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Plasma glial fibrillary acidic protein as a biomarker of acute focal brain injury after high-intensity focused ultrasound thalamotomy.

Authors: Saez-Calveras N, Asturias A, Yu J, Stopschinski B, Vaquer-Alicea J, O'Suilleabhain P, McKenzie L, Viera J, Diamond MI, Shah BR

The validation of brain injury biomarkers has encountered challenges such as the absence of pre-insult measurements, variability in injury timing and location, and inter-individual differences. In this study, we addressed these limitations by using magnetic resonance-guided high-intensity focused ultrasound (MRgHIFU) thalamotomy to assess plasma biomarker changes after an acute focal brain injury. This prospective study included 30 essential tremor and tremor-dominant Parkinson's disease patients undergoing MRgHIFU thalamotomy at a single academic institution. Blood samples were collected at three specific time points: pre-procedure, 1-h post-procedure, and 48 h post-procedure. Plasma levels of glial fibrillary acidic protein (GFAP), neurofilament light chain (NfL), amyloid beta (Aβ40 and Aβ42) and phosphorylated tau 181 (pTau-181) were measured using the quanterix single molecule arrays assay. GFAP levels were significantly increased at 48 h post-MRgHIFU in all patients with a thalamotomy lesion. GFAP levels at 48 h were highly sensitive (89.7%) and specific (96.6%) in detecting the presence of a lesion with a cut-off value of 216.2 pg/ml. NfL, Aβ40 and Aβ42, also showed statistically significant increases post-procedure but were less robust than GFAP. No changes were observed in pTau-181 levels post-MRgHIFU. Plasma GFAP has shown great promise as a sensitive and reliable biomarker for detecting acute brain injury after MRgHIFU thalamotomy. Its significant elevation following the procedure highlights its potential as a diagnostic tool for acute focal brain injuries, such as stroke. Further studies with additional time points are essential to validate the injury cut-off identified in this study and to assess its broader clinical utility for early detection of focal brain lesions.

Introduction

Purpose Thermal ablation
Study Objective To evaluate changes in plasma brain-injury biomarkers (GFAP, NfL, Aβ40/Aβ42, and pTau-181) before and after MRgHIFU thalamotomy to determine their utility for detecting acute focal brain injury.
Animal model / Human subject Human (Homo sapiens); patients with essential tremor and tremor-dominant Parkinson's disease (n=30); strain: N/A; age: not specified; sex: not specified
Disease model Acute focal brain injury (post-MRgHIFU thalamotomy) in patients with essential tremor and tremor-dominant Parkinson's disease
MRI or image guidance method Magnetic resonance-guided (MRgHIFU)
Targeted brain region(s) Thalamus

Outcomes and Safety

Summary of Outcomes MRgHIFU thalamotomy produced a robust increase in plasma GFAP at 48 h (GFAP >216.2 pg/ml detected lesions with ~89.7% sensitivity and 96.6% specificity), with smaller but significant increases in NfL, Aβ40 and Aβ42 and no change in pTau‑181; GFAP rose in all patients with an ablation (but not in the single patient without a lesion) and was higher after second-time thalamotomy. The study did not test multiple focused‑ultrasound parameter variations beyond standard MRgHIFU thalamotomy delivery.
Duration of biological effect 48 hours
Safety-related matter One patient (Case #9) experienced nausea/vomiting and treatment intolerance (and the procedure was terminated due to skull density considerations), resulting in no ablative lesion; otherwise all treated patients had successful ablations without incident and no other adverse effects were reported.

Brain Region

Ultrasound Parameters

FUS Mode continuous
Focal Characteristics Focal depth: None; Focal length: None; Aperture size: None
Treatment frequency Single session

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