Determine the growth capacity of axon between principal neuron and interneuron in the cultured hippocampal cells

碩士 === 國立清華大學 === 分子醫學研究所 === 100 === Hippocampal neural network is mainly composed of two neuronal populations, the majority of the network is principal neurons, which provide the excitatory synaptic output to the circuit, and the rest is the inhibitory interneuron. Even the less number of interneu...

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Main Authors: Yang, Pei-Hung, 楊沛泓
Other Authors: 張兗君
Format: Others
Language:zh-TW
Published: 2012
Online Access:http://ndltd.ncl.edu.tw/handle/67590204023542365807
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spelling ndltd-TW-100NTHU55380182015-10-13T21:22:41Z http://ndltd.ncl.edu.tw/handle/67590204023542365807 Determine the growth capacity of axon between principal neuron and interneuron in the cultured hippocampal cells 探討海馬迴中 principal neuron 及 interneuron 之軸突生長能力有何差異 Yang, Pei-Hung 楊沛泓 碩士 國立清華大學 分子醫學研究所 100 Hippocampal neural network is mainly composed of two neuronal populations, the majority of the network is principal neurons, which provide the excitatory synaptic output to the circuit, and the rest is the inhibitory interneuron. Even the less number of interneuron population, because of its diverse morphology and physiological function, interneurons play an important role in the modification and integration of hippocampal neural network. In general, principal neuron can develop very long axons to target distal brain region. In contrast to principal neurons, interneurons can only extend much shorter axons to surrounding target to form local inhibitory circuit, in this study, we try to determine whether the axon growth capacity is caused by target-specify or the intrinsic capacity. Because most principal neurons in the cerebral cortex and hippocampus use glutamate as neurotransmitter, so we use vesicular glutamate transporter 1 (vGLUT1) to label hippocampal principal neurons. Calcium-binding proteins also expressed in non-overlapped hippocampal interneuronal population, so we can use calbidin and parvalbumin to label different interneuron in the hippocampus. We cultured the hippocampal neurons on the PLL-covered coverslips to mimic the real growth environment for the hippocampal neurons that axonal fibers can randomly extend to the targets, in this experiment we found that the axon growth capacity of principal neuron is significantly greater than interneurons. Then we use micro-contact printing to remove the targets in the cultured environment, results show that the axon growth capacity of interneurons can elevate a great extent to the level of principal neurons. 張兗君 2012 學位論文 ; thesis 52 zh-TW
collection NDLTD
language zh-TW
format Others
sources NDLTD
description 碩士 === 國立清華大學 === 分子醫學研究所 === 100 === Hippocampal neural network is mainly composed of two neuronal populations, the majority of the network is principal neurons, which provide the excitatory synaptic output to the circuit, and the rest is the inhibitory interneuron. Even the less number of interneuron population, because of its diverse morphology and physiological function, interneurons play an important role in the modification and integration of hippocampal neural network. In general, principal neuron can develop very long axons to target distal brain region. In contrast to principal neurons, interneurons can only extend much shorter axons to surrounding target to form local inhibitory circuit, in this study, we try to determine whether the axon growth capacity is caused by target-specify or the intrinsic capacity. Because most principal neurons in the cerebral cortex and hippocampus use glutamate as neurotransmitter, so we use vesicular glutamate transporter 1 (vGLUT1) to label hippocampal principal neurons. Calcium-binding proteins also expressed in non-overlapped hippocampal interneuronal population, so we can use calbidin and parvalbumin to label different interneuron in the hippocampus. We cultured the hippocampal neurons on the PLL-covered coverslips to mimic the real growth environment for the hippocampal neurons that axonal fibers can randomly extend to the targets, in this experiment we found that the axon growth capacity of principal neuron is significantly greater than interneurons. Then we use micro-contact printing to remove the targets in the cultured environment, results show that the axon growth capacity of interneurons can elevate a great extent to the level of principal neurons.
author2 張兗君
author_facet 張兗君
Yang, Pei-Hung
楊沛泓
author Yang, Pei-Hung
楊沛泓
spellingShingle Yang, Pei-Hung
楊沛泓
Determine the growth capacity of axon between principal neuron and interneuron in the cultured hippocampal cells
author_sort Yang, Pei-Hung
title Determine the growth capacity of axon between principal neuron and interneuron in the cultured hippocampal cells
title_short Determine the growth capacity of axon between principal neuron and interneuron in the cultured hippocampal cells
title_full Determine the growth capacity of axon between principal neuron and interneuron in the cultured hippocampal cells
title_fullStr Determine the growth capacity of axon between principal neuron and interneuron in the cultured hippocampal cells
title_full_unstemmed Determine the growth capacity of axon between principal neuron and interneuron in the cultured hippocampal cells
title_sort determine the growth capacity of axon between principal neuron and interneuron in the cultured hippocampal cells
publishDate 2012
url http://ndltd.ncl.edu.tw/handle/67590204023542365807
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