resumo
Engineered nanomaterials (ENMs), such as silica mesoporous nanocapsules (SiNC), have emerged as a powerful tool for the controlled delivery and release of active compounds in various fields. However, the environmental impact of SiNC on marine biota, particularly when they enter the marine environment through wastewater effluents or direct release from maritime coatings, remains poorly understood. Studying their effects is thus crucial for environmental and human health protection, the development of safe-by-design ENMs, and informed policy-making. This study aims to assess the ecotoxicological effects and internalization of industrially-relevant SiNC in marine phytoplankton, namely on the microalgae Tetraselmis chuii, Nannochloropsis gaditana, and Isochrysis galbana, and diatoms Phaeodactylum tricornutum, and Chaetoceros calcitrans. For this purpose, a fluorescent nanocarrier (SiNC-UMB) is developed by labeling the SiNC with the fluorescent natural dye umbelliferone (UMB). UV-vis and fluorescence spectroscopic analyses confirmed the successful loading of UMB into SiNC. Phytoplankton can internalize these ENMs, even at low concentrations, although adsorption to the cell wall can also occur. This confirms the internal exposure and growth inhibition observed in the microalgae. These findings highlight the potential of using SiNC-UMB as a valuable tool for tracking their uptake and assessing their effects on marine biota and beyond. Silica mesoporous nanocapsules (SiNC) labeled with the fluorescent dye umbelliferone can be internalized by marine microalgae even at low concentrations, although adsorption to the cell wall may also occur. Ecotoxicological findings on five marine microalgae species suggest there is space for optimization to be safely used for tracking purposes and/or assessment of SiNC effects on biota. image
palavras-chave
MESOPOROUS SILICA NANOPARTICLES; ANTI-FOULING NANOMATERIALS; SILVER NANOPARTICLES; ECOTOXICITY; NANOCONTAINERS; SUBCAPITATA; APOPTOSIS; BIOCIDES; EFFICACY; HAZARD
categoria
Science & Technology - Other Topics; Materials Science
autores
Campos, BG; Kaczerewska, O; Oliveira, JMM; Figueiredo, J; Maia, F; Tedim, J; Sousa, I; Abessa, DMS; Loureiro, S; Martins, R
nossos autores
Projectos
CICECO - Aveiro Institute of Materials (UIDP/50011/2020)
Associated Laboratory CICECO-Aveiro Institute of Materials (LA/P/0006/2020)
agradecimentos
This project was carried out in the framework of the project NANOGREEN (CIRCNA/BRB/0291/2019; DOI: 10.54499/CIRCNA/BRB/0291/2019), funded by national funds (OE), through the Portuguese Foundation for Science and Technology (FCT) and the bilateral project "Exposure and bioaccumulation assessment of antifouling nanomaterials in marine organisms from temperate and tropical waters" funded by FCT and CAPES (ref. 4265 DRI/FCT and #88881.156405/2017-01, respectively). The authors are also grateful to the S & atilde;o Paulo Research Foundation (FAPESP) for the financial support (grants #2019/19898-3, #2017/10211-0), to FCT/MCTES for the financial support through national funds to CESAM (UIDP/50017/2020 + UIDB/50017/2020 + LA/P/0094/2020), CICECO-Aveiro Institute of Materials (UIDB/50011/ 2020, UIDP/50011/2020 & LA/P/0006/2020). R.M. is also funded by national funds (OE), through FCT (2021.00386.CEECIND; DOI: 10.54499/2021.00386.CEECIND/CP1659/CT0011). D.A. is funded by the National Council for Scientific and Technological Development (CNPq #308533/2018-6)

