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Traumatic brain injury (TBI) represents a major global health issue contributing to significant disability and mortality. The TBI-induced secondary injury cascade, characterized by neuroinflammation, neural cell death, and tissue damage, results in lifelong functional deficits. Alpha--[(R)-1, 2-dithiolane-3-pentanoyl]l-glutamyl-l-alanine (CMX-2043) is a novel alpha lipoic acid (ALA)-based therapeutic that has neuroprotective, anti-apoptotic, and anti-inflammatory properties that mitigate cellular, tissue, and functional deficits following TBI. In this study, we evaluated the therapeutic efficacy of CMX-2043 on neural injury severity and functional recovery in a clinically relevant porcine TBI model. CMX-2043 was administered 1-h post-TBI subcutaneously (SQ; = 8) or intravenously (IV; = 8) for a total of 5 days. Control piglets (placebo; = 11) received saline subcutaneously. Magnetic resonance imaging (MRI), immunohistochemistry analysis, modified Rankin Scale (mRS) neurological evaluation, and social recognition testing (SRT) were evaluated up to 42 days post-TBI. MRI revealed that SQ and IV CMX-2043 administration reduced hemispheric swelling and atrophy, lesion volume, midline shift, and intracerebral hemorrhage and preserved diffusivity, cerebral blood flow, and white matter integrity. CMX-2043-mediated neuroprotection and regeneration were indicated by increased neural cell density, decreased neuroinflammation, and enhanced neurogenesis following SQ and IV administration. These cellular and tissue-level changes corresponded with reduced neurological deficits and rapid cognitive recovery as indicated by improved mRS and SRT results, respectively. Collectively, these results observed in a translational large animal porcine model suggest that CMX-2043 holds significant clinical value to potentially mitigate TBI pathophysiology and promote functional recovery.
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http://dx.doi.org/10.1177/08977151251363584 | DOI Listing |
Europace
September 2025
Department of Cardiology and Vascular Medicine, University Heart and Vascular Center Frankfurt, Goethe University Frankfurt, Frankfurt am Main, Germany.
Background And Aims: Aim of this study was to assess the risk of hemolysis, the extent of myocardial and neural injury after monopolar, monophasic pulsed field ablation (PFA) using a lattice-tip catheter in comparison to single-shot PF ablation platforms employing bipolar, biphasic waveforms.
Methods: This prospective study included consecutive patients undergoing PFA for atrial fibrillation (AF) using the Affera™ mapping and ablation system (n=40). Biomarkers for hemolysis (haptoglobin, LDH, bilirubin), myocardial injury (high-sensitive troponin T, CK, CK-MB), neurocardiac injury (S100), and renal function (creatinine) were assessed pre- and within 24 hours post-ablation.
Adv Sci (Weinh)
September 2025
Department of Spine Surgery, The 3rd Affiliated Hospital, Sun Yat-Sen University, Guangzhou, 510630, P. R. China.
Fibrotic scarring remains a critic obstacle to axonal regeneration after spinal cord injury (SCI). Current strategies primarily concentrating on eliminating extracellular matrix (ECM) components neglect their dispensable roles in maintaining tissue integrity. Here, it is reported that the mechanical strength of an integrated hydrogel composed of hyaluronic acid-graft-dopamine and HRR peptide directs fibroblast migration, determining ECM deposition.
View Article and Find Full Text PDFCureus
August 2025
Internal Medicine, Jinnah Postgraduate Medical Centre, Karachi, PAK.
Neurodegenerative diseases and spinal cord injuries (SCI) pose a significant burden on the healthcare system globally. Diseases such as Alzheimer's disease, Parkinson's disease, amyotrophic lateral sclerosis, and Huntington's disease precipitate cognitive, motor, and behavioral deficits. Parallelly, spinal cord injuries produce sensory and motor deficits, which are burdensome psychologically, socially, and economically.
View Article and Find Full Text PDFEur J Neurosci
September 2025
Department of Neuroanatomy, Yokohama City University School of Medicine, Yokohama, Japan.
Pelvic visceromotor functions such as micturition are regulated by coordinated autonomic and somatic motor pathways from the central nervous system. The parasympathetic system induces detrusor muscle contraction while the somatic system facilitates relaxation of the external urethral sphincter, ensuring synchronized and efficient bladder emptying during the voiding process. This study explores the relationship between Barrington's nucleus corticotropin-releasing hormone (CRH)-ergic projections and the formation of perineural nets (PNNs) among spinal motoneurons, particularly parasympathetic preganglionic neurons in the intermediolateral nucleus (IML) and Onuf's nucleus during the maturation of the neural circuitry controlling pelvic visceromotor functions.
View Article and Find Full Text PDFProg Mol Biol Transl Sci
September 2025
Aiiso Yufeng Li Family Department of Chemical and Nanoengineering, University of California, San Diego, La Jolla, CA, United States. Electronic address:
Nano-electronics based neural implants represent a rapidly advancing interdisciplinary domain at the intersection of bioelectronics, nanotechnology, and neuro-engineering. These implantable systems are engineered to restore, modulate, or augment neural functions by establishing high-fidelity, long-term interfaces with neural tissues. The design of such implants necessitates careful consideration of both materials and structural configurations to ensure biocompatibility, mechanical compliance, electrical functionality, and chronic stability.
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