Matches in SemOpenAlex for { <https://semopenalex.org/work/W2437376282> ?p ?o ?g. }
- W2437376282 endingPage "1822" @default.
- W2437376282 startingPage "1815" @default.
- W2437376282 abstract "Antibacterial metal ions, such as Ag(+), Zn(2+) and Cu(2+), have been extensively used in medical implants and devices due to their strong broad spectrum of antibacterial activity. However, it is still a controversial issue as to whether they can show the desired antibacterial activity while being toxic to mammalian cells. It is very important to balance their antibacterial effectiveness with minimal damage to mammalian cells. Toward this end, this study is to identify the suitable concentrations of these three ions at which they can effectively kill two types of clinically relevant bacteria (Staphylococcus aureus (S. aureus) and Escherichia coli (E. coli)) but show no obvious cytotoxicity on fibroblasts. Such concentration ranges are found to be 2.5 × 10(-7) M-10(-6) M, 10(-5) M-10(-4) M, and 10(-5) M-10(-4) M for Ag(+), Zn(2+), and Cu(2+), respectively. Investigation of their antibacterial mechanism shows that these three metal ions all show antibacterial property through a mechanism of damaging bacterial cell membranes by the generation of reactive oxygen species but surprisingly preserving the integrity of bacterial genomic DNA. The encouraging results indicate that antibacterial metal ions with controlled concentrations can bring considerable benefits to biomedical applications." @default.
- W2437376282 created "2016-06-24" @default.
- W2437376282 creator A5003117942 @default.
- W2437376282 creator A5008423769 @default.
- W2437376282 creator A5011415224 @default.
- W2437376282 creator A5014288013 @default.
- W2437376282 creator A5025064037 @default.
- W2437376282 creator A5031756065 @default.
- W2437376282 creator A5044131040 @default.
- W2437376282 creator A5059839949 @default.
- W2437376282 creator A5069266579 @default.
- W2437376282 creator A5076042378 @default.
- W2437376282 creator A5082396860 @default.
- W2437376282 creator A5082749546 @default.
- W2437376282 creator A5086557072 @default.
- W2437376282 date "2015-08-10" @default.
- W2437376282 modified "2023-10-15" @default.
- W2437376282 title "Concentration Ranges of Antibacterial Cations for Showing the Highest Antibacterial Efficacy but the Least Cytotoxicity against Mammalian Cells: Implications for a New Antibacterial Mechanism" @default.
- W2437376282 cites W1963975473 @default.
- W2437376282 cites W1968803168 @default.
- W2437376282 cites W1977495911 @default.
- W2437376282 cites W1978354722 @default.
- W2437376282 cites W1986194578 @default.
- W2437376282 cites W1989199743 @default.
- W2437376282 cites W1992303688 @default.
- W2437376282 cites W1992621754 @default.
- W2437376282 cites W2000417273 @default.
- W2437376282 cites W2010144147 @default.
- W2437376282 cites W2013978862 @default.
- W2437376282 cites W2014478371 @default.
- W2437376282 cites W2015031343 @default.
- W2437376282 cites W2023256273 @default.
- W2437376282 cites W2024928939 @default.
- W2437376282 cites W2026672579 @default.
- W2437376282 cites W2028526504 @default.
- W2437376282 cites W2030681667 @default.
- W2437376282 cites W2040060422 @default.
- W2437376282 cites W2043934279 @default.
- W2437376282 cites W2044588304 @default.
- W2437376282 cites W2044665743 @default.
- W2437376282 cites W2049146989 @default.
- W2437376282 cites W2050027509 @default.
- W2437376282 cites W2057830405 @default.
- W2437376282 cites W2061069848 @default.
- W2437376282 cites W2061073363 @default.
- W2437376282 cites W2063852310 @default.
- W2437376282 cites W2067432111 @default.
- W2437376282 cites W2068338112 @default.
- W2437376282 cites W2072178691 @default.
- W2437376282 cites W2074598258 @default.
- W2437376282 cites W2077398580 @default.
- W2437376282 cites W2081376387 @default.
- W2437376282 cites W2081745487 @default.
- W2437376282 cites W2095075010 @default.
- W2437376282 cites W2098053923 @default.
- W2437376282 cites W2098888749 @default.
- W2437376282 cites W2102954760 @default.
- W2437376282 cites W2103857145 @default.
- W2437376282 cites W2105344009 @default.
- W2437376282 cites W2109850567 @default.
- W2437376282 cites W2114851922 @default.
- W2437376282 cites W2115728658 @default.
- W2437376282 cites W2130723418 @default.
- W2437376282 cites W2131122830 @default.
- W2437376282 cites W2132041443 @default.
- W2437376282 cites W2142971763 @default.
- W2437376282 cites W2150939200 @default.
- W2437376282 cites W2152699429 @default.
- W2437376282 cites W2157272909 @default.
- W2437376282 cites W2160645700 @default.
- W2437376282 cites W2167077438 @default.
- W2437376282 cites W2169848595 @default.
- W2437376282 doi "https://doi.org/10.1021/acs.chemrestox.5b00258" @default.
- W2437376282 hasPubMedCentralId "https://www.ncbi.nlm.nih.gov/pmc/articles/4925100" @default.
- W2437376282 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/26258952" @default.
- W2437376282 hasPublicationYear "2015" @default.
- W2437376282 type Work @default.
- W2437376282 sameAs 2437376282 @default.
- W2437376282 citedByCount "187" @default.
- W2437376282 countsByYear W24373762822015 @default.
- W2437376282 countsByYear W24373762822016 @default.
- W2437376282 countsByYear W24373762822017 @default.
- W2437376282 countsByYear W24373762822018 @default.
- W2437376282 countsByYear W24373762822019 @default.
- W2437376282 countsByYear W24373762822020 @default.
- W2437376282 countsByYear W24373762822021 @default.
- W2437376282 countsByYear W24373762822022 @default.
- W2437376282 countsByYear W24373762822023 @default.
- W2437376282 crossrefType "journal-article" @default.
- W2437376282 hasAuthorship W2437376282A5003117942 @default.
- W2437376282 hasAuthorship W2437376282A5008423769 @default.
- W2437376282 hasAuthorship W2437376282A5011415224 @default.
- W2437376282 hasAuthorship W2437376282A5014288013 @default.
- W2437376282 hasAuthorship W2437376282A5025064037 @default.
- W2437376282 hasAuthorship W2437376282A5031756065 @default.
- W2437376282 hasAuthorship W2437376282A5044131040 @default.
- W2437376282 hasAuthorship W2437376282A5059839949 @default.
- W2437376282 hasAuthorship W2437376282A5069266579 @default.