Enhancing corticospinal tract neurite outgrowth using histone deacetylase inhibitors

The human corticospinal tract (CST) is responsible for coordinated voluntary movement and it contains descending afferent inputs involved in autonomic control and gating of spinal reflexes. After spinal cord injury (SCI), damage to the CST causes degeneration of axons and can result in major motor...

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Main Author: McShane, Christie
Language:English
Published: University of British Columbia 2011
Online Access:http://hdl.handle.net/2429/36113
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spelling ndltd-LACETR-oai-collectionscanada.gc.ca-BVAU.2429-361132014-03-26T03:37:49Z Enhancing corticospinal tract neurite outgrowth using histone deacetylase inhibitors McShane, Christie The human corticospinal tract (CST) is responsible for coordinated voluntary movement and it contains descending afferent inputs involved in autonomic control and gating of spinal reflexes. After spinal cord injury (SCI), damage to the CST causes degeneration of axons and can result in major motor impairments. The CST is especially lacking in its capacity to regenerate after injury. In the current study, we harvested the cortices of postnatal day 8 Thy1YFP16JRS mice, which express YFP in layer five projection neurons, which also express CST transcription factors Ctip2 and Otx1 in vitro. We applied Histone deacetylase (HDAC) inhibitors (Trichostain A [TSA] and Tubastatin A) to the mixed neuron culture and assessed survival and neurite outgrowth of YFP positive CST neurons. TSA treatment increased the number of primary neurites per neuron and the number of branch points exhibited by YFP positive CST neurons. Application of either TSA or Tubastatin A, promoted YFP positive CST neurite outgrowth in baseline media as well as in the presence of the neurotrophin 3 (NT3) and cilliary neurotrophic factor (CNTF), compared to the appropriate controls. Taken together, the application of HDAC inhibitors to postnatal corticospinal neurons can promote neurite outgrowth, branching and an increase in the number of primary neurites when grown in baseline media. 2011-07-18T23:00:45Z 2011-07-18T23:00:45Z 2011 2011-07-18 2011-11 Electronic Thesis or Dissertation http://hdl.handle.net/2429/36113 eng University of British Columbia
collection NDLTD
language English
sources NDLTD
description The human corticospinal tract (CST) is responsible for coordinated voluntary movement and it contains descending afferent inputs involved in autonomic control and gating of spinal reflexes. After spinal cord injury (SCI), damage to the CST causes degeneration of axons and can result in major motor impairments. The CST is especially lacking in its capacity to regenerate after injury. In the current study, we harvested the cortices of postnatal day 8 Thy1YFP16JRS mice, which express YFP in layer five projection neurons, which also express CST transcription factors Ctip2 and Otx1 in vitro. We applied Histone deacetylase (HDAC) inhibitors (Trichostain A [TSA] and Tubastatin A) to the mixed neuron culture and assessed survival and neurite outgrowth of YFP positive CST neurons. TSA treatment increased the number of primary neurites per neuron and the number of branch points exhibited by YFP positive CST neurons. Application of either TSA or Tubastatin A, promoted YFP positive CST neurite outgrowth in baseline media as well as in the presence of the neurotrophin 3 (NT3) and cilliary neurotrophic factor (CNTF), compared to the appropriate controls. Taken together, the application of HDAC inhibitors to postnatal corticospinal neurons can promote neurite outgrowth, branching and an increase in the number of primary neurites when grown in baseline media.
author McShane, Christie
spellingShingle McShane, Christie
Enhancing corticospinal tract neurite outgrowth using histone deacetylase inhibitors
author_facet McShane, Christie
author_sort McShane, Christie
title Enhancing corticospinal tract neurite outgrowth using histone deacetylase inhibitors
title_short Enhancing corticospinal tract neurite outgrowth using histone deacetylase inhibitors
title_full Enhancing corticospinal tract neurite outgrowth using histone deacetylase inhibitors
title_fullStr Enhancing corticospinal tract neurite outgrowth using histone deacetylase inhibitors
title_full_unstemmed Enhancing corticospinal tract neurite outgrowth using histone deacetylase inhibitors
title_sort enhancing corticospinal tract neurite outgrowth using histone deacetylase inhibitors
publisher University of British Columbia
publishDate 2011
url http://hdl.handle.net/2429/36113
work_keys_str_mv AT mcshanechristie enhancingcorticospinaltractneuriteoutgrowthusinghistonedeacetylaseinhibitors
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