» Articles » PMID: 26004679

Acute Administration of Ucf-101 Ameliorates the Locomotor Impairments Induced by a Traumatic Spinal Cord Injury

Overview
Journal Neuroscience
Specialty Neurology
Date 2015 May 26
PMID 26004679
Citations 5
Authors
Affiliations
Soon will be listed here.
Abstract

Secondary death of neural cells plays a key role in the physiopathology and the functional consequences of traumatic spinal cord injury (SCI). Pharmacological manipulation of cell death pathways leading to the preservation of neural cells is acknowledged as a main therapeutic goal in SCI. In the present work, we hypothesize that administration of the neuroprotective cell-permeable compound ucf-101 will reduce neural cell death during the secondary damage of SCI, increasing tissue preservation and reducing the functional deficits. To test this hypothesis, we treated mice with ucf-101 during the first week after a moderate contusive SCI. Our results reveal that ucf-101 administration protects neural cells from the deleterious secondary mechanisms triggered by the trauma, reducing the extension of tissue damage and improving motor function recovery. Our studies also suggest that the effects of ucf-101 may be mediated through the inhibition of HtrA2/OMI and the concomitant increase of inhibitor of apoptosis protein XIAP, as well as the induction of ERK1/2 activation and/or expression. In vitro assays confirm the effects of ucf-101 on both pathways as well as on the reduction of caspase cascade activation and apoptotic cell death in a neuroblastoma cell line. These results suggest that ucf-101 can be a promising therapeutic tool for SCI that deserves more detailed analyses.

Citing Articles

Identification of a New Role of miR-199a-5p as Factor Implied in Neuronal Damage: Decreasing the Expression of Its Target X-Linked Anti-Apoptotic Protein (XIAP) After SCI.

Munoz-Galdeano T, Reigada D, Soto A, Barreda-Manso M, Ruiz-Amezcua P, Nieto-Diaz M Int J Mol Sci. 2024; 25(22).

PMID: 39596440 PMC: 11594351. DOI: 10.3390/ijms252212374.


Overexpression of the X-Linked Inhibitor of Apoptosis Protein (XIAP) in Neurons Improves Cell Survival and the Functional Outcome after Traumatic Spinal Cord Injury.

Reigada D, Maza R, Munoz-Galdeano T, Barreda-Manso M, Soto A, Lindholm D Int J Mol Sci. 2023; 24(3).

PMID: 36769152 PMC: 9917926. DOI: 10.3390/ijms24032791.


Omi inhibition ameliorates neuron apoptosis and neurological deficit after subarachnoid hemorrhage in rats.

Du Y, Yang D, Dong X, Du Q, Wang D, Shen Y Genes Genomics. 2021; 43(12):1423-1432.

PMID: 34677809 PMC: 8606397. DOI: 10.1007/s13258-021-01176-y.


Sinomenine Attenuates Traumatic Spinal Cord Injury by Suppressing Oxidative Stress and Inflammation via Nrf2 Pathway.

Zhang L, Zhang W, Zheng B, Tian N Neurochem Res. 2019; 44(4):763-775.

PMID: 30603983 DOI: 10.1007/s11064-018-02706-z.


Diadenosine tetraphosphate (ApA) inhibits ATP-induced excitotoxicity: a neuroprotective strategy for traumatic spinal cord injury treatment.

Reigada D, Navarro-Ruiz R, Caballero-Lopez M, Del Aguila A, Munoz-Galdeano T, Maza R Purinergic Signal. 2016; 13(1):75-87.

PMID: 27761681 PMC: 5334201. DOI: 10.1007/s11302-016-9541-4.