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Tracing the path of disruption: 13C isotope applications in traumatic brain injury‐induced metabolic dysfunction.

Authors :
Peper, Charles J.
Kilgore, Mitchell D.
Jiang, Yinghua
Xiu, Yuwen
Xia, Winna
Wang, Yingjie
Shi, Mengxuan
Zhou, Di
Dumont, Aaron S.
Wang, Xiaoying
Liu, Ning
Source :
CNS Neuroscience & Therapeutics. Mar2024, Vol. 30 Issue 3, p1-17. 17p.
Publication Year :
2024

Abstract

Cerebral metabolic dysfunction is a critical pathological hallmark observed in the aftermath of traumatic brain injury (TBI), as extensively documented in clinical investigations and experimental models. An in‐depth understanding of the bioenergetic disturbances that occur following TBI promises to reveal novel therapeutic targets, paving the way for the timely development of interventions to improve patient outcomes. The 13C isotope tracing technique represents a robust methodological advance, harnessing biochemical quantification to delineate the metabolic trajectories of isotopically labeled substrates. This nuanced approach enables real‐time mapping of metabolic fluxes, providing a window into the cellular energetic state and elucidating the perturbations in key metabolic circuits. By applying this sophisticated tool, researchers can dissect the complexities of bioenergetic networks within the central nervous system, offering insights into the metabolic derangements specific to TBI pathology. Embraced by both animal studies and clinical research, 13C isotope tracing has bolstered our understanding of TBI‐induced metabolic dysregulation. This review synthesizes current applications of isotope tracing and its transformative potential in evaluating and addressing the metabolic sequelae of TBI. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
17555930
Volume :
30
Issue :
3
Database :
Academic Search Index
Journal :
CNS Neuroscience & Therapeutics
Publication Type :
Academic Journal
Accession number :
176335913
Full Text :
https://doi.org/10.1111/cns.14693