4.4 Review

Toxic neuropathies: Mechanistic insights based on a chemical perspective

期刊

NEUROSCIENCE LETTERS
卷 596, 期 -, 页码 78-83

出版社

ELSEVIER IRELAND LTD
DOI: 10.1016/j.neulet.2014.08.054

关键词

Central-peripheral distal axonopathy; Peripheral neuropathy; 2,5-Hexanedione; Neurotoxicity; Acrylamide; Dying back neuropathy

资金

  1. National Institutes of Environmental Health Sciences, National Institutes of Health [RO1 ES03830-26, RO1 ES07912-11]

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2,5-Hexanedione (HD) and acrylamide (ACR) are considered to be prototypical among chemical toxicants that cause central-peripheral axonopathies characterized by distal axon swelling and degeneration. Because the demise of distal regions was assumed to be causally related to the onset of neurotoxicity, substantial effort was devoted to deciphering the respective mechanisms. Continued research, however, revealed that expression of the presumed hallmark morphological features was dependent upon the daily rate of toxicant exposure. Indeed, many studies reported that the corresponding axonopathic changes were late developing effects that occurred independent of behavioral and/or functional neurotoxicity. This suggested that the toxic axonopathy classification might be based on epiphenomena related to dose-rate. Therefore, the goal of this mini-review is to discuss how quantitative morphometric analyses and the establishment of dose-dependent relationships helped distinguish primary, mechanistically relevant toxicant effects from non-specific consequences. Perhaps more importantly, we will discuss how knowledge of neurotoxicant chemical nature can guide molecular-level research toward a better, more rational understanding of mechanism. Our discussion will focus on HD, the neurotoxic gamma-diketone metabolite of the industrial solvents n-hexane and methyl-n-butyl ketone. Early investigations suggested that HD caused giant neurofilamentous axonal swellings and eventual degeneration in CNS and PNS. However, as our review will point out, this interpretation underwent several iterations as the understanding of gamma-diketone chemistry improved and more quantitative experimental approaches were implemented. The chemical concepts and design strategies discussed in this mini-review are broadly applicable to the mechanistic studies of other chemicals (e.g., n-propyl bromine, methyl methacrylate) that cause toxic neuropathies. (C) 2014 Elsevier Ireland Ltd. All rights reserved.

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