Morphology and distribution of primary afferent fibres expressing ?-galactose extended oligosaccharides in the spinal cord and brainstem of the rat. Light microscopy
- 1 October 1989
- journal article
- research article
- Published by Springer Nature in Journal of Neurocytology
- Vol. 18 (5), 611-629
- https://doi.org/10.1007/bf01187082
Abstract
The light microscopic morphology and distribution of non-substance P-containing small primary afferent fibres were studied. These fibres were labelled using LD2 and LA4 monoclonal antibodies which recognize α-galactose extended oligosaccharides expressed by primary afferent neurons. The LD2 and LA4 antibodies immunostained small primary afferent fibres ending mainly in lamina II of the spinal cord dorsal horn and trigeminal subnucleus caudalis of the rat. The lamination pattern of both types of primary afferents was assessed using an image analysis system. The highest density of LD2-immunoreactive fibres was located in a patchy band located in lamina II outer, while LA4-immunoreactive fibres were distributed mainly through lamina II inner. In lateral regions of cervical and lumbar dorsal horn the LA4-immunoreactive band is broader and comprises almost all lamina II. In contrast to substance P-containing primary afferents, a low density of LD2- or LA4-immunoreactive fibres was found in lamina I, and no terminal fields were found in lamina V or lamina X of the spinal cord or in levels of the trigeminal system outside the subnucleus caudalis. Both antibodies also labelled the parent fibres in the white matter fascicles. LD2-immunoreactive fibres were located in the dorsal roots, medial regions of the Lissauer tract, dorsal columns of the spinal cord, outer regions of the spinal trigeminal tract and dorsal to the cuneatus and gracilis nuclei. In contrast, LA4-immunoreactive fibres were restricted to the dorsal roots, medial and lateral regions of the Lissauer tract and the outer regions of the trigeminal tract. Immunostained fibres in the rootlets of the X and IX nerves and immunoreactive terminal arborizations in various subnuclei of the nucleus tractus solitarius were seen using both antibodies. These results show that subpopulations of small primary afferents stained by LD2 and LA4 antibodies have distinct patterns of central distribution and are consistent with a subdivision of small primary afferents into peptide- and non-peptide-containing groups.This publication has 59 references indexed in Scilit:
- Ultrastructure of primary afferent fibres and terminals expressing ?-galactose extended oligosaccharides in the spinal cord and brainstem of the ratJournal of Neurocytology, 1989
- The effects of dorsal rhizotomy and spinal cord isolation on calcitonin gene-related peptide-labeled terminals in the rat lumbar dorsal hornNeuroscience Letters, 1988
- The origins and trajectories of somatostatin reticulospinal neurons: a potential neurotransmitter candidate of the dorsal reticulospinal pathwayBrain Research, 1988
- Primary afferent and propriospinal fibers in the rat dorsal and dorsolateral funiculiJournal of Comparative Neurology, 1987
- Peptidergic nociceptive axon visualization in whole-mount preparations of cornea and tympanic membrane in ratBrain Research, 1986
- Unmyelinated primary afferent fibers in dorsal funiculi of cat sacral spinal cordJournal of Comparative Neurology, 1985
- A comparison of the ultrastructure of substance P and enkephalin‐immunoreactive elements in the nucleus of the dorsal lateral funiculus and laminae I and II of the rat spinal cordJournal of Comparative Neurology, 1984
- The origin, distribution and synaptic relationships of substance P axons in rat spinal cordJournal of Comparative Neurology, 1979
- The central and peripheral ends of the substance P-containing sensory neurones in the rat trigeminal systemBrain Research, 1978
- The substantia gelatinosa Rolandi of the rat. Fine structure, cytochemistry (acid phosphatase) and changes after dorsal root sectionJournal of Neurocytology, 1974