Literature DB >> 32179110

CdTe and CdTe@ZnS quantum dots induce IL-1ß-mediated inflammation and pyroptosis in microglia.

Xue Liang1, Tianshu Wu2, Yan Wang1, Tingting Wei1, Lingyue Zou1, Changcun Bai1, Na Liu1, Ting Zhang1, Yuying Xue1, Meng Tang3.   

Abstract

CdTe quantum dots (QDs) are still widely considered as excellent fluorescent probes because of their far more superior optical performance and fluorescence efficiency than non‑cadmium QDs. Thus, it is important to find ways to control their toxicity. In this study, CdTe QDs and CdTe@ZnS QDs both could cause IL-1ß-mediated inflammation following with pyroptosis in BV2 cells, but the toxic effects caused by CdTe@ZnS QDs was weaker than CdTe QDs, which demonstrated the partial protection of ZnS shell. When investigating the molecular mechanisms of QDs causing the inflammatory injury, the findings suggested that cadmium-containing QDs exposure activated NF-κB that participated in the NLRP3 inflammasome priming and pro-IL-1ß expression. After that, QDs-induced excessive ROS generation triggered the NLRP3 inflammasome activation and resulted in active caspase-1 to process pro-IL-1ß into mature IL-1ß release and inflammatory cell death, i.e. pyroptosis. Fortunately, the inhibitions of caspase-1, NF-κB and ROS or knocking down of NLRP3 all effectively attenuated the increases in the IL-1ß secretion and cell death caused by QDs in BV2 cells. This study provided two methods to alleviate the toxicity of cadmium-containing QDs, in which one is to encapsulate bare-core QDs with a shell and the other is to inhibit their toxic pathways. Since the latter way is more effective than the former one, it is significant to evaluate QDs through a mechanism-based risk assessment to identify controllable toxic targets.
Copyright © 2020 Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  BV2 cells; Interleukin-1ß; NLRP3 inflammasome; Pyroptosis; Quantum dot

Mesh:

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Year:  2020        PMID: 32179110     DOI: 10.1016/j.tiv.2020.104827

Source DB:  PubMed          Journal:  Toxicol In Vitro        ISSN: 0887-2333            Impact factor:   3.500


  3 in total

1.  CdSe/ZnS Core-Shell-Type Quantum Dot Nanoparticles Disrupt the Cellular Homeostasis in Cellular Blood-Brain Barrier Models.

Authors:  Katarzyna Dominika Kania; Waldemar Wagner; Łukasz Pułaski
Journal:  Int J Mol Sci       Date:  2021-01-22       Impact factor: 5.923

2.  A novel insight into mechanism of derangement of coagulation balance: interactions of quantum dots with coagulation-related proteins.

Authors:  Lingyan Zhang; Yingting Wu; Xingling Luo; Tianjiang Jia; Kexin Li; Lihong Zhou; Zhen Mao; Peili Huang
Journal:  Part Fibre Toxicol       Date:  2022-03-08       Impact factor: 9.400

3.  Cationic Carbon Nanoparticles Induce Inflammasome-Dependent Pyroptosis in Macrophages via Lysosomal Dysfunction.

Authors:  Yasmin Arezki; Mickaël Rapp; Luc Lebeau; Carole Ronzani; Françoise Pons
Journal:  Front Toxicol       Date:  2022-07-19
  3 in total

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