3.8 Article

Genotoxicity of Three Micro/Nanocelluloses with Different Physicochemical Characteristics in MG-63 and V79 Cells

期刊

JOURNAL OF XENOBIOTICS
卷 12, 期 2, 页码 91-108

出版社

MDPI
DOI: 10.3390/jox12020009

关键词

nanofibrillated cellulose; nanocrystalline cellulose; nanotoxicology; cytotoxicity; genotoxicity; micronucleus assay

资金

  1. Portuguese Foundation for Science and Technology (FCT/MCTES), through national funds (PIDDAC) under the project ToxApp4NanoCELFI [PTDC/SAU-PUB/32587/2017]
  2. NanoCell2SEC [PTDC/CTM-REF/30529/2017]
  3. ToxOmics [UIDP/00009/2020, UIDB/00009/2020]
  4. CIEPQPF [UIDB/00102/2020]
  5. European Topology Interdisciplinary Action [EUTOPIA CA17139]
  6. Inpactus Project-innovative products and technologies from eucalyptus (Portugal 2020 through ERDF) [21874, 246/AXIS II/2017]
  7. [POCI-01-0145-FEDER-007688 (UIDB/50025/2020-2023)]
  8. Fundação para a Ciência e a Tecnologia [PTDC/CTM-REF/30529/2017, PTDC/SAU-PUB/32587/2017] Funding Source: FCT

向作者/读者索取更多资源

This study aimed to assess the potential toxic and genotoxic effects of different nanocelluloses in mammalian cell lines. The results demonstrated that all nanocelluloses exhibited cytotoxicity and genotoxicity, which might be attributed to their physicochemical differences, cell uptake, and DNA damage response of the cell model.
(1) Background: Nanocellulose is an innovative engineered nanomaterial with an enormous potential for use in a wide array of industrial and biomedical applications and with fast growing economic value. The expanding production of nanocellulose is leading to an increased human exposure, raising concerns about their potential health effects. This study was aimed at assessing the potential toxic and genotoxic effects of different nanocelluloses in two mammalian cell lines; (2) Methods: Two micro/nanocelluloses, produced with a TEMPO oxidation pre-treatment (CNFs) and an enzymatic pre-treatment (CMFs), and cellulose nanocrystals (CNCs) were tested in osteoblastic-like human cells (MG-63) and Chinese hamster lung fibroblasts (V79) using the MTT and clonogenic assays to analyse cytotoxicity, and the micronucleus assay to test genotoxicity; (3) Results: cytotoxicity was observed by the clonogenic assay in V79 cells, particularly for CNCs, but not by the MTT assay; CNF induced micronuclei in both cell lines and nucleoplasmic bridges in MG-63 cells; CMF and CNC induced micronuclei and nucleoplasmic bridges in MG-63 cells, but not in V79 cells; (4) Conclusions: All nanocelluloses revealed cytotoxicity and genotoxicity, although at different concentrations, that may be related to their physicochemical differences and availability for cell uptake, and to differences in the DNA damage response of the cell model.

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