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  1. Pubblicazioni

Traceable and Biocompatible Carbon Dots from Simple Precursors: A Pre-Deployment Safety Baseline

Articolo
Data di Pubblicazione:
2025
Citazione:
Traceable and Biocompatible Carbon Dots from Simple Precursors: A Pre-Deployment Safety Baseline / Silva-Sanzana, C., Innocenzi, P., Malfatti, L., Fiori, F., Blanco-Herrera, F., Hormazabal, J., Gangas, M.V., Diaz, O., Balic, I.. - In: AGROCHEMICALS. - ISSN 2813-3145. - 4:4(2025). [10.3390/agrochemicals4040020]
Abstract:
Carbon dots (CDs) are promising for agro-environmental applications; however, clear connections between synthesis, photophysical properties, size, and biosafety are often not well established. In this study, we map these relationships for glucose–arginine CDs (GA-CDs). By using microwave and hydrothermal routes at precursor ratios of 1:3, 1:9, and 1:15, we produced sub-10 nm nanoparticles (analyzed by dynamic light scattering and atomic force microscopy) that exhibit tunable absorption and emission properties, as well as surface properties (demonstrated through UV–Vis spectroscopy, 3D photoluminescence, and FTIR analysis). The hydrothermal 1:9 condition yielded the narrowest size distribution and red-shifted photoluminescence. Across biological models spanning plants, insects, plant-growth-promoting bacteria (PGPR), and human cells, GA-CDs were well tolerated, with no adverse changes detected in plant stress markers, aphid feeding behavior or fecundity, or PGPR growth. In A549 cells, viability remained stable up to a concentration of 0.125 mg mL−1, while exposure to 0.5 mg mL−1 reduced viability, establishing a practical operating range. These results provide a clearer picture of how the structure and properties of carbon dots derived from arginine and glucose are correlated to their safety. The GA-CDs are, therefore, useful, and traceable tools for agro-environmental research. The findings support their use as biocompatible nanomaterials for studying interactions among plants, insects, and microbes in agriculture.
Tipologia CRIS:
1.1 Articolo in rivista
Keywords:
bioimaging; carbon dots; fluorescence; nano-agriculture; nanoparticle biosafety
Elenco autori:
Silva-Sanzana, Christian; Innocenzi, Plinio; Malfatti, Luca; Fiori, Federico; Blanco-Herrera, Francisca; Hormazabal, Juan; Gangas, María Victoria; Diaz, Oscar; Balic, Iván
Autori di Ateneo:
INNOCENZI Plinio
MALFATTI Luca
Link alla scheda completa:
https://iris.uniss.it/handle/11388/382449
Pubblicato in:
AGROCHEMICALS
Journal
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