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Selective Calpain Inhibition Improves Functional and Histopathological Outcomes in a Canine Spinal Cord Injury Model

Overview
Journal Int J Mol Sci
Publisher MDPI
Date 2022 Oct 14
PMID 36233068
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Abstract

Calpain activation has been implicated in various pathologies, including neurodegeneration. Thus, calpain inhibition could effectively prevent spinal cord injury (SCI) associated with neurodegeneration. In the current study, a dog SCI model was used to evaluate the therapeutic potential of a selective calpain inhibitor (PD150606) in combination with methylprednisolone sodium succinate (MPSS) as an anti-inflammatory drug. SCI was experimentally induced in sixteen mongrel dogs through an epidural balloon compression technique. The dogs were allocated randomly into four groups: control, MPSS, PD150606, and MPSS+PD150606. Clinical evaluation, serum biochemical, somatosensory evoked potentials, histopathological, and immunoblotting analyses were performed to assess treated dogs during the study. The current findings revealed that the combined administration of MPSS+PD150606 demonstrated considerably lower neuronal loss and microglial cell infiltration than the other groups, with a significant improvement in the locomotor score. The increased levels of inflammatory markers (GFAP and CD11) and calcium-binding proteins (Iba1 and S100) were significantly reduced in the combination group and to a lesser extent in MPSS or PD150606 treatment alone. Interestingly, the combined treatment effectively inhibited the calpain-induced cleavage of p35, limited cdk5 activation, and inhibited tau phosphorylation. These results suggest that early MPSS+PD150606 therapy after acute SCI may prevent subsequent neurodegeneration via calpain inhibition.

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References
1.
Wang K, Nath R, Posner A, Raser K, Hajimohammadreza I, Probert A Jr W . An alpha-mercaptoacrylic acid derivative is a selective nonpeptide cell-permeable calpain inhibitor and is neuroprotective. Proc Natl Acad Sci U S A. 1996; 93(13):6687-92. PMC: 39087. DOI: 10.1073/pnas.93.13.6687. View

2.
Nathan C, Ding A . Nonresolving inflammation. Cell. 2010; 140(6):871-82. DOI: 10.1016/j.cell.2010.02.029. View

3.
Min J, Kim J, Seo C, Jeon S, Choi K, Jeong J . Changes of the Electrophysiological Study in Dogs with Acute Spinal Cord Injury. Korean J Neurotrauma. 2016; 10(1):1-5. PMC: 4852588. DOI: 10.13004/kjnt.2014.10.1.1. View

4.
Jia Z, Zhu H, Li J, Wang X, Misra H, Li Y . Oxidative stress in spinal cord injury and antioxidant-based intervention. Spinal Cord. 2011; 50(4):264-74. DOI: 10.1038/sc.2011.111. View

5.
Fu D, Liu H, Li S, Chen L, Yao J . Antioxidative and Antiapoptotic Effects of Delta-Opioid Peptide [D-Ala, D-Leu] Enkephalin on Spinal Cord Ischemia-Reperfusion Injury in Rabbits. Front Neurosci. 2017; 11:603. PMC: 5671641. DOI: 10.3389/fnins.2017.00603. View