Literature DB >> 29944342

Laser Ablation as a Versatile Tool To Mimic Polyethylene Terephthalate Nanoplastic Pollutants: Characterization and Toxicology Assessment.

Davide Magrì1,2, Paola Sánchez-Moreno3, Gianvito Caputo1, Francesca Gatto3,4, Marina Veronesi5, Giuseppe Bardi3, Tiziano Catelani6, Daniela Guarnieri3, Athanassia Athanassiou1, Pier Paolo Pompa3, Despina Fragouli1.   

Abstract

The presence of micro- and nanoplastics in the marine environment is raising strong concerns since they can possibly have a negative impact on human health. In particular, the lack of appropriate methodologies to collect the nanoplastics from water systems imposes the use of engineered model nanoparticles to explore their interactions with biological systems, with results not easily correlated with the real case conditions. In this work, we propose a reliable top-down approach based on laser ablation of polymers to form polyethylene terephthalate (PET) nanoplastics, which mimic real environmental nanopollutants, unlike synthetic samples obtained by colloidal chemistry. PET nanoparticles were carefully characterized in terms of chemical/physical properties and stability in different media. The nanoplastics have a ca. 100 nm average dimension, with significant size and shape heterogeneity, and they present weak acid groups on their surface, similarly to photodegraded PET plastics. Despite no toxic effects emerging by in vitro studies on human Caco-2 intestinal epithelial cells, the formed nanoplastics were largely internalized in endolysosomes, showing intracellular biopersistence and long-term stability in a simulated lysosomal environment. Interestingly, when tested on a model of intestinal epithelium, nano-PET showed high propensity to cross the gut barrier, with unpredictable long-term effects on health and potential transport of dispersed chemicals mediated by the nanopollutants.

Entities:  

Keywords:  Caco-2; intestinal epithelium; laser ablation; nanoplastics; nanotoxicology; polyethylene terephthalate

Mesh:

Substances:

Year:  2018        PMID: 29944342     DOI: 10.1021/acsnano.8b01331

Source DB:  PubMed          Journal:  ACS Nano        ISSN: 1936-0851            Impact factor:   15.881


  19 in total

1.  In Vitro High-Throughput Toxicological Assessment of Nanoplastics.

Authors:  Valentina Tolardo; Davide Magrì; Francesco Fumagalli; Domenico Cassano; Athanassia Athanassiou; Despina Fragouli; Sabrina Gioria
Journal:  Nanomaterials (Basel)       Date:  2022-06-07       Impact factor: 5.719

2.  Microplastics Affect the Inflammation Pathway in Human Gingival Fibroblasts: A Study in the Adriatic Sea.

Authors:  Sergio Caputi; Francesca Diomede; Paola Lanuti; Guya Diletta Marconi; Piero Di Carlo; Bruna Sinjari; Oriana Trubiani
Journal:  Int J Environ Res Public Health       Date:  2022-06-24       Impact factor: 4.614

Review 3.  Microplastics in Food: A Review on Analytical Methods and Challenges.

Authors:  Jung-Hwan Kwon; Jin-Woo Kim; Thanh Dat Pham; Abhrajyoti Tarafdar; Soonki Hong; Sa-Ho Chun; Sang-Hwa Lee; Da-Young Kang; Ju-Yang Kim; Su-Bin Kim; Jaehak Jung
Journal:  Int J Environ Res Public Health       Date:  2020-09-15       Impact factor: 3.390

4.  Assessment of Human Health Risks Posed by Nano-and Microplastics Is Currently Not Feasible.

Authors:  Andreas Brachner; Despina Fragouli; Iola F Duarte; Patricia M A Farias; Sofia Dembski; Manosij Ghosh; Ivan Barisic; Daniela Zdzieblo; Jeroen Vanoirbeek; Philipp Schwabl; Winfried Neuhaus
Journal:  Int J Environ Res Public Health       Date:  2020-11-27       Impact factor: 3.390

5.  Molecular Impacts of Dietary Exposure to Nanoplastics Combined or Not with Arsenic in the Caribbean Mangrove Oysters (Isognomon alatus).

Authors:  Marc Lebordais; Zélie Venel; Julien Gigault; Valerie S Langlois; Magalie Baudrimont
Journal:  Nanomaterials (Basel)       Date:  2021-04-28       Impact factor: 5.076

6.  Screening and prioritization of nano- and microplastic particle toxicity studies for evaluating human health risks - development and application of a toxicity study assessment tool.

Authors:  Todd Gouin; Robert Ellis-Hutchings; Leah M Thornton Hampton; Christine L Lemieux; Stephanie L Wright
Journal:  Microplast nanoplast       Date:  2022-01-14

7.  An effective solution to simultaneously analyze size, mass and number concentration of polydisperse nanoplastics in a biological matrix: asymmetrical flow field fractionation coupled with a diode array detector and multiangle light scattering.

Authors:  Xing-Ling Luo; Ying-Ting Wu; Ling-Yan Zhang; Ke-Xin Li; Tian-Jiang Jia; Yi Chen; Li-Hong Zhou; Pei-Li Huang
Journal:  RSC Adv       Date:  2021-04-06       Impact factor: 3.361

8.  Novel Characterization of Constipation Phenotypes in ICR Mice Orally Administrated with Polystyrene Microplastics.

Authors:  Yun Ju Choi; Jun Woo Park; Ji Eun Kim; Su Jin Lee; Jeong Eun Gong; Young-Suk Jung; Sungbaek Seo; Dae Youn Hwang
Journal:  Int J Mol Sci       Date:  2021-05-29       Impact factor: 5.923

Review 9.  Environmental fate, toxicity and risk management strategies of nanoplastics in the environment: Current status and future perspectives.

Authors:  Liuwei Wang; Wei-Min Wu; Nanthi S Bolan; Daniel C W Tsang; Yang Li; Muhan Qin; Deyi Hou
Journal:  J Hazard Mater       Date:  2020-07-08       Impact factor: 10.588

10.  A Meta-analysis of Ecotoxicological Hazard Data for Nanoplastics in Marine and Freshwater Systems.

Authors:  Tong Yang; Bernd Nowack
Journal:  Environ Toxicol Chem       Date:  2020-11-10       Impact factor: 3.742

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