Issue 2, 2022

Fluorogenic hyaluronan nanogels for detection of micro- and nanoplastics in water

Abstract

Environmental pollution from plastics is exponentially increasing due to human activities. While larger microplastics can be detected with various methods, retrieving micron-sized fragments and nanoplastics remains challenging. Yet, these smaller-sized plastics have been raising considerable toxicological concern. Here, we show that a poorly emissive hyaluronan functionalized with rhodamine B (HA–RB) adheres with high affinity to various microplastic surfaces, becoming brightly emissive. Micro- and nanoplastics (MNPs) can be successfully detected with size as small as the diffraction limit of confocal microscopy (ca. 250 nm). FLIM images show that the fluorescence lifetime of the dye moieties changes according to the plastics, making possible a discrimination of the nature of MNPs based on lifetime. HA–RB, compared to previous reports, eliminates false-positive results caused by formation of dye aggregates, resulting in a higher S/N ratio which allows the unequivocal detection of nano-sized fragments.

Graphical abstract: Fluorogenic hyaluronan nanogels for detection of micro- and nanoplastics in water

Supplementary files

Article information

Article type
Paper
Submitted
27 Jul 2021
Accepted
08 Dec 2021
First published
09 Dec 2021

Environ. Sci.: Nano, 2022,9, 582-588

Fluorogenic hyaluronan nanogels for detection of micro- and nanoplastics in water

M. Cingolani, E. Rampazzo, N. Zaccheroni, D. Genovese and L. Prodi, Environ. Sci.: Nano, 2022, 9, 582 DOI: 10.1039/D1EN00684C

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