Zuñiga-Miranda Johana, Carrera-Pacheco Saskya E, Gonzalez-Pastor Rebeca, Mayorga-Ramos Arianna, Rodríguez-Pólit Cristina, Heredia-Moya Jorge, Vizuete Karla, Debut Alexis, Barba-Ostria Carlos, Coyago-Cruz Elena, Guamán Linda P
Centro de Investigación Biomédica CENBIO, Facultad de Ciencias de la Salud Eugenio Espejo, Universidad UTE, Quito 170527, Ecuador.
Centro de Nanociencia y Nanotecnología, Universidad de Las Fuerzas Armadas ESPE, Sangolquí 171103, Ecuador.
Pharmaceutics. 2024 Sep 25;16(10):1247. doi: 10.3390/pharmaceutics16101247.
. is a native plant renowned for its medicinal properties in traditional healing in the Amazon Region. This plant is rich in polyphenols, flavonoids, anthocyanins, phenolic acids, tannins, ketones, triterpenes, as well as other bioactive compounds. . This study aims to develop an innovative, eco-friendly method for synthesizing silver nanoparticles using an aqueous extract of (Ma-AgNPs), enhancing the biological activities of AgNPs by leveraging the therapeutic potential of the plant's bioactive compounds. . Silver nanoparticles were synthesized using the aqueous extract of . The biological activities of Ma-AgNPs were assessed, including antibacterial, anti-inflammatory, antioxidant, antitumor, and anti-biofilm effects, along with evaluating their hemolytic activity. . Quantitative analysis revealed that Ma-AgNPs exhibit potent antibacterial activity against multidrug and non-multidrug-resistant bacteria, with MIC values ranging from 1.3 to 10.0 µg/mL. The Ma-AgNPs significantly reduced NO production by 86.9% at 4 µg/mL, indicating strong anti-inflammatory effects. They demonstrated robust antioxidant activity with an IC50 of 5.54 ± 1.48 µg/mL and minimal hemolytic activity, with no hemolysis observed up to 20 µg/mL and only 4.5% at 40 µg/mL. Their antitumor properties were notable, with IC50 values between 2.9 and 5.4 µg/mL across various cell lines, and they achieved over 50% biofilm inhibition at concentrations of 30-40 µg/mL. . These findings underscore the potential of Ma-AgNPs for biomedical applications, particularly in developing new antimicrobial agents and bioactive coatings with reduced toxicity. This research highlights a sustainable approach that not only preserves but also amplifies the inherent biological activities of plant extracts, paving the way for innovative therapeutic solutions.
. 是一种本土植物,在亚马逊地区的传统疗法中因其药用特性而闻名。这种植物富含多酚、黄酮类化合物、花青素、酚酸、单宁、酮、三萜以及其他生物活性化合物。. 本研究旨在开发一种创新的、环保的方法,使用 的水提取物合成银纳米颗粒(Ma-AgNPs),通过利用该植物生物活性化合物的治疗潜力来增强AgNPs的生物活性。. 使用 的水提取物合成了银纳米颗粒。评估了Ma-AgNPs的生物活性,包括抗菌、抗炎、抗氧化、抗肿瘤和抗生物膜作用,同时评估了它们的溶血活性。. 定量分析表明,Ma-AgNPs对多药耐药和非多药耐药细菌表现出强大的抗菌活性,MIC值范围为1.3至10.0 µg/mL。Ma-AgNPs在4 µg/mL时显著降低了86.9%的NO产生,表明具有强大的抗炎作用。它们表现出强大的抗氧化活性,IC50为5.54 ± 1.48 µg/mL,溶血活性最小,在高达20 µg/mL时未观察到溶血,在40 µg/mL时仅为4.5%。它们的抗肿瘤特性显著,在各种细胞系中的IC50值在2.9至5.4 µg/mL之间,并且在30 - 40 µg/mL的浓度下实现了超过50%的生物膜抑制。. 这些发现强调了Ma-AgNPs在生物医学应用中的潜力,特别是在开发毒性降低的新型抗菌剂和生物活性涂层方面。这项研究突出了一种可持续的方法,不仅保留而且放大了植物提取物固有的生物活性,为创新的治疗解决方案铺平了道路。