Biosynthesis and characterization of gold nanoparticles using Brazilian red propolis and evaluation of its antimicrobial and anticancer activities

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作者
C. E. A. Botteon
L. B. Silva
G. V. Ccana-Ccapatinta
T. S. Silva
S. R. Ambrosio
R. C. S. Veneziani
J. K. Bastos
P. D. Marcato
机构
[1] University of São Paulo,GNanoBio, School of Pharmaceutical Sciences of Ribeirão Preto
[2] University of São Paulo,School of Pharmaceutical Sciences of Ribeirão Preto
[3] UNIFRAN,Research Center of Exact and Technological Sciences
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Scientific Reports | / 11卷
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摘要
Gold nanoparticles (AuNPs) are highlighted due to their low toxicity, compatibility with the human body, high surface area to volume ratio, and surfaces that can be easily modified with ligands. Biosynthesis of AuNPs using plant extract is considered a simple, low-cost, and eco-friendly approach. Brazilian Red Propolis (BRP), a product of bees, exhibits anti-inflammatory, anti-tumor, antioxidant, and antimicrobial activities. Here, we described the biosynthesis of AuNPs using BRP extract (AuNPextract) and its fractions (AuNPhexane, AuNPdichloromethane, AuNPethyl acetate) and evaluated their structural properties and their potential against microorganisms and cancer cells. AuNPs showed a surface plasmon resonance (SPR) band at 535 nm. The sizes and morphologies were influenced by the BRP sample used in the reaction. FTIR and TGA revealed the involvement of bioactive compounds from BRP extract or its fractions in the synthesis and stabilization of AuNPs. AuNPdichloromethane and AuNPhexane exhibited antimicrobial activities against all strains tested, showing their efficacy as antimicrobial agents to treat infectious diseases. AuNPs showed dose-dependent cytotoxic activity both in T24 and PC-3 cells. AuNPdichloromethane and AuNPextract exhibited the highest in vitro cytotoxic effect. Also, the cytotoxicity of biogenic nanoparticles was induced by mechanisms associated with apoptosis. The results highlight a potential low-cost green method using Brazilian red propolis to synthesize AuNPs, which demonstrated significant biological properties.
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[91]  
Scimeca M(2015)Medicarpin and millepurpan, two flavonoids isolated from Medicago sativa, induce apoptosis and overcome multidrug resistance in leukemia P388 cells Asian Pac. J. Cancer Prev. 20 14-undefined
[92]  
Bischetti S(2010)Formononetin-induced apoptosis of human prostate cancer cells through ERK1/2 mitogen-activated protein kinase inactivation Med. Oncol. undefined undefined-undefined
[93]  
Lamsira HK(2011)Antitumoural activity of Brazilian red propolis fraction enriched with xanthochymol and formononetin: An in vitro and in vivo study Food Chem. Toxicol. undefined undefined-undefined
[94]  
Bonfiglio R(1992)Maclurin exerts anti-cancer effects on PC-3 human prostate cancer cells via activation of p38 and inhibitions of JNK, FAK, AKT, and c-Myc signaling pathways Drugs undefined undefined-undefined
[95]  
Bonanno E(1987)Brazilian red propolis: Extracts production, physicochemical characterization, and cytotoxicity profile for antitumor activity Eur. J. Cancer Clin. Oncol. undefined undefined-undefined
[96]  
Lü X(1987)Biosynthesis physico-chemical optimization of gold nanoparticles as anti-cancer and synergetic antimicrobial activity using In Vitro Cell. Dev. Biol. undefined undefined-undefined
[97]  
Song Y(2014) fungus Evid.-Based Complement. Altern. Med. undefined undefined-undefined
[98]  
Zhu A(undefined)Active targeting of gold nanoparticles as cancer therapeutics undefined undefined undefined-undefined
[99]  
Wu F(undefined)Effect of tea polyphenol compounds on anticancer drugs in terms of anti-tumor activity, toxicology, and pharmacokinetics undefined undefined undefined-undefined
[100]  
Song Y(undefined)Anticancer effects of olive oil polyphenols and their combinations with anticancer drugs undefined undefined undefined-undefined