Immunoreactivity and protein levels of olfactory marker protein and tyrosine hydroxylase are not changed in the dog main olfactory bulb during normal ageing. 2010

J H Choi, and C H Lee, and K-Y Yoo, and S-H Kwon, and S Her, and H-C Shin, and Y L Lee, and I K Hwang, and I S Lee, and M-H Won
Department of Anatomy and Neurobiology, College of Medicine, Hallym University, Chuncheon, Republic of South Korea.

The immunoreactivity and protein expression of olfactory marker protein (OMP) and tyrosine hydroxylase (TH) in the main olfactory bulb (MOB) of the dog during normal ageing was investigated. OMP immunolabelling was observed only in nerve bundles of the olfactory nerve (ONL) and glomerular layers (GL) and there was no OMP expression within cell bodies of any layer. TH immunolabelling was detected in all layers of the MOB except for the ONL. Most of the neurons expressing TH were distributed in the juxtaglomerular region and had a morphological appearance consistent with periglomerular, external tufted or superficial short axon cells. Dendrites of TH-immunoreactive neurons were closely apposed to OMP-immunoreactive nerve bundles within the glomeruli. There was no significant age-related loss of OMP and TH immunoreactivity and protein concentrations of these molecules were consistent in dogs of different ages. These results suggest that olfactory signal transduction to the GL via axons of olfactory receptor neurons remains unchanged during ageing in the dog.

UI MeSH Term Description Entries
D007091 Image Processing, Computer-Assisted A technique of inputting two-dimensional or three-dimensional images into a computer and then enhancing or analyzing the imagery into a form that is more useful to the human observer. Biomedical Image Processing,Computer-Assisted Image Processing,Digital Image Processing,Image Analysis, Computer-Assisted,Image Reconstruction,Medical Image Processing,Analysis, Computer-Assisted Image,Computer-Assisted Image Analysis,Computer Assisted Image Analysis,Computer Assisted Image Processing,Computer-Assisted Image Analyses,Image Analyses, Computer-Assisted,Image Analysis, Computer Assisted,Image Processing, Biomedical,Image Processing, Computer Assisted,Image Processing, Digital,Image Processing, Medical,Image Processings, Medical,Image Reconstructions,Medical Image Processings,Processing, Biomedical Image,Processing, Digital Image,Processing, Medical Image,Processings, Digital Image,Processings, Medical Image,Reconstruction, Image,Reconstructions, Image
D007150 Immunohistochemistry Histochemical localization of immunoreactive substances using labeled antibodies as reagents. Immunocytochemistry,Immunogold Techniques,Immunogold-Silver Techniques,Immunohistocytochemistry,Immunolabeling Techniques,Immunogold Technics,Immunogold-Silver Technics,Immunolabeling Technics,Immunogold Silver Technics,Immunogold Silver Techniques,Immunogold Technic,Immunogold Technique,Immunogold-Silver Technic,Immunogold-Silver Technique,Immunolabeling Technic,Immunolabeling Technique,Technic, Immunogold,Technic, Immunogold-Silver,Technic, Immunolabeling,Technics, Immunogold,Technics, Immunogold-Silver,Technics, Immunolabeling,Technique, Immunogold,Technique, Immunogold-Silver,Technique, Immunolabeling,Techniques, Immunogold,Techniques, Immunogold-Silver,Techniques, Immunolabeling
D008297 Male Males
D009474 Neurons The basic cellular units of nervous tissue. Each neuron consists of a body, an axon, and dendrites. Their purpose is to receive, conduct, and transmit impulses in the NERVOUS SYSTEM. Nerve Cells,Cell, Nerve,Cells, Nerve,Nerve Cell,Neuron
D009830 Olfactory Bulb Ovoid body resting on the CRIBRIFORM PLATE of the ethmoid bone where the OLFACTORY NERVE terminates. The olfactory bulb contains several types of nerve cells including the mitral cells, on whose DENDRITES the olfactory nerve synapses, forming the olfactory glomeruli. The accessory olfactory bulb, which receives the projection from the VOMERONASAL ORGAN via the vomeronasal nerve, is also included here. Accessory Olfactory Bulb,Olfactory Tract,Bulbus Olfactorius,Lateral Olfactory Tract,Main Olfactory Bulb,Olfactory Glomerulus,Accessory Olfactory Bulbs,Bulb, Accessory Olfactory,Bulb, Main Olfactory,Bulb, Olfactory,Bulbs, Accessory Olfactory,Bulbs, Main Olfactory,Bulbs, Olfactory,Glomerulus, Olfactory,Lateral Olfactory Tracts,Main Olfactory Bulbs,Olfactorius, Bulbus,Olfactory Bulb, Accessory,Olfactory Bulb, Main,Olfactory Bulbs,Olfactory Bulbs, Accessory,Olfactory Bulbs, Main,Olfactory Tract, Lateral,Olfactory Tracts,Olfactory Tracts, Lateral,Tract, Lateral Olfactory,Tract, Olfactory,Tracts, Lateral Olfactory,Tracts, Olfactory
D009833 Olfactory Pathways Set of nerve fibers conducting impulses from olfactory receptors to the cerebral cortex. It includes the OLFACTORY NERVE; OLFACTORY BULB; OLFACTORY TRACT; OLFACTORY TUBERCLE; ANTERIOR PERFORATED SUBSTANCE; and OLFACTORY CORTEX. Olfactory Pathway,Pathway, Olfactory,Pathways, Olfactory
D004285 Dogs The domestic dog, Canis familiaris, comprising about 400 breeds, of the carnivore family CANIDAE. They are worldwide in distribution and live in association with people. (Walker's Mammals of the World, 5th ed, p1065) Canis familiaris,Dog
D000375 Aging The gradual irreversible changes in structure and function of an organism that occur as a result of the passage of time. Senescence,Aging, Biological,Biological Aging
D000704 Analysis of Variance A statistical technique that isolates and assesses the contributions of categorical independent variables to variation in the mean of a continuous dependent variable. ANOVA,Analysis, Variance,Variance Analysis,Analyses, Variance,Variance Analyses
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia

Related Publications

J H Choi, and C H Lee, and K-Y Yoo, and S-H Kwon, and S Her, and H-C Shin, and Y L Lee, and I K Hwang, and I S Lee, and M-H Won
January 1992, Experimental neurology,
J H Choi, and C H Lee, and K-Y Yoo, and S-H Kwon, and S Her, and H-C Shin, and Y L Lee, and I K Hwang, and I S Lee, and M-H Won
May 1991, Brain research,
J H Choi, and C H Lee, and K-Y Yoo, and S-H Kwon, and S Her, and H-C Shin, and Y L Lee, and I K Hwang, and I S Lee, and M-H Won
April 2015, Neurochemical research,
J H Choi, and C H Lee, and K-Y Yoo, and S-H Kwon, and S Her, and H-C Shin, and Y L Lee, and I K Hwang, and I S Lee, and M-H Won
March 2008, Neuroscience research,
J H Choi, and C H Lee, and K-Y Yoo, and S-H Kwon, and S Her, and H-C Shin, and Y L Lee, and I K Hwang, and I S Lee, and M-H Won
June 1998, Brain research,
J H Choi, and C H Lee, and K-Y Yoo, and S-H Kwon, and S Her, and H-C Shin, and Y L Lee, and I K Hwang, and I S Lee, and M-H Won
August 2020, Neuroscience research,
J H Choi, and C H Lee, and K-Y Yoo, and S-H Kwon, and S Her, and H-C Shin, and Y L Lee, and I K Hwang, and I S Lee, and M-H Won
October 1986, The Journal of comparative neurology,
J H Choi, and C H Lee, and K-Y Yoo, and S-H Kwon, and S Her, and H-C Shin, and Y L Lee, and I K Hwang, and I S Lee, and M-H Won
January 1990, Zeitschrift fur mikroskopisch-anatomische Forschung,
J H Choi, and C H Lee, and K-Y Yoo, and S-H Kwon, and S Her, and H-C Shin, and Y L Lee, and I K Hwang, and I S Lee, and M-H Won
January 1989, Brain, behavior and evolution,
J H Choi, and C H Lee, and K-Y Yoo, and S-H Kwon, and S Her, and H-C Shin, and Y L Lee, and I K Hwang, and I S Lee, and M-H Won
September 1989, Brain research,
Copied contents to your clipboard!