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      Sargassum myriocystum-mediated TiO2-nanoparticles and their antimicrobial, larvicidal activities and enhanced photocatalytic degradation of various dyes

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          A Method of Computing the Effectiveness of an Insecticide

          W. Abbott (1925)
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            Is Open Access

            The antimicrobial activity of nanoparticles: present situation and prospects for the future

            Nanoparticles (NPs) are increasingly used to target bacteria as an alternative to antibiotics. Nanotechnology may be particularly advantageous in treating bacterial infections. Examples include the utilization of NPs in antibacterial coatings for implantable devices and medicinal materials to prevent infection and promote wound healing, in antibiotic delivery systems to treat disease, in bacterial detection systems to generate microbial diagnostics, and in antibacterial vaccines to control bacterial infections. The antibacterial mechanisms of NPs are poorly understood, but the currently accepted mechanisms include oxidative stress induction, metal ion release, and non-oxidative mechanisms. The multiple simultaneous mechanisms of action against microbes would require multiple simultaneous gene mutations in the same bacterial cell for antibacterial resistance to develop; therefore, it is difficult for bacterial cells to become resistant to NPs. In this review, we discuss the antibacterial mechanisms of NPs against bacteria and the factors that are involved. The limitations of current research are also discussed.
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              A review on the visible light active titanium dioxide photocatalysts for environmental applications

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                Author and article information

                Contributors
                (View ORCID Profile)
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                Journal
                Environmental Research
                Environmental Research
                Elsevier BV
                00139351
                March 2022
                March 2022
                : 204
                : 112278
                Article
                10.1016/j.envres.2021.112278
                34757031
                abea674f-8c83-446b-aa12-11cf6f4a5529
                © 2022

                https://www.elsevier.com/tdm/userlicense/1.0/

                https://doi.org/10.15223/policy-017

                https://doi.org/10.15223/policy-037

                https://doi.org/10.15223/policy-012

                https://doi.org/10.15223/policy-029

                https://doi.org/10.15223/policy-004

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