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February 8, 2026Journal of Nuclear Medicine1 citations

SV2A PET Imaging Detects Severity-Dependent Synaptic Changes After Experimental Traumatic Spinal Cord Injury

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CSClaudia SchrauwenNHNicolas HalloinAEAnnemie Van Eetveldt

Key Points

  • To determine if SV2A PET imaging can measure synaptic changes in relation to the severity of traumatic spinal cord injury.
  • Used <sup>18</sup>F-SynVesT-1 PET imaging to measure SV2A loss in a rat model of SCI
  • Conducted laminectomy or cervical contusion injury with varied severity
  • Performed longitudinal imaging and structural MRI assessments
  • Validated findings through immunostaining and autoradiography
  • MRI revealed proportional lesion volumes related to injury severity
  • SV2A PET detected significant SV2A loss: -37.5% (100 kDyn), -39.2% (250 kDyn), -41.9% (400 kDyn) at 1 week post-injury
  • SV2A loss remained stable at 6 weeks post-injury
  • Postmortem analyses confirmed PET findings and injury correlations

Abstract

Traumatic spinal cord injury (SCI) is a serious neurologic disorder that can result in long-term motor and sensory impairments after external damage to the spinal cord. Although anatomic MRI offers essential structural information, it falls short in capturing functional alterations, particularly synaptic changes, which are crucial for accurate prognosis and evaluating therapeutic outcomes. Here, we used 18F-SynVesT-1 PET imaging to measure noninvasively synaptic vesicle glycoprotein 2A (SV2A) loss in a rat model of SCI to determine whether SV2A PET is capable of detecting SCI severity-dependent synaptic loss. Methods: Rats were subjected to laminectomy (sham, n = 10) or unilateral cervical (C5) contusion injury with graded severity (100 kDyn, n = 10; 250 kDyn, n = 10; and 400 kDyn, n = 10). Longitudinal 18F-SynVesT-1 PET/CT imaging and structural MRI were performed at 1 and 6 wk after SCI. SV2A immunostaining and 3H-SynVesT-1 autoradiography were conducted to validate in vivo PET findings. Results: Structural MRI revealed lesion volumes proportional to contusion severity in SCI rats at both 1 wk (P P = 0.0190) after SCI, with overall lesion volume decreasing over time. 18F-SynVesT-1 PET imaging detected a significant reduction in SV2A at the injury epicenter proportional to injury severity: -37.5 ± 5.5% (100 kDyn), -39.2 ± 3.7% (250 kDyn), and -41.9 ± 3.5% (400 kDyn) at 1 wk after SCI compared with sham controls (P Conclusion: 18F-SynVesT-1 PET imaging provides a sensitive, noninvasive measure of SV2A loss after SCI and can discriminate between different levels of injury severity. Together, these findings support SV2A PET as an early objective biomarker for SCI severity and progression, offering a valuable tool for evaluating new therapies and further encouraging clinical application of SV2A PET for SCI assessment.

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Cite This Study

Schrauwen et al. (2026) studied this question.

synapsesocial.com/papers/698829410fc35cd7a88495eehttps://doi.org/10.2967/jnumed.125.271236
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