Green synthesis and characterization of copper nano-particles with propolis and their potential inhibitory effect on uropathogenic E.coli.

A current focus in nanotechnology and nanoscience is the green biosynthesis of nanoparticles (NPs) using biomaterials. Research on green methods for making metal oxide NPs is gaining momentum to safeguard the environment from the potential dangers associated with toxic chemicals. This study aimed to...

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Publicado en:Revista Latinoamericana de Hipertensión Vol. 18; no. 8; pp. 383 - 394
Autores principales: Al-Shammari, Ali, Ismael, Qutaiba A., Ali, Mohammed Shakir, Imran, Obaida Amer
Formato: Artículo
Publicado: Revista Latinoamericana de Hipertension 2023
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Acceso en línea:Ver este registro en EBSCOhost
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        atl: Green synthesis and characterization of copper nano-particles with propolis and their potential inhibitory effect on uropathogenic E.coli.
      aug:
        au:
          Al-Shammari, Ali
          Ismael, Qutaiba A.
          Ali, Mohammed Shakir
          Imran, Obaida Amer
        affil: Department of Pharmaceutics, College of Pharmacy, Al-Farahidi University, Baghdad, Iraq.
      su:
        Propolis
        Copper
        Surface plasmon resonance
        Nanoparticles
        Drug delivery systems
        Poisons
      sug:
        subj:
          Propolis
          Copper
          Surface plasmon resonance
          Nanoparticles
          Drug delivery systems
          Poisons
      keyword:
        Copper nanoparticles
        MIC
        Nanopartículas de cobre
        Propóleo
        qPCR
        UPEC
        Nanopartículas de cobre
        Propóleo
      ab:
        A current focus in nanotechnology and nanoscience is the green biosynthesis of nanoparticles (NPs) using biomaterials. Research on green methods for making metal oxide NPs is gaining momentum to safeguard the environment from the potential dangers associated with toxic chemicals. This study aimed to synthesize copper NPs (CuNPs) via propolis extraction, a novel application of nanoscience. The results of our study were characterized by UV-visible absorption spectra, XRD, FTIR, and SEM and then to figure out the antibacterial activity against UPEC strains. According to an FTIR examination, substances present in propolis extract may affect how the surface of the created NPs is modified. The propolis extract spectrum exhibited sharp peaks at 2924.45cm, 1624.57cm, and 1517.11cm to 1056.15cm and 3422 cm, which might be due to C = O and C = C aromatic stretching frequencies. We found a characteristic peak at 385nm signifying the surface plasmon resonance (SPR) with propolis extract. Our results confirmed of the potential role of antibacterial activity by the green synthesized CuNPs. Significant MIC values were seen at 8.4 ± 0.192 (1mg/ml) (P<0.05). We also found significant biofilm inhibition (84%) and reduction in motility (92%) when compared to a positive control (Ampicillin). The qPCR study found fimH and fliC gene members to be downregulated to 35% and 66%. However, we could not find an effect on the BamA gene member. For clinical uses, such as drug delivery systems, medication formulation, and biomedical applications, the green production of CuNPs from propolis may be a suitable candidate.
        Un enfoque actual en nanotecnología y nanociencia es la biosíntesis verde de nanopartículas (NP) utilizando biomateriales. La investigación sobre métodos ecológicos para fabricar NP de óxido metálico está ganando impulso para proteger el medio ambiente de los peligros potenciales asociados con los productos químicos tóxicos. Este estudio tuvo como objetivo sintetizar NP de cobre (CuNP) mediante la extracción de propóleo, una nueva aplicación de la nanociencia. Los resultados de nuestro estudio se caracterizaron mediante espectros de absorción UV-visible, XRD, FTIR y SEM y luego determinaron la actividad antibacteriana contra las cepas UPEC. Según un examen FTIR, las sustancias presentes en el extracto de propóleo pueden afectar la forma en que se modifica la superficie de las NP creadas. El espectro del extracto de propóleo exhibió picos agudos en 2924,45 cm-1, 1624,57 cm-1 y 1517,11 cm-1 a 1056,15 cm-1 y 3422 cm-1, lo que podría deberse a las frecuencias de estiramiento aromático C = O y C = C. Encontramos un pico característico a 385 nm que significa resonancia de plasmón superficial (SPR) con extracto de propóleo. Nuestros resultados confirmaron el papel potencial de la actividad antibacteriana de las CuNP sintetizadas en verde. Se observaron valores de CIM significativos en 8,4 ± 0,192 (1 mg/ml) (P<0,05). También encontramos una inhibición significativa de la biopelícula (84%) y una reducción de la motilidad (92%) en comparación con un control positivo (ampicilina). El estudio qPCR encontró que los miembros de los genes fimH y fliC estaban regulados negativamente en un 35% y un 66%. Sin embargo, no pudimos encontrar ningún efecto sobre el miembro del gen BamA. Para usos clínicos, como sistemas de administración de fármacos, formulación de medicamentos y aplicaciones biomédicas, la producción verde de CuNP a partir de propóleos puede ser un candidato adecuado.
      pubtype: Academic Journal
      doctype: Article
      src: R
    language: English
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