Toxicology and pharmacology of synthetic organoselenium compounds: an update

被引:0
作者
Cristina W. Nogueira
Nilda V. Barbosa
João B. T. Rocha
机构
[1] Centro de Ciências Naturais E Exatas,Laboratório de Síntese, Reatividade e Avaliação Farmacológica E Toxicológica de Organocalcogênios
[2] Universidade Federal de Santa Maria,undefined
来源
Archives of Toxicology | 2021年 / 95卷
关键词
Ebselen; Selenium; Diselenides; Toxicology; Pharmacology; Thiol;
D O I
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中图分类号
学科分类号
摘要
Here, we addressed the pharmacology and toxicology of synthetic organoselenium compounds and some naturally occurring organoselenium amino acids. The use of selenium as a tool in organic synthesis and as a pharmacological agent goes back to the middle of the nineteenth and the beginning of the twentieth centuries. The rediscovery of ebselen and its investigation in clinical trials have motivated the search for new organoselenium molecules with pharmacological properties. Although ebselen and diselenides have some overlapping pharmacological properties, their molecular targets are not identical. However, they have similar anti-inflammatory and antioxidant activities, possibly, via activation of transcription factors, regulating the expression of antioxidant genes. In short, our knowledge about the pharmacological properties of simple organoselenium compounds is still elusive. However, contrary to our early expectations that they could imitate selenoproteins, organoselenium compounds seem to have non-specific modulatory activation of antioxidant pathways and specific inhibitory effects in some thiol-containing proteins. The thiol-oxidizing properties of organoselenium compounds are considered the molecular basis of their chronic toxicity; however, the acute use of organoselenium compounds as inhibitors of specific thiol-containing enzymes can be of therapeutic significance. In summary, the outcomes of the clinical trials of ebselen as a mimetic of lithium or as an inhibitor of SARS-CoV-2 proteases will be important to the field of organoselenium synthesis. The development of computational techniques that could predict rational modifications in the structure of organoselenium compounds to increase their specificity is required to construct a library of thiol-modifying agents with selectivity toward specific target proteins.
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页码:1179 / 1226
页数:47
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  • [1] AbdelKhalek A(2018)Repurposing ebselen for decolonization of vancomycin-resistant enterococci (VRE) PLoS ONE 13 e0199710-671
  • [2] Abutaleb NS(2014)Diphenyl diselenide protects against metabolic disorders induced by acephate acute exposure in rats Environ Toxicol 29 665-172
  • [3] Mohammad H(2009)Antidepressant-like effect of diphenyl diselenide on rats exposed to malathion: involvement of Na+ K+ ATPase activity Neurosci Lett 455 168-3490
  • [4] Seleem MN(2012)Diphenyl diselenide attenuates hepatic and hematologic toxicity induced by chlorpyrifos acute exposure in rats Environ Sci Pollut Res 19 3481-23
  • [5] Acker CI(2020)Environmental risk factors for early-onset Alzheimer’s dementia and frontotemporal dementia: a case-control study in northern Italy Int J Environ Res Public Health 17 7941-1057
  • [6] Nogueira CW(2020)Selenium and other trace elements in the etiology of Parkinson’s disease: a systematic review and meta-analysis of case-control studies Neuroepidemiology 54 1-1438
  • [7] Acker CI(2018)Emerging roles of endoplasmic reticulum-resident selenoproteins in the regulation of cellular stress responses and the implications for metabolic disease Biochem J 475 1037-116
  • [8] Luchese C(2016)Diphenyl diselenide protects against mortality, locomotor deficits and oxidative stress in Neurochem Res 41 1430-193
  • [9] Prigol M(2018) model of manganese-induced neurotoxicity Chem Biol Interact 296 105-493
  • [10] Nogueira CW(2016)Diphenyl diselenide abrogates brain oxidative injury and neurobehavioural deficits associated with pesticide chlorpyrifos exposure in rats J Trop Pediatr 62 185-1564