Developmental Changes in Expression of GABAA Receptor Subunits α1, α2, and α3 in the Pig Brain

Miller S. and Viskasari Pintoko Kalanjati and Colditz Paul B. and Bjorkman Stella T. (2017) Developmental Changes in Expression of GABAA Receptor Subunits α1, α2, and α3 in the Pig Brain. Developmental Neuroscience, 39 (5). pp. 375-385. ISSN 03785866

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Official URL: https://www.karger.com/Article/Abstract/468926

Abstract

GABA is a major neurotransmitter in the mammalian brain. In the mature brain GABA exerts inhibitory actions via the GABAA receptor (GABAAR); however, in the immature brain GABA provides much of the excitatory drive. We examined the expression of 3 predominant GABAA α-subunit proteins in the pig brain at various pre- and postnatal ages. Brain tissue was collected from piglets born via caesarean section at preterm ages 91, 97, 100, and 104 days' gestational age (GA), at term equivalent (114 days' GA, caesarean section) and at term, postnatal day 0 (P0) (spontaneous delivery, term = 115 days). Tissue was obtained from piglets at P4 and P7. Adult tissue from sows was collected postmortem after caesarean section. In all cortical regions and basal ganglia (1) α3 exhibited a significant increase in protein expression at 100 days' GA, (2) α3 expression decreased with age after 100 days' GA, (3) α1 increased with age, with peak expression at P7 in cortices, hippocampus, and thalamus, and (4) α2 protein expression remained relatively constant across the ages examined. The subunit expression of α3 was most abundant at preterm ages, with α1 the predominant subunit expressed postnatally. Immunofluorescent labelling revealed α1 expression on the somatic membranes of pyramidal cells in the cortex and hippocampus, and in the cerebellar Purkinje cells. Positive α3 labelling was apparent on interneurones in the cortex and hippocampus. The switch between dominant α-subunits may coincide with the functional change in GABAergic neurotransmission from excitation to inhibition. Brain growth in the pig closely reflects that in the term human, making the pig a valuable non-primate model for studying development and the effects of insults on the perinatal brain.

Item Type: Article
Uncontrolled Keywords: Neonate, Perinatal Brain, Neurotransmission
Subjects: R Medicine > R Medicine (General)
R Medicine > RZ Other systems of medicine
Divisions: 01. Fakultas Kedokteran > Ilmu Anatomi Histologi
Creators:
CreatorsNIM
Miller S.UNSPECIFIED
Viskasari Pintoko KalanjatiNIDN0020037604
Colditz Paul B.UNSPECIFIED
Bjorkman Stella T.UNSPECIFIED
Depositing User: arys fk
Date Deposited: 03 Aug 2020 01:04
Last Modified: 03 Aug 2020 01:04
URI: http://repository.unair.ac.id/id/eprint/96374
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