TY - JOUR
T1 - Green Synthesis of Silver Nanoparticles from Aloe vera
T2 - Antibacterial Potential Against Cyanobacteria from an Andean Lagoon
AU - Solano, Arnold
AU - Vega, Antonio
AU - Davalos-Monteiro, José
AU - Cabrera-Valle, Daniel
AU - Loyo-Dávila, Carlos
AU - Ramírez-Cando, Lenin
AU - Villalba-Meneses, Fernando
AU - Almeida-Galárraga, Diego
AU - Bonilla, Vladimir
AU - Baldeon-Calisto, Maria
AU - Dávalos Monteiro, Raúl
AU - Acosta-Vargas, Patricia
N1 - Publisher Copyright:
© 2026 by the authors.
PY - 2026/7
Y1 - 2026/7
N2 - This work describes an efficient and environmentally friendly method for the synthesis of silver-based nanostructures through a green route using Aloe vera extract as a reducing agent, silver nitrate (AgNO3) as a precursor, and polyvinylpyrrolidone (PVP, 10 kDa molecular weight) as a stabilizing agent. The formation of these structures was supported by UV–Vis spectroscopy, where a surface plasmon resonance (SPR) band was observed between 425 and 460 nm. Scanning electron microscopy revealed predominantly spherical features in the 300–500 nm range; however, the distinction between primary nanoparticles and aggregates cannot be conclusively established from SEM alone. EDX analysis indicated a silver content of 59.96 wt%. Antibacterial assays performed in Z8 medium demonstrated a reduction in cyanobacterial growth with increasing dosage, with complete inhibition observed at ≥20 (Formula presented.) L (nominal MIC = 1.77 mg mL−1, based on precursor estimation). Total dissolved solids and absorbance measurements exhibited a decreasing trend with increasing concentration (effect size = 0.87, (Formula presented.)), supporting an inhibitory effect under the tested conditions. These findings suggest potential antibacterial activity. However, this study should be considered exploratory, and further work is required to elucidate the underlying mechanisms.
AB - This work describes an efficient and environmentally friendly method for the synthesis of silver-based nanostructures through a green route using Aloe vera extract as a reducing agent, silver nitrate (AgNO3) as a precursor, and polyvinylpyrrolidone (PVP, 10 kDa molecular weight) as a stabilizing agent. The formation of these structures was supported by UV–Vis spectroscopy, where a surface plasmon resonance (SPR) band was observed between 425 and 460 nm. Scanning electron microscopy revealed predominantly spherical features in the 300–500 nm range; however, the distinction between primary nanoparticles and aggregates cannot be conclusively established from SEM alone. EDX analysis indicated a silver content of 59.96 wt%. Antibacterial assays performed in Z8 medium demonstrated a reduction in cyanobacterial growth with increasing dosage, with complete inhibition observed at ≥20 (Formula presented.) L (nominal MIC = 1.77 mg mL−1, based on precursor estimation). Total dissolved solids and absorbance measurements exhibited a decreasing trend with increasing concentration (effect size = 0.87, (Formula presented.)), supporting an inhibitory effect under the tested conditions. These findings suggest potential antibacterial activity. However, this study should be considered exploratory, and further work is required to elucidate the underlying mechanisms.
KW - Aloe vera
KW - bacterial inhibition
KW - cyanobacteria
KW - green synthesis
KW - silver nanoparticles
UR - https://www.scopus.com/pages/publications/105045984882
U2 - 10.3390/life16071132
DO - 10.3390/life16071132
M3 - Artículo
AN - SCOPUS:105045984882
SN - 2075-1729
VL - 16
JO - Life
JF - Life
IS - 7
M1 - 1132
ER -