P7: Current Status of Fibrin-Based Scaffolds in the Treatment of Spinal Cord Injury
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p7: current status of fibrin-based scaffolds in the treatment of spinal cord injury
spinal cord injury (sci) results in the damage of motor and sensory pathways. the molecular and cellular structure of the injury milieu has been shown to be vital for endogenous regeneration in most tissues. regeneration of injured central nervous system (cns) is limited by damaged cell environment. biomaterial scaffolds can reconstruct injured cns tissue following sci by promoting the migratio...
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Spinal cord injury (SCI) is one of the devastating conditions leading to functional and neurological deficits following road traffic accidents. To date, there is no definite treatment for repairing damaged spinal cord tissue. In this regard, cell therapy opens a new window in front of scientists by using different cells such as mesenchymal stem cells, olfactory ensheathing cells, Schwann cells,...
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There is little doubt that wellcoordinated and skillfully delivered emergency, medical, and surgical care helps to save lives following catastrophic injuries, such as SCI. Data show that the long-term survival rates for persons with SCI have steadily risen (1) and, for some individuals, these rates now approach normal. As a result, the prevalence of SCI in our society has increased, even as pre...
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Spinal cord injury (SCI) is a neurologic disorder that have a significant impact on quality of life, life expectancy, and economic burden. SCI leads to irreversible neuronal loss and ultimately leads to paralysis. Mesenchymal stem cells (MSCs) are a promising source for cellular therapy because they have possessed the capacity of self-renewal and differentiation to several distinct mesenchymal ...
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عنوان ژورنال
دوره 4 شماره 4
صفحات 29- 29
تاریخ انتشار 2017-02
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