ArticleMolecular and cellular biochemistry2026
Dysregulation of CD36 and CPT1A is associated with fatty acid metabolic disorder and cardiomyocyte injury after high-cervical spinal cord injury.
Article in Molecular and cellular biochemistry, 2026. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Not yet cited in PubMed.
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Abstract
To explore the expression changes of fatty acid translocase (CD36) and carnitine palmitoyltransferase 1a (CPT1A) in rat cardiomyocytes after high-cervical spinal cord injury (SCI), and to clarify their relationship with Fatty acid metabolism disturbance and acute myocardial damage. Thirty-six male Sprague-Dawley rats were randomly assigned to control, sham-operation, and high-cervical SCI groups. A C7 contusion model was established by a modified Allen weight-drop method, with SCI rats sampled at 4, 12, 24, and 48 h post-injury. Myocardial ultrastructure was examined by transmission electron microscopy. The GSE45006 spinal cord transcriptomic dataset was reanalyzed for Cd36 and Cpt1a expression at 1 and 3 days after SCI. Cd36 mRNA and CPT1A protein levels in cardiac tissue were quantified by qRT-PCR and Western blotting, respectively. TEM showed progressively worsening myocardial ultrastructural injury in SCI rats from 4 to 48 h, manifesting as mitochondrial swelling, myofilament disarray, and intracellular edema. Bioinformatics analysis of injured spinal cord tissue showed that Cd36 was significantly upregulated at both 1 and 3 days after SCI, whereas Cpt1a was upregulated at 1 day and returned toward the sham level by 3 days. In cardiac tissue, Cd36 mRNA was significantly elevated at 4 h and reduced at 48 h, and CPT1A protein showed a parallel biphasic trend over the same period in the SCI group. No significant differences were detected between the control and sham groups. Dynamic dysregulation of CD36/CPT1A is associated with myocardial fatty acid metabolic disturbance after high-cervical SCI and may be involved in acute myocardial injury. CD36 and CPT1A may serve as potential targets for the prevention and treatment of SCI-induced myocardial dysfunction.
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