SLN and chitosan nano-delivery systems for antibacterial effect of black seed (Nigella sativa) oil against S. aureus.

Staphylococcus aureus with current universal importance represents a main carrier of emerging antimicrobial resistance determinatives of global health concerns that have developed drug resistance mechanisms to the various available antibiotics. On the other hand, due to the antimicrobial potential o...

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Publicado en:International Journal of Environmental Health Research Vol. 35; no. 4; pp. 991 - 1003
Autores principales: Payamifard, Mahdis, Nemattalab, Mehran, Rezaie Shirmard, Leila, Hesari, Zahra
Formato: pictorial research tables/charts Journal Article
Publicado: Taylor & Francis Ltd Apr2025
Acceso en línea:Ver este registro en EBSCOhost
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        09603123
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      jtl: International Journal of Environmental Health Research
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      dt: Apr2025
      vid: 35
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      pub: Taylor & Francis Ltd
      place: Philadelphia, Pennsylvania
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        10.1080/09603123.2024.2378103
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        atl: SLN and chitosan nano-delivery systems for antibacterial effect of black seed (Nigella sativa) oil against S. aureus.
      aug:
        au:
          Payamifard, Mahdis
          Nemattalab, Mehran
          Rezaie Shirmard, Leila
          Hesari, Zahra
        affil: Pharmceutics, Guilan University of Medical Sciences, Rasht, Iran
      sug:
        subj:
          Nanoparticles
          Polysaccharides
          Plant Oils
          Antibiotics
          Streptococcus
          Human
          Descriptive Statistics
      ab: Staphylococcus aureus with current universal importance represents a main carrier of emerging antimicrobial resistance determinatives of global health concerns that have developed drug resistance mechanisms to the various available antibiotics. On the other hand, due to the antimicrobial potential of Nigella Sativa oil (NSO), it was hypothesized that incorporation of nano-carriers (NS-SLN and NS-chitosan (CH) nanoparticles) can enhance its antibacterial effects. This study evaluated the physico-chemical and antibacterial characteristics of NS-SLN and NS-CH. TEM images revealed a round shape with clear edges for both nanoparticles, and the average sizes were reported to be 196.4 and 446.6 nm for NS-SLN and NS-CH, respectively. The zeta potential and encapsulation efficiency were −28.9 and 59.4 mV and 73.22% and 88% for NS-SLN and NS-CH, respectively. The Minimum Inhibitory Concentrations for NSO, NS-SLN, and NS-CH against S. aureus were 480, 200, and 80 µg/mL, respectively. The results confirm significantly stronger antibacterial influences of NSO when loaded into chitosan nanoparticles as a potential candidate for nano-delivery of antimicrobial agents.
      pubtype: Academic Journal
      doctype:
        pictorial
        research
        tables/charts
        Journal Article
      ougenre: Article
    language: English
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