Phytosynthesis and Characterization of Silver Nanoparticles from Antigonon leptopus: Assessment of Antibacterial and Cytotoxic Properties.

IF 4.9 3区 医学 Q1 PHARMACOLOGY & PHARMACY
Marisol Gastelum-Cabrera, Pablo Mendez-Pfeiffer, Manuel G Ballesteros-Monrreal, Brenda Velasco-Rodríguez, Patricia D Martínez-Flores, Sergio Silva-Bea, Vicente Domínguez-Arca, Gerardo Prieto, Silvia Barbosa, Ana Otero, Pablo Taboada, Josué Juárez
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Abstract

Background: Silver nanoparticles (AgNPs) show promises as antimicrobial biomaterials with use for combating multidrug-resistant microorganisms, and they are widely used in healthcare, medicine, and food industries. However, traditional physicochemical synthesis methods often require harsh conditions and toxic reagents, generating harmful waste. The synthesis of AgNPs using plant-derived bioactive compounds offers an eco-friendly alternative to conventional methods. Methods: In this study, a bio-green approach was employed to synthesize AgNPs using ethanolic extracts from Antigonon leptopus leaves (EXT-AL). The synthesis was optimized under different pH conditions (5.5, 8.0, 10.0) and EXT-AL concentrations (10-200 μg/mL). Antibacterial activity was evaluated against Escherichia coli and Staphylococcus aureus, and cytotoxicity was assessed in HeLa, CaCo-2, T731-GFP, and HaCaT cell lines. Results: UV-Vis spectroscopy confirmed nanoparticle formation, with a surface plasmon resonance peak at 410 nm. Alkaline conditions (pH 10.0) favored the formation of smaller, spherical AgNPs. Characterization by DLS, TEM, and AFM revealed uniform nanoparticles with a hydrodynamic diameter of 93.48 ± 1.88 nm and a zeta potential of -37.80 ± 1.28 mV. The AgNPs remained stable in Milli-Q water but tended to aggregate in PBS, DMEM, and MHB media. Antibacterial assays demonstrated significant bactericidal activity against Escherichia coli and Staphylococcus aureus at 3.9 μg/mL (Ag⁺ equivalent). Cytotoxicity tests showed no toxicity to HeLa, T731-GFP, CaCo-2, or HaCaT cells at concentrations ≥ 7.8 μg/mL after 24 h. Conclusions: These findings highlight Antigonon leptopus extract as a sustainable and cost-effective resource for AgNPs synthesis, with strong antimicrobial properties and potential biomedical applications.

leptopus银纳米粒子的植物合成和表征:抗菌和细胞毒性的评估。
背景:银纳米颗粒(AgNPs)作为抗多药耐药微生物的抗菌生物材料,在医疗保健、医药和食品工业中有着广泛的应用。然而,传统的物理化学合成方法往往需要苛刻的条件和有毒的试剂,产生有害废物。利用植物源性生物活性化合物合成AgNPs为传统方法提供了一种环保的替代方法。方法:采用生物绿色方法,以leptopus Antigonon leaves乙醇提取物(EXT-AL)为原料合成AgNPs。在不同pH条件(5.5、8.0、10.0)和EXT-AL浓度(10 ~ 200 μg/mL)下优化合成。对大肠杆菌和金黄色葡萄球菌进行抑菌活性评估,并对HeLa、CaCo-2、T731-GFP和HaCaT细胞株进行细胞毒性评估。结果:紫外可见光谱证实纳米颗粒形成,表面等离子体共振峰位于410 nm处。碱性条件(pH 10.0)有利于形成较小的球形AgNPs。通过DLS、TEM和AFM表征,纳米颗粒的水动力直径为93.48±1.88 nm, zeta电位为-37.80±1.28 mV。AgNPs在milliq水中保持稳定,但在PBS、DMEM和MHB介质中倾向于聚集。抑菌实验表明,在3.9 μg/mL (Ag +当量)的浓度下,对大肠杆菌和金黄色葡萄球菌具有显著的杀菌活性。细胞毒性试验显示,浓度≥7.8 μg/mL时,24 h后对HeLa、T731-GFP、caco2或HaCaT细胞无毒性。结论:这些发现表明,章鱼Antigonon提取物具有较强的抗菌性能和潜在的生物医学应用价值,是一种可持续且经济的AgNPs合成资源。
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来源期刊
Pharmaceutics
Pharmaceutics Pharmacology, Toxicology and Pharmaceutics-Pharmaceutical Science
CiteScore
7.90
自引率
11.10%
发文量
2379
审稿时长
16.41 days
期刊介绍: Pharmaceutics (ISSN 1999-4923) is an open access journal which provides an advanced forum for the science and technology of pharmaceutics and biopharmaceutics. It publishes reviews, regular research papers, communications,  and short notes. Covered topics include pharmacokinetics, toxicokinetics, pharmacodynamics, pharmacogenetics and pharmacogenomics, and pharmaceutical formulation. Our aim is to encourage scientists to publish their experimental and theoretical details in as much detail as possible. There is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced.
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