1. Exploring serum glycome patterns after moderate to severe traumatic brain injury: A prospective pilot study
- Author
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Stefania Mondello, Viktor Sandner, Mona Goli, Endre Czeiter, Krisztina Amrein, Patrick M. Kochanek, Sakshi Gautam, Byeong Gwan Cho, Ryan Morgan, Ali Nehme, Giacomo Fiumara, Ali H. Eid, Chloe Barsa, Muhammad Ali Haidar, Andras Buki, Firas H. Kobeissy, and Yehia Mechref
- Subjects
Traumatic brain injury ,Glycosylation ,Glycomics ,Glycomarkers ,Biomarkers ,Serum ,Medicine (General) ,R5-920 - Abstract
Summary: Background: Glycans play essential functional roles in the nervous system and their pathobiological relevance has become increasingly recognized in numerous brain disorders, but not fully explored in traumatic brain injury (TBI). We investigated longitudinal glycome patterns in patients with moderate to severe TBI (Glasgow Coma Scale [GCS] score ≤12) to characterize glyco-biomarker signatures and their relation to clinical features and long-term outcome. Methods: This prospective single-center observational study included 51 adult patients with TBI (GCS ≤12) admitted to the neurosurgical unit of the University Hospital of Pecs, Pecs, Hungary, between June 2018 and April 2019. We used a high-throughput liquid chromatography–tandem mass spectrometry platform to assess serum levels of N-glycans up to 3 days after injury. Outcome was assessed using the Glasgow Outcome Scale-Extended (GOS-E) at 12 months post-injury. Multivariate statistical techniques, including principal component analysis and orthogonal partial least squares discriminant analysis, were used to analyze glycomics data and define highly influential structures driving class distinction. Receiver operating characteristic analyses were used to determine prognostic accuracy. Findings: We identified 94 N-glycans encompassing all typical structural types, including oligomannose, hybrid, and complex-type entities. Levels of high mannose, hybrid and sialylated structures were temporally altered (p
- Published
- 2022
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