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Carotid atherosclerotic plaque microcalcification is independently associated with recurrent neurovascular events: A pilot study.

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Peer-reviewed

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Abstract

BACKGROUND: Microcalcification and macrocalcification are critical processes in atherosclerotic plaque progression, though how these processes relate to the risk of stroke recurrence in symptomatic carotid atherosclerosis is poorly understood. METHODS: We performed a post hoc analysis of data from the ICARUSS (Imaging Carotid Atherosclerosis in the Recovery and Understanding of Stroke Severity) study, where individuals with acute ischemic stroke originating from ipsilateral carotid stenosis of ⩾ 50% underwent 18F-sodium fluoride positron emission tomography (NaF-PET) to measure microcalcification. Tracer uptake was quantified using maximum tissue-to-background ratio (TBRmax). Macrocalcification was measured on computed tomography (CT) using Agatston scoring. Patients were followed up for 6 months for recurrent ipsilateral neurovascular events. RESULTS: Five (27.8%) of 18 individuals had a recurrent ischemic stroke or transient ischemic attack. Ipsilateral carotid plaque NaF uptake at baseline was higher in those with recurrent events compared to those without, and this association remained after adjustment for other vascular risk factors (adjusted odds ratio (aOR) = 1.24, 1.03-1.50). Macrocalcification score in the symptomatic artery was also significantly independently associated with ipsilateral recurrence, but the effect size was relatively smaller (aOR = 1.12, 1.06-1.17 for each 100 unit increase). CONCLUSIONS: Our findings indicate that microcalcification in symptomatic carotid plaques is independently associated with ipsilateral ischemic stroke recurrence. Furthermore, differences in the extent of active microcalcification in macrocalcified plaques may help explain variation in the relationship between calcified carotid plaques and stroke recurrence reported in the literature. Our pilot study indicates that evaluation of carotid artery microcalcification using NaF-PET may be a useful method for risk-stratification of carotid atherosclerosis, though our findings require confirmation in larger cohorts.

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Peer reviewed: True

Journal Title

Int J Stroke

Conference Name

Journal ISSN

1747-4930
1747-4949

Volume Title

19

Publisher

SAGE Publications

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Except where otherwised noted, this item's license is described as Attribution 4.0 International
Sponsorship
Dunhill Medical Trust (JBGS22\20)
The Dunhill Medical Trust (None)
Wellcome Trust (211100/Z/18/Z)
British Heart Foundation (RE/18/1/34212)
The ICARUSS study was supported as part of a Research Training Fellowship awarded to NRE by The Dunhill Medical Trust [RTF44/0114], and by the NIHR Cambridge Biomedical Research Centre (NIHR203312). J.M.T. is supported by a Wellcome Trust Clinical Research Career Development Fellowship (211100/Z/18/Z) and the Cambridge BHF Centre for Research Excellence (18/1/34212). JHFR is part-supported by the NIHR Cambridge Biomedical Research Centre, the British Heart Foundation, HEFCE, the EPSRC and the Wellcome Trust. SB is supported by a Research Training Fellowship from The Dunhill Medical Trust [JBGS22\20]. NRE is supported by a Stroke Association Senior Clinical Lectureship [SA-SCL-MED-22\100006].