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GABA receptor-mediated effects in the peripheral nervous system : a cross-interaction with neuroactive steroids

Academic Article
Publication Date:
2006
Citation:
GABA receptor-mediated effects in the peripheral nervous system : a cross-interaction with neuroactive steroids / V. Magnaghi, M. Ballabio, A. Consoli, J.J. Lambert, I. Roglio, R.C. Melcangi. - In: JOURNAL OF MOLECULAR NEUROSCIENCE. - ISSN 0895-8696. - 28:1(2006), pp. 89-102. [10.1385/JMN:28:1:89]
abstract:
A review. GABA, the major inhibitory neurotransmitter in the adult mammalian central nervous system (CNS), exerts its action via an interaction with specific receptors (e.g., GABAA and GABAB). These receptors are expressed not only in neurons but also on glial cells of the CNS, which might represent a target for the allosteric action of neuroactive steroids. Herein, we have demonstrated first that in the peripheral nervous system (PNS), the sciatic nerve and myelin-producing Schwann cells express both GABAA and GABAB receptors. Specific ligands, muscimol and baclofen, resp., control Schwann-cell proliferation and expression of some specific myelin proteins (i.e., glycoprotein P0 and peripheral myelin protein 22 [PMP22]). Moreover, the progesterone (P) metabolite allopregnanolone, acting via the GABAA receptor, can influence PMP22 synthesis. In addn., we demonstrate that P, dihydroprogesterone, and allopregnanolone influence the expression of GABAB subunits in Schwann cells. The results suggest, at least in the myelinating cells of the PNS, a cross-interaction within the GABAergic receptor system, via GABAA and GABAB receptors and neuroactive steroids
IRIS type:
01 - Articolo su periodico
Keywords:
Allopregnanolone; GABAA receptor; GABAB receptor; Myelin; Peripheral nervous system; Progesterone; Schwann cell
List of contributors:
V. Magnaghi, M. Ballabio, A. Consoli, J.J. Lambert, I. Roglio, R.C. Melcangi
Authors of the University:
MAGNAGHI VALERIO ( author )
MELCANGI COSIMO ( author )
Link to information sheet:
https://air.unimi.it/handle/2434/25920
  • Research Areas

Research Areas

Concepts (2)


Settore BIO/09 - Fisiologia

Settore MED/13 - Endocrinologia
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