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May 8, 2026European Stroke Journal0 citations

Abstract Number: Esoc2026a2462 Yield of Next-Generation Sequencing in Suspected Genetic Small Cerebral Vessel Disease Patients Without Cadasil

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ATAles TomekKBKaterina BenesovaVZV Zoubkova

Key Points

  • The aim was to evaluate the effectiveness of next-generation sequencing in identifying genetic causes of small vessel disease and to determine its practical utility in clinical practice.
  • Included patients younger than 70 with a family history of Mendelian inheritance or clinical suspicion of connective tissue disorders.
  • Initial screening for NOTCH3 mutations was followed by next-generation sequencing of a neurovascular panel in negative cases.
  • Sixty-seven patients were analyzed, looking for pathogenic variants across a panel of 698 genes.
  • CADASIL identified in 8 patients (11.9%), with NGS negative in 42 patients (62.7%).
  • Pathogenic variants found in 10 patients (14.9%) including genes such as COL4A2 and GLA.
  • Variants of uncertain significance identified in 7 patients (10.4%), with no significant differences in age or risk factors among genetic subgroups.

Abstract

Abstract Background and aims Although the genetic causes of cerebral small vessel disease (CSVD) are well established, routine practice usually tests only for NOTCH3 mutations in CADASIL. If the result is negative, further genetic evaluation is often not pursued. We aimed to assess the practical utility of next-generation sequencing (NGS) and to determine whether its use may already be meaningful in real-world practice. Methods Patients younger than 70 years were eligible if they had a family history of Mendelian inheritance, or clinical suspicion of a connective tissue disorder (ocular, renal, or skin involvement), and MRI evidence of CSVD according to STRIVE in the absence of relevant cardiovascular risk. All patients were first screened for NOTCH3 mutations. In the case of a negativity, NGS was performed using a targeted neurovascular panel analyzing 698 genes. Results Sixty-seven patients were included. CADASIL was identified in 8 (11.9%), with a mean age of 55.1 ± 13.7 years. The remaining 59 (88.1%) underwent NGS (mean age 57.7 ± 14.2 years). In the total cohort, NGS was negative in 42 (62.7%), pathogenic variants were identified in 10 (14.9%) in genes COL4A2 (3×), COL4A1 (2×), COL4A5, GLA, RNF213, RYR1 (2×), CSF1R, FBN2, and variants of uncertain significance (VUS) in 7 (10.4%) in genes COL2A1, NPC1, THSD1, APP, SERPINA1, FOXF2, ENG. Neither age, risk factors, nor Fazekas score differed significantly between genetic subgroups. Conclusions Genetic testing revealed a substantial number of pathogenic variants. It enabled initiation of Fabry disease–specific therapy and provided additional prognostic information for patients and their relatives. Conflict of interest Nothing to disclose.

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Cite This Study

Tomek et al. (2026) studied this question.

synapsesocial.com/papers/69fd7e00bfa21ec5bbf062cbhttps://doi.org/10.1093/esj/aakag023.157
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Whole-exome sequencing identifies matrisomal gene associations in monogenic cerebral small vessel disease2026
  2. 2Identification of Copy Number Variants as a Suspected Cause of Cerebral Small Vessel Disease2026
  3. 3Genotype-phenotype correlations in a Scottish CADASIL cohort and comparison with sporadic small vessel disease2026
  4. 4Hereditary connective tissue disorders in unselected patients with spontaneous cervical artery dissection: a targeted next generation sequencing approach and systematic review2026
  5. 5Gene Panel Approach to Screen for Hereditary Cerebral Small Vessel Disease: A Proof-of-Concept Study2026