Artigo De: orcid, cienciavitae

Sono-Biosynthesis and Characterization of AuNPs from Danube Delta Nymphaea alba Root Extracts and Their Biological Properties

Nanomaterials

Mihaela Cudalbeanu; David Peitinho; Maria Paula Cabral Campello2021MDPI

Informações chave

Autores:

Mihaela Cudalbeanu; David Peitinho; Francisco Silva; Rosa Marques; Teresa Pinheiro (Maria Teresa Ferreira Marques Pinheiro); Ana C. Ferreira (Ana Cristina Gomes Ferreira da Silva Parreira); Fernanda Marques (Fernanda Marujo Marques); António Paulo (António Manuel Rocha Paulo); Catarina F. Soeiro; Sílvia Andreia Sousa (Sílvia Andreia Bento da Silva Sousa Barbosa); Jorge Humberto Leitão (Jorge Humberto Gomes Leitão); Aurel Tăbăcaru; Sorin Marius Avramescu; Rodica Mihaela Dinica; Maria Paula Cabral Campello (Maria Paula Cordeiro Crespo Cabral Campello Aboim de Barros)

Publicado em

14/06/2021

Resumo

Root extracts from Danube Delta Nymphaea alba were used to prepare gold nanoparticles (AuNPRn) by reducing HAuCl4 at different pHs (6.4–8.4) using ultrasonic irradiation: an easy, cheap, eco-friendly and green approach. Their antibacterial and anticancer activities were evaluated against Staphylococcus aureus and Escherichia coli, and A2780 ovarian cancer cells, respectively. The AuNPRn were characterized concerning their phytoconstituents (polyphenols, flavonoids and condensed tannins) and gold content. All of the nanoparticles were negatively charged. AuNPRn exhibited a hydrodynamic size distribution ranging from 32 nm to 280 nm, with the larger nanoparticles being obtained with an Au/root extract ratio of 0.56, pH 7 and 10 min of sonication (AuNPR1), whereas the smallest were obtained with an Au/root extract ratio of 0.24, pH 7.8 and 40 min of sonication (AuNPR4). The TEM/SEM images showed that the AuNPRn had different shapes. The ATR-FTIR indicated that AuNPRn interact mainly with hydroxyl groups present in the polyphenol compounds, which also confirm their high antioxidant capacity, except for AuNPR2 obtained at pH 6.4. Among the AuNPRn, the smallest ones exhibited enhanced antimicrobial and anticancer activities.

Detalhes da publicação

Autores da comunidade :

Versão da publicação

AO - Versão original do autor

Editora

MDPI

Ligação para a versão da editora

https://www.mdpi.com/journal/nanomaterials

Título do contentor da publicação

Nanomaterials

Primeira página ou número de artigo

1562

Volume

11

Fascículo

6

ISSN

2079-4991

WoS (Web of Science)

WOS:000666005600001

Domínio Científico (FOS)

nano-technology - Nanotecnologia

Palavras-chave

  • gold nanoparticles
  • Nymphaea alba
  • sonochemistry
  • biosynthesis
  • antimicrobial activity
  • antitumor activity
  • antioxidant compounds

Idioma da publicação (código ISO)

eng - Inglês

Identificador alternativo (URI)

http://dx.doi.org/10.3390/nano11061562

Acesso à publicação:

Acesso Aberto

Licença Creative Commons

CC-BY - CC-BY