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Excitatory actions of gaba during development: the nature of the nurture.

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TLDR
This work proposes that GABA becomes inhibitory by the delayed expression of a chloride exporter, leading to a negative shift in the reversal potential for choride ions, and provides a solution to the problem of how to excite developing neurons to promote growth and synapse formation.
Abstract
In the immature brain, GABA (gamma-aminobutyric acid) is excitatory, and GABA-releasing synapses are formed before glutamatergic contacts in a wide range of species and structures. GABA becomes inhibitory by the delayed expression of a chloride exporter, leading to a negative shift in the reversal potential for choride ions. I propose that this mechanism provides a solution to the problem of how to excite developing neurons to promote growth and synapse formation while avoiding the potentially toxic effects of a mismatch between GABA-mediated inhibition and glutamatergic excitation. As key elements of this cascade are activity dependent, the formation of inhibition adds an element of nurture to the construction of cortical networks.

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Citations
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Journal ArticleDOI

NKCC1 Does Not Accumulate Chloride in Developing Retinal Neurons

TL;DR: It is concluded that NKCC1 does not serve to accumulate chloride in immature retinal neurons, but it may enable Müller cells to buffer extracellular chloride.
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Partial neural protection with prophylactic low-dose melatonin after asphyxia in preterm fetal sheep.

TL;DR: Prophylactic maternal melatonin treatment is partially protective but its effects may be partly confounded by ethanol used to dissolve melatonin.
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Adult neurogenesis: basic concepts of signaling.

TL;DR: It is argued here, using examples of cell:cell communication, that parallels can be drawn between adult and embryonic neurogenesis, and that differences in the integrative properties of cells and the extracellular matrix molecules may constitute a neurogenic environment or “niche”.
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Activity-Dependent Plasticity of Axo-axonic Synapses at the Axon Initial Segment

TL;DR: It is proposed that the direction of ChC synaptic plasticity follows homeostatic rules that depend on the polarity of axo-axonic synapses.
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Contribution of GABAergic interneurons to the development of spontaneous activity patterns in cultured neocortical networks

TL;DR: It is suggested that the richly interconnected large GABAergic neurons contribute to desynchronize and temporally differentiate the spontaneous activity of cultured cortical networks.
References
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Journal ArticleDOI

The K+/Cl- co-transporter KCC2 renders GABA hyperpolarizing during neuronal maturation.

TL;DR: It is shown that, in pyramidal neurons of the rat hippocampus, the ontogenetic change in GABAA-mediated responses from depolarizing to hyperpolarizing is coupled to a developmental induction of the expression of the neuronal Cl−-extruding K+/Cl − co-transporter, KCC2 (ref. 7).
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Gamma (40-100 Hz) oscillation in the hippocampus of the behaving rat

TL;DR: It is suggested that gamma oscillation emerges from an interaction between intrinsic oscillatory properties of interneurons and the network properties of the dentate gyrus and that Gamma oscillation in the CA3-CA1 circuitry is suppressed by either the hilar region or the entorhinal cortex.
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Synaptic Assembly of the Brain in the Absence of Neurotransmitter Secretion

TL;DR: Synaptic connectivity does not depend on neurotransmitter secretion, but its maintenance does, and neurotransmitter secretion probably functions to validate already established synaptic connections.
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Giant synaptic potentials in immature rat CA3 hippocampal neurones.

TL;DR: In neurones in which evoked GDPs were blocked by bicuculline, a NMDA‐mediated component was revealed by increasing the strength or the frequency of stimulation, and during the second week of postnatal life, superfusion with bicuciulline induced, as in adult slices, interictal discharges.
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