2019
DOI: 10.1155/2019/9268128
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Nanogold for In Vitro Inhibition of Salmonella Strains

Abstract: The pathogenic strains of Salmonella typhi, paratyphi, and typhimurium are the major cause of typhoid and food poisoning in children and adults in developing countries. According to WHO estimation, 22 million cases of typhoid fever and 200,000 related deaths occur worldwide each year with an additional 6 million cases of paratyphoid fever estimated to occur annually with the highest incidence in children, resulting in a high death rate. The high use of antibiotics has also given rise to drug-resistant strains.… Show more

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Cited by 7 publications
(3 citation statements)
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“…Higher concentrations of NPs were found to exhibit antibacterial activity with the surface charge of −18.4 mV. 343 Nanotitania exhibits good antimicrobial activity of infectious respiratory bacteria, such as K. pneumoniae and Haemophilus influenzae. The nanotitania at 25 and 50 mg/mL concentration showed good inhibition.…”
Section: Antibacterial Activitymentioning
confidence: 97%
See 1 more Smart Citation
“…Higher concentrations of NPs were found to exhibit antibacterial activity with the surface charge of −18.4 mV. 343 Nanotitania exhibits good antimicrobial activity of infectious respiratory bacteria, such as K. pneumoniae and Haemophilus influenzae. The nanotitania at 25 and 50 mg/mL concentration showed good inhibition.…”
Section: Antibacterial Activitymentioning
confidence: 97%
“…Boatemaa et al chemically synthesized Au NPs and studied their inhibition activity against typhoid bacteria ( S. typhi and S. paratyphi ). Higher concentrations of NPs were found to exhibit antibacterial activity with the surface charge of −18.4 mV . Nanotitania exhibits good antimicrobial activity of infectious respiratory bacteria, such as K. pneumoniae and Haemophilus influenzae .…”
Section: Inhibitory Action Of Nanoparticles Against Microbesmentioning
confidence: 99%
“…In order to mute the oxidation while retaining their chemical activity, Ṇ Ps are surface-modi ed with polymers which are biocompatible in nature [11]. These Ṇ Ps are used e ciently for magnetic resonance (MR) imaging [12][13][14][15], drug/gene delivery [16][17], as nanocatalysts [18][19], as nanoadsorbents [20][21], as biosensors [22][23][24], etc.…”
Section: Introductionmentioning
confidence: 99%