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Localisation of 3H-GABA in the rat olfactory bulb: An in vivo and in vitro autoradiographic study

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Summary

In an attempt to further clarify the localisation of GABAergic elements in the olfactory bulb we have performed, in vivo and in vitro, autoradiographic studies with 3H-GABA (γ-amino butyric acid) and 3H-DABA (L-2,4 diamino butyric acid). The results have shown a strong labelling with 3H-GABA of the glial cells in all the layers of the olfactory bulb. A high concentration of grains was observed in the periglomerular region. The labelling in the external plexiform layer was uniformly distributed in the neuropile with the strongest activity at the level of the dendritic processes of the granule cells, leaving the mitral cell dendrites and cell bodies almost free of grains. 3H-DABA showed a very similar pattern to 3H-GABA. When olfactory bulb slices were preincubated with β-alanine the labelling of the glial elements almost disappeared especially at the level of the olfactory nerve layer. The labelling pattern of the other layers of the bulb remained mostly unchanged. This supports the view that a population of periglomerular and granule cells are GABAergic and that β-alanine competes with GABA uptake sites only in glial cells.

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Abbreviations

ONL:

Olfactory nerve layer

EPL:

External plexiform layer

GABA:

γ-Aminobutyric acid

DABA:

Diamino-butyric acid

AOAA:

Amino oxyacetic acid

GAD:

Glutamic acid decarboxylase

References

  • Felix D, McLennan H (1971) The effect of bicuculline on the inhibition of mitral cells of the olfactory bulb. Brain Res 25: 661–664

    Google Scholar 

  • Graham LT, Jr (1973) Distribution of glutamic acid decarboxylase activity and GABA content in the olfactory bulb. Life Sci 12: 443–447

    Google Scholar 

  • Halasz N, Ljungdahl A, Hökfelt T, Johansson O, Goldstein M, Park D, Biberfeld P (1977) Transmitter histochemistry of the rat olfactory bulb. I. Immunohistochemical localisation of monoamine synthesising enzyme. Support for intrabulbar periglomerular dopamine neurons. Brain Res 126: 445–474

    Google Scholar 

  • Halasz N, Ljungdahl A, Hökfelt T (1979) Transmitter histochemistry of the rat olfactory bulb. III. Autoradiographic localisation of 3H-GABA. Brain Res 137: 221–240

    Google Scholar 

  • Iversen LL, Johnston GAR (1971) GABA uptake in rat central nervous system: Comparison of uptake in slices and homogenates and the effect of some inhibitors. J Neurochem 18: 1939–1950

    Google Scholar 

  • Jaffé EH, Cuello AC (1980a) The distribution of catecholamines, glutamate decarboxylase and choline acetyltransferase in layers of the rat olfactory bulb. Brain Res 186: 232–237

    Google Scholar 

  • Jaffé EH, Cuello AC (1980b) 3H-GABA uptake and release studies from the external plexiform layer of the rat olfactory bulb. Possible dendritic involvement. Neuroscience 5: 1859–1869

    Google Scholar 

  • Jaffé EH, Cuello AC (1981) Neuronal and glial release of 3H-GABA from the rat olfactory bulb. J Neurochem 37: 1457–1466

    Google Scholar 

  • Nicoll RA (1971) Pharmacological evidence for GABA as the transmitter in granule cell inhibition in the olfactory bulb. Brain Res 35: 137–149

    Google Scholar 

  • Pinching AJ, Powell TPS (1971a) The neuron types of the glomerular layer of the olfactory bulb. J Cell Sci 9: 305–345

    Google Scholar 

  • Pinching AJ, Powell TPS (1971b) The neuropil of the glomeruli of the olfactory bulb. J Cell Sci 9: 347–377

    Google Scholar 

  • Price JL (1968) The synaptic vesicles of the reciprocal synapse of the olfactory bulb. Brain Res 11: 697–700

    Google Scholar 

  • Price JL, Powell TPS (1970) The synaptology of the granule cells of the olfactory bulb. J Cell Sci 7: 125–155

    Google Scholar 

  • Priestley JV, Kelly JS, Cuello AC (1979) Uptake of 3H-dopamine in periglomerular cells of the rat olfactory bulb: An autoradiographic study. Brain Res 165: 149–155

    Google Scholar 

  • Ribak CV, Vaughn JE, Saito K, Barber R, Roberts E (1977) Glutamate decarboxylase localisation in neurons of the olfactory bulb. Brain Res 126: 1–8

    Google Scholar 

  • Salpeter MM, Bachman L (1964) Autoradiography with the electron microscope. J Cell Biol 22: 469–477

    Google Scholar 

  • Schon F, Iversen LL (1974) The use of autoradiographic techniques for the identification and mapping of transmitter specific neurones in the brain. Life Sci 15: 157–175

    Google Scholar 

  • Schon F, Kelly JS (1974) The characterisation of 3H-GABA uptake into the satellite glial cells of rat sensory ganglia. Brain Res 66: 289–300

    Google Scholar 

  • Schon F, Kelly JS (1975) Selective uptake of 3H-β-alanine by glia, association with the glia uptake system for GABA. Brain Res 86: 243–257

    Google Scholar 

  • Shepherd GM (1969) Dendro-dendritic synaptic interaction in olfactory bulb. J Physiol Lond 204: 132–133D

    Google Scholar 

  • Shepherd GM (1972) Synaptic organisation of the mammalian olfactory bulb. Physiol Rev 52: 864–917

    Google Scholar 

Download references

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Supported by a grant from the CONICIT (Venezuela). ACC acknowledges grants from the MRC and Wellcome Trust (U.K.) and assistance from the E. P. Abraham Cephalosporin Trust (Oxford). JVP was supported by an MRC Scholarship

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Jaffé, E.H., Cuello, A.C. & Priestley, J.V. Localisation of 3H-GABA in the rat olfactory bulb: An in vivo and in vitro autoradiographic study. Exp Brain Res 50, 100–106 (1983). https://doi.org/10.1007/BF00238236

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  • DOI: https://doi.org/10.1007/BF00238236

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