An immunohistochemical marker for Wallerian degeneration of fibers in the central and peripheral nervous system.
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Summary
It is suggested that the staining ability of this antibody could be used as a positive marker of axonal degeneration following experimental or naturally occurring lesions of the nervous system.
- Type
- article
- Published
- 1999-05-15
- Cited by
- 22
- References
- 61
- OpenAlex
- https://openalex.org/W1975702445
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:20521154
Keywords
Wallerian degeneration, Sciatic nerve, Spinal cord, Central nervous system, Peripheral nervous system
References
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- The Rat nervous system
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- Macrophage function during Wallerian degeneration of rat optic nerve: clearance of degenerating myelin and Ia expression
- Phosphorylation of neurofilament proteins and chromatolysis following transection of rat sciatic nerve
- Descending tracts of the lateral columns of the rat spinal cord: a study using the horseradish peroxidase and silver impregnation techniques.
- Traumatically Induced Reactive Change as Visualized Through the Use of Monoclonal Antibodies Targeted to Neurofilament Subunits
- A study of localization in the corticospinal tracts of monkey and rat
- Trajectory of spinocerebellar fibers passing through the inferior and superior cerebellar peduncles in the rat spinal cord: A study using horseradish peroxidase with pedunculotomy
- On the relationship of neuropeptide Y Y1 receptor-immunoreactive neuronal structures to the neuropeptide Y-immunoreactive nerve terminal networks. A double immunolabelling analysis in the rat brain.
- The Fate of Axonal Debris in Wallerian Degeneration of Rat Optic and Sciatic Nerves: Electron Microscopy and Immunofluorescence Studies with Neurofilament Antisera
- Evidence for different pre-and post-junctional receptors for neuropeptide Y and related peptides.
- Two methods for selective silver impregnation of degenerating axons and their synaptic endings in the central nervous system.
- cFos immunoreactivity is enhanced with biotin amplification.
- Biotin amplification of biotin and horseradish peroxidase signals in histochemical stains.
- Subtypes Y1 and Y2 of the neuropeptide Y receptor are respectively expressed in pro-opiomelanocortin- and neuropeptide-Y-containing neurons of the rat hypothalamic arcuate nucleus.
- Somatotopic analysis of fibre and terminal distribution in the primate corticospinal pathway.
Cited by
- Neuropathologic Substrates of Ischemic Vascular Dementia
- Diffuse Brain Injury Triggers Ultra-Rapid Perisomatic Traumatic Axonal Injury, Wallerian Change, and Non-Specific Inflammatory Responses
- Inflammation and Neuroaxonal Injury in Multiple Sclerosis and AIDS Dementia Complex: Implications for Neuroprotective Treatment
- Multiple sclerosis as a neurodegenerative disease: pathology, mechanisms and therapeutic implications.
- Microglial nodules in early multiple sclerosis white matter are associated with degenerating axons
- Analysis of laminar activity in normal and injured rat spinal cord by manganese enhanced MRI
- MRI Detection of Secondary Damage After Stroke: Chronic Iron Accumulation in the Thalamus of the Rat Brain
- Axonal damage: a key predictor of outcome in human CNS diseases.
- Transient prenatal expression of NPY‐Y1 receptor in trigeminal axons innervating the mystacial vibrissae
- Nerve degeneration is prevented by a single intraneural apotransferrin injection into colchicine-injured sciatic nerves in the rat.
- Wallerian Degeneration: A Major Component of Early Axonal Pathology in Multiple Sclerosis
- Acute axonal damage in multiple sclerosis is most extensive in early disease stages and decreases over time.
- Axotomía vago-simpático cervical y degeneración nerviosa intrapulmonar en ratas
- GSK3β inhibitor promotes myelination and mitigates muscle atrophy after peripheral nerve injury
- Inflammatory Responses in the Secondary Thalamic Injury After Cortical Ischemic Stroke
- Neuron-Oligodendrocyte Interactions in the Structure and Integrity of Axons
- Expression of the neuropeptide Y Y1 receptor in the CNS of rat and of wild-type and Y1 receptor knock-out mice. Focus on immunohistochemical localization
- Neuroimmunologic Mechanisms in the Etiology of Multiple Sclerosis
- 24 – Mechanisms Underlying Wallerian Degeneration
- The Neuropathology of Progressive Multiple Sclerosis
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