Literature DB >> 10668998

Practical aspects of neuropathology: a technical guide for working with the nervous system.

A S Fix1, R H Garman.   

Abstract

Toxicologic pathologists are evaluating tissues from the central and peripheral nervous systems with increasing frequency. This change is being driven by recently established regulatory guidelines and intense interest in developing pharmaceutical compounds to treat various nervous system disorders. However, morphologic evaluation of the nervous system by light or electron microscopy requires special understanding and effort. Here, we review the general concepts of fixation for the nervous system, explain perfusion procedures for optimal preservation, and provide information on handling tissues to avoid artifacts. In general, fixation with aldehydes is recommended for nervous tissue (a combination of paraformaldehyde and glutaraldehyde is preferred). Electron microscopic studies require fixatives of the highest purity possible, typically paraformaldehyde prepared fresh from powder mixed with high-grade glutaraldehyde. The final osmolality of the solution should be slightly hypertonic, in the range of 400-600 mOsmol. Slight hypertonicity is very important and will facilitate maintenance of vascular distention during whole-body perfusion, which is the best method for producing high-quality tissue preparations. Special effort is necessary for handling nervous tissue in a way that minimizes artifacts because chemical fixation is not completed immediately following the perfusion. These technical details should help toxicologic pathologists in their efforts to work with the nervous system, thereby increasing their effectiveness in supporting safety characterization of new test materials undergoing toxicologic assessments.

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Year:  2000        PMID: 10668998     DOI: 10.1177/019262330002800115

Source DB:  PubMed          Journal:  Toxicol Pathol        ISSN: 0192-6233            Impact factor:   1.902


  15 in total

1.  Histological examination of post-mortem brains of children with nodding syndrome.

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Review 2.  Animal models of peripheral neuropathy due to environmental toxicants.

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3.  Cervical spinal hemisection alters phrenic motor neuron glutamatergic mRNA receptor expression.

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4.  Perfusion with 10% neutral-buffered formalin is equivalent to 4% paraformaldehyde for histopathology and immunohistochemistry in a mouse model of experimental autoimmune encephalomyelitis.

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Review 5.  Methods for in vivo studies in rodents of chemotherapy induced peripheral neuropathy.

Authors:  Jordi Bruna; Paola Alberti; Aina Calls-Cobos; Martial Caillaud; M Imad Damaj; Xavier Navarro
Journal:  Exp Neurol       Date:  2019-12-15       Impact factor: 5.330

6.  Vacuolar leukoencephalopathy with widespread astrogliosis in mice lacking transcription factor Nrf2.

Authors:  Ann F Hubbs; Stanley A Benkovic; Diane B Miller; James P O'Callaghan; Lori Battelli; Diane Schwegler-Berry; Qiang Ma
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7.  Looking through Brains with Fast Passive CLARITY: Zebrafish, Rodents, Non-human Primates and Humans.

Authors:  Farzad Mortazavi; Alexander J Stankiewicz; Irina V Zhdanova
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Review 8.  Methods to identify and characterize developmental neurotoxicity for human health risk assessment. II: neuropathology.

Authors:  R H Garman; A S Fix; B S Jortner; K F Jensen; J F Hardisty; L Claudio; S Ferenc
Journal:  Environ Health Perspect       Date:  2001-03       Impact factor: 9.031

Review 9.  Blast TBI Models, Neuropathology, and Implications for Seizure Risk.

Authors:  S Krisztian Kovacs; Fabio Leonessa; Geoffrey S F Ling
Journal:  Front Neurol       Date:  2014-04-09       Impact factor: 4.003

Review 10.  Axon and Myelin Morphology in Animal and Human Spinal Cord.

Authors:  Ariane Saliani; Blanche Perraud; Tanguy Duval; Nikola Stikov; Serge Rossignol; Julien Cohen-Adad
Journal:  Front Neuroanat       Date:  2017-12-22       Impact factor: 3.856

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