented with Red or Black Pepper Oils", MDPI, Basel, Switzerland, 2018
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Sameh Abdelbary Abdelnour abdelbary, "The application of gene marker-assisted selection and proteomics for the best meat quality criteria and body measurements in Qinchuan cattle breed", Springer Nature B.V. 2018, 2018
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Sameh Abdelbary Abdelnour abdelbary, "Beneficial impacts of bee pollen in animal production, reproduction and health", Blackwell Verlag GmbH, 2018
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Department Related Publications
Sabry Mohamed Shehata, "Influence of Dietary CHO and Protein Sources on Digestibility, Rumen Parameters and Weight Gain of Male Goats.", Benha Vet.Med., 2006
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Asmaa Mohamed Saeed Mousa, "Growth Performance, Semen Quality and Health Status as Affected by using Panicum Maximum in Rabbits Feed", Unique Scientific Publishers(USP), 2021
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Asmaa Mohamed Saeed Mousa, "IMPACT OF REPLACEMENT CLOVER HAY BY IN PANICUM MAXIMUM (GUINEA GRASS) HAY AS AN ALTERNATIVE FEED RESOURCE RABBIT FEEDING", Egyptian Journal of Rabbit Science (EJRS), 2020
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Asmaa Mohamed Saeed Mousa, "EFFECT OF SELENIUM NANOPARTICLES AND/OR spirulina platensis ON GROWTH, HEMATOBIOCHEMICAL, ANTIOXIDANT STATUS, HORMONAL PROFILE, IMMUNITY, AND APOPTOSIS OF GROWING RABBITS EXPOSED TO THERMAL STRESS", Egyptian Journal of Rabbit Science (EJRS), 2022
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Asmaa Mohamed Saeed Mousa, "Growth, Carcass Traits, Blood Hematology, Serum Metabolites, Immunity, and Oxidative Indices of Growing Rabbits Fed Diets Supplemented with Red or Black Pepper Oils", Multidisciplinary Digital Publishing Institute (MDPI), 2018
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