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  4. Investigating the efficacy of novel TrkB agonists to augment stroke recovery
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Investigating the efficacy of novel TrkB agonists to augment stroke recovery

Full metadata

Description

Stroke remains the leading cause of adult disability in developed countries. Most survivors live with residual motor impairments that severely diminish independence and quality of life. After stroke, the only accepted treatment for these patients is motor rehabilitation. However, the amount and kind of rehabilitation required to induce clinically significant improvements in motor function is rarely given due to the constraints of our current health care system. Research reported in this dissertation contributes towards developing adjuvant therapies that may augment the impact of motor rehabilitation and improve functional outcome. These studies have demonstrated reorganization of maps within motor cortex as a function of experience in both healthy and brain-injured animals by using intracortical microstimulation technique. Furthermore, synaptic plasticity has been identified as a key neural mechanism in directing motor map plasticity, evidenced by restoration of movement representations within the spared cortical tissue accompanied by increase in synapse number translating into motor improvement after stroke. There is increasing evidence that brain-derived neurotrophic factor (BDNF) modulates synaptic and morphological plasticity in the developing and mature nervous system. Unfortunately, BDNF itself is a poor candidate because of its short half-life, low penetration through the blood brain barrier, and activating multiple receptor units, p75 and TrkB on the neuronal membrane. In order to circumvent this problem efficacy of two recently developed novel TrkB agonists, LM22A-4 and 7,8-dihydroxyflavone, that actively penetrate the blood brain barrier and enhance functional recovery. Findings from these dissertation studies indicate that administration of these pharmacological compounds, accompanied by motor rehabilitation provide a powerful therapeutic tool for stroke recovery.

Date Created
2013
Contributors
  • Warraich, Zuha (Author)
  • Kleim, Jeffrey A (Thesis advisor)
  • Stabenfeldt, Sarah (Committee member)
  • Tillery, Stephen-Helms (Committee member)
  • Santello, Marco (Committee member)
  • Arizona State University (Publisher)
Topical Subject
  • Nanoscience
  • Molecular Biology
  • motor recovery
  • Neuroplasticity
  • stroke recovery
  • trkB receptor agonist
  • Neuropharmacology
  • Cerebrovascular disease--Adjuvant treatment.
  • Cerebrovascular Disease
Resource Type
Text
Genre
Doctoral Dissertation
Academic theses
Extent
xiii, 139 p. : ill. (some col.)
Language
eng
Copyright Statement
In Copyright
Reuse Permissions
All Rights Reserved
Primary Member of
ASU Electronic Theses and Dissertations
Peer-reviewed
No
Open Access
No
Handle
https://hdl.handle.net/2286/R.I.18735
Embargo Release Date
Fri, 07/31/2015 - 20:25
Statement of Responsibility
by Zuha Warraich
Description Source
Retrieved on Jan. 22, 2014
Level of coding
full
Note
Partial requirement for: Ph.D., Arizona State University, 2013
Note type
thesis
Includes bibliographical references (p. 120-139)
Note type
bibliography
Field of study: Neuroscience
System Created
  • 2013-10-08 04:23:45
System Modified
  • 2021-08-30 01:38:25
  •     
  • 1 year 6 months ago
Additional Formats
  • OAI Dublin Core
  • MODS XML

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