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Transneuronal Degeneration in the Rolando Substance of the Primate Spinal Cord Evoked by Axotomy-induced Transganglionic Degenerative Atrophy of Central Primary Sensory Terminals

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Journal Cell Tissue Res
Date 1989 Dec 1
PMID 2611858
Citations 4
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Abstract

Transection of the sciatic nerve in Rhesus monkeys and the consequent transganglionic degenerative atrophy (TDA) of central terminals of primary afferents result in transneuronal degeneration of substantia gelatinosa (SG) cells. Severe degeneration is characterized by an increased electron density of the nucleus and by conspicuous shrinkage of the cytoplasm, mitochondrial swelling, dilation of cisterns of the rough-surfaced endoplasmic reticulum, accumulation of free ribosomes and an electron-dense material in the cytoplasm. In the mild form, dilation of cisternal elements of the endoplasmic reticulum, swollen mitochondria and accumulation of free ribosomes takes place. About 10% of SG cells in segment L5 undergo the severe form whereas the rest shows signs of the mild form. Cytoplasmic alterations that occur during transneuronal degeneration seem to start at the level of subsurface cisterns. Dendrites and axons of transneuronally degenerating SG cells also show a conspicuous electron density. By analyzing the synaptic relationships of such "darkened" dendrites, connections in the upper dorsal horn can be deciphered. Modular units of the primary nociceptive analyzer that evaluate noxious and innocuous inputs on the basis of thin versus thick (A delta C/A beta) afferent activity and subjecting them to descending control appear to be recruited from structurally dispersed elements of synaptic glomeruli. These are arranged alongside dendritic processes of large antenna cells which relay impulses to projection cells of the spinothalamic tract.

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References
1.
Rosenbluth J, PALAY S . The fine structure of nerve cell bodies and their myelin sheaths in the eighth nerve ganglion of the goldfish. J Biophys Biochem Cytol. 1961; 9:853-77. PMC: 2225051. DOI: 10.1083/jcb.9.4.853. View

2.
Knyihar-Csillik E, Rakic P, Csillik B . Transganglionic degenerative atrophy in the substantia gelatinosa of the spinal cord after peripheral nerve transection in rhesus monkeys. Cell Tissue Res. 1987; 247(3):599-604. DOI: 10.1007/BF00215754. View

3.
Dreschfeld J . The Changes in the Spinal Cord after Amputation of Limbs. J Anat Physiol. 1880; 14(Pt 4):422.1-431. PMC: 1309972. View

4.
Knyihar E, Csillik B . Effect of peripheral anatomy on the fine structure and histochemistry of the Rolando substance: degenerative atrophy of central processes of pseudounipolar cells. Exp Brain Res. 1976; 26(1):73-87. DOI: 10.1007/BF00235250. View

5.
Knyihar E, Csillik B . Regional distribution of acid phosphatase-positive axonal systems in the rat spinal cord and medulla, representing central terminals of cutaneous and visceral nociceptive neurons. J Neural Transm. 1977; 40(3):227-34. DOI: 10.1007/BF01300137. View