2019
DOI: 10.1088/1742-6596/1178/1/012008
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Study the Antifungal Activity of ZnS:Mn Nanoparticles Against Some Isolated Pathogenic Fungi

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Cited by 13 publications
(8 citation statements)
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“…These changes can be explained by pharmacological sensitivity with the time, the ability of yeast to tolerate the toxic effects of antimicrobial resistance and its ability to develop some resistance mechanisms. The differences in the results of the current study with the results of other studies in developed countries based on the environmental location and excessive intake of antimicrobial agents may explain the transmission of genetic resistance between resistant isolates to sensitive isolates Due to unhealthy and personal hygiene practices, including the introduction of sewage into drinking water, leading to the transmission of resistance genes [33,35].…”
Section: Comparison Of Isolates Isolated From Respiratory Tractcontrasting
confidence: 59%
“…These changes can be explained by pharmacological sensitivity with the time, the ability of yeast to tolerate the toxic effects of antimicrobial resistance and its ability to develop some resistance mechanisms. The differences in the results of the current study with the results of other studies in developed countries based on the environmental location and excessive intake of antimicrobial agents may explain the transmission of genetic resistance between resistant isolates to sensitive isolates Due to unhealthy and personal hygiene practices, including the introduction of sewage into drinking water, leading to the transmission of resistance genes [33,35].…”
Section: Comparison Of Isolates Isolated From Respiratory Tractcontrasting
confidence: 59%
“…demonstrated resistance to commercially available antimicrobial agents at an increasing rate and has become a global threat especially in developing countries. To obviate this, nanoparticles were recently used which provide a new strategy for the development of new antimicrobial agents [2,[19][20][21][22]. Among noble metals, silver shows disinfecting, antimicrobial properties and tremendous medicinal value [7,23].…”
mentioning
confidence: 99%
“…Fatemeh in 2016 examined that designed ZnO nanofluids are effective in reducing in-vitro fungal growth on dermal (ringworm), mucosal (thrush), and vaginal infections samples [41]. Recently synthesized nanostructures of zinc, manganese, and thioacetamide have been found to possess antifungal activity against pathogenic fungal species [42]. In recent studies, ZnO nanoparticles were synthesized that exhibited antifungal activity [43][44][45][46][47].…”
Section: Zinc Nanostructures and Their Hybridsmentioning
confidence: 99%