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Synthesis, biomedical applications, and toxicity of CuO nanoparticles
in
Antidiabetics
/ Antioxidants
/ Antiparasitic agents
/ Antiviral activity
/ Antiviral drugs
/ Biocompatibility
/ Biological properties
/ Biomedical materials
/ Cancer
/ Copper oxides
/ Diabetes mellitus
/ Fabrication
/ In vivo methods and tests
/ Nanomaterials
/ Nanoparticles
/ Nanotechnology
/ Selectivity
/ Synthesis
/ Toxicity
/ Toxicity testing
2023
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Synthesis, biomedical applications, and toxicity of CuO nanoparticles
by
in
Antidiabetics
/ Antioxidants
/ Antiparasitic agents
/ Antiviral activity
/ Antiviral drugs
/ Biocompatibility
/ Biological properties
/ Biomedical materials
/ Cancer
/ Copper oxides
/ Diabetes mellitus
/ Fabrication
/ In vivo methods and tests
/ Nanomaterials
/ Nanoparticles
/ Nanotechnology
/ Selectivity
/ Synthesis
/ Toxicity
/ Toxicity testing
2023
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Do you wish to request the book?
Synthesis, biomedical applications, and toxicity of CuO nanoparticles
in
Antidiabetics
/ Antioxidants
/ Antiparasitic agents
/ Antiviral activity
/ Antiviral drugs
/ Biocompatibility
/ Biological properties
/ Biomedical materials
/ Cancer
/ Copper oxides
/ Diabetes mellitus
/ Fabrication
/ In vivo methods and tests
/ Nanomaterials
/ Nanoparticles
/ Nanotechnology
/ Selectivity
/ Synthesis
/ Toxicity
/ Toxicity testing
2023
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Synthesis, biomedical applications, and toxicity of CuO nanoparticles
Journal Article
Synthesis, biomedical applications, and toxicity of CuO nanoparticles
2023
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Overview
Versatile nature of copper oxide nanoparticles (CuO NPs) has made them an imperative nanomaterial being employed in nanomedicine. Various physical, chemical, and biological methodologies are in use for the preparation of CuO NPs. The physicochemical and biological properties of CuO NPs are primarily affected by their method of fabrication; therefore, selectivity of a synthetic technique is immensely important that makes these NPs appropriate for a specific biomedical application. The deliberate use of CuO NPs in biomedicine questions their biocompatible nature. For this reason, the present review has been designed to focus on the approaches employed for the synthesis of CuO NPs; their biomedical applications highlighting antimicrobial, anticancer, and antioxidant studies; and most importantly, the in vitro and in vivo toxicity associated with these NPs. This comprehensive overview of CuO NPs is unique and novel as it emphasizes on biomedical applications of CuO NPs along with its toxicological assessments which would be useful in providing core knowledge to researchers working in these domains for planning and conducting futuristic studies.Key Points• The recent methods for fabrication of CuO nanoparticles have been discussed with emphasis on green synthesis methods for different biomedical approaches.• Antibacterial, antioxidant, anticancer, antiparasitic, antidiabetic, and antiviral properties of CuO nanoparticles have been explained.• In vitro and in vivo toxicological studies of CuO nanoparticles exploited along with their respective mechanisms.
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