Literature DB >> 23776099

Phenolic metabolites of benzene induced caspase-dependent cytotoxicities to K562 cells accompanied with decrease in cell surface sialic acids.

Yan Wang1, Guang-Yao Zhang, Qing-Ling Han, Jie Wang, Yang Li, Chun-Hong Yu, Yi-Ran Li, Zong-Chun Yi.   

Abstract

Benzene-induced erythropoietic depression has been proposed to be due to the production of toxic metabolites. Presently, the cytotoxicities of benzene metabolites, including phenol, catechol, hydroquinone, and 1,2,4-benzenetriol, to erythroid progenitor-like K562 cells were investigated. After exposure to these metabolites, K562 cells showed significant inhibition of viability and apoptotic characteristics. Each metabolite caused a significant increase in activities of caspase-3, -8, and -9, and pretreatment with caspase-3, -8, and -9 inhibitors significantly inhibited benzene metabolites-induced phosphatidylserine exposure. These metabolites also elevated expression of Fas and FasL on the cell surface. After exposure to benzene metabolites, K562 cells showed an increase in reactive oxygen species level, and pretreatment with N-acetyl-l-cysteine significantly protected against the cytotoxicity of each metabolite. Interestingly, the control K562 cells and the phenol-exposed cells aggregated together, but the cells exposed to other metabolites were scattered. Further analysis showed that hydroquione, catechol, and 1,2,4-benzenetriol induced a decrease in the cell surface sialic acid levels and an increase in the cell surface sialidase activity, but phenol did not cause any changes in sialic acid levels and sialidase activity. Consistently, an increase in expression level of sialidase Neu3 mRNA and a decrease in mRNA level of sialyltransferase ST3GAL3 gene were detected in hydroquione-, catechol-, or 1,2,4-benzenetriol-treated cells, but no change in mRNA levels of two genes were found in phenol-treated cells. In conclusion, these benzene metabolites could induce apoptosis of K562 cells mainly through caspase-8-dependent pathway and ROS production, and sialic acid metabolism might play a role in the apoptotic process.
© 2013 Wiley Periodicals, Inc.

Entities:  

Keywords:  apoptosis; benzene metabolites; caspases; reactive oxygen species; sialic acid

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Year:  2013        PMID: 23776099     DOI: 10.1002/tox.21874

Source DB:  PubMed          Journal:  Environ Toxicol        ISSN: 1520-4081            Impact factor:   4.119


  7 in total

1.  Long-term exposure of K562 cells to benzene metabolites inhibited erythroid differentiation and elevated methylation in erythroid specific genes.

Authors:  K Y Tang; C H Yu; L Jiang; M Gong; W J Liu; Y Wang; N X Cui; W Song; Y Sun; Z C Yi
Journal:  Toxicol Res (Camb)       Date:  2016-06-30       Impact factor: 3.524

2.  Increased Level of α2,6-Sialylated Glycans on HaCaT Cells Induced by Titanium Dioxide Nanoparticles under UV Radiation.

Authors:  Yuanyuan Ren; Xin Liu; Runqing Geng; Qunwei Lu; Rong Rao; Xi Tan; Xiangliang Yang; Wei Liu
Journal:  Nanomaterials (Basel)       Date:  2018-04-19       Impact factor: 5.076

3.  The Differential Effect of Cannabidiol on the Composition and Physicochemical Properties of Keratinocyte and Fibroblast Membranes from Psoriatic Patients and Healthy People.

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Journal:  Membranes (Basel)       Date:  2021-02-04

4.  Identification of potential pathways and microRNA-mRNA networks associated with benzene metabolite hydroquinone-induced hematotoxicity in human leukemia K562 cells.

Authors:  Chun-Hong Yu; Shui-Qing Yang; Lei Li; Yu Xin; Fang Zhang; Xiao-Fan Liu; Zong-Chun Yi
Journal:  BMC Pharmacol Toxicol       Date:  2022-04-02       Impact factor: 2.483

5.  Apoptosis-Inducing Potential of Selected Bromophenolic Flame Retardants 2,4,6-Tribromophenol and Pentabromophenol in Human Peripheral Blood Mononuclear Cells.

Authors:  Anna Barańska; Paulina Sicińska; Jaromir Michałowicz
Journal:  Molecules       Date:  2022-08-09       Impact factor: 4.927

6.  Benzene-Induced Aberrant miRNA Expression Profile in Hematopoietic Progenitor Cells in C57BL/6 Mice.

Authors:  Haiyan Wei; Juan Zhang; Kehong Tan; Rongli Sun; Lihong Yin; Yuepu Pu
Journal:  Int J Mol Sci       Date:  2015-11-12       Impact factor: 5.923

7.  Resvega Alleviates Hydroquinone-Induced Oxidative Stress in ARPE-19 Cells.

Authors:  Niina Bhattarai; Eveliina Korhonen; Maija Toppila; Ali Koskela; Kai Kaarniranta; Yashavanthi Mysore; Anu Kauppinen
Journal:  Int J Mol Sci       Date:  2020-03-17       Impact factor: 5.923

  7 in total

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