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January 20, 2026Journal of Neuroimaging0 citationsOpen Access

Brain Microstructural Damage as Potential Biomarker of Immune Cell‐Associated Neurotoxicity Syndrome

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CLCaterina LapucciMGMassimiliano GambellaECEmilio Cipriano

Key Points

  • To explore MRI-derived features that can identify patients at risk for Immune effector Cell-Associated Neurotoxicity Syndrome (ICANS) after CAR-T therapy.
  • Analyzed brain MRIs of 42 CAR-T treated patients between October 2020 and June 2025.
  • Performed diffusion-weighted imaging to assess macrostructural and microstructural features.
  • Used a general linear model to compare MRI features between patients with ICANS, Cytokine Release Syndrome (CRS), or neither.
  • 14 (33%) of patients developed ICANS; 31 (73.8%) developed CRS.
  • FLAIR hyperintensities detected in 41 out of 42 patients, but did not differ significantly among groups.
  • Greater axonal damage and lower fractional anisotropy were significant predictors for ICANS risk.

Abstract

ABSTRACT Background and Purpose Chimeric antigen receptor–engineered T‐cell (CAR‐T) therapy in hematological malignancies may be associated with severe complications, as Cytokine Release Syndrome (CRS) and Immune effector Cell‐Associated Neurotoxicity Syndrome (ICANS). The aim of the study is to investigate MRI‐derived macrostructural and microstructural features potentially able to identify patients at higher ICANS risk. Methods Forty‐two patients treated with CAR‐T from October 2020 to June 2025 performed brain MRIs before CAR‐T administration, including diffusion‐weighted imaging. A general linear model was used to compare patients who developed ICANS, CRS, or neither at baseline in terms of MRI macro‐ and microstructural features. A binary logistic regression analysis was performed to evaluate the role of microstructural features in predicting the risk of developing ICANS. Results Mean age 59.2 ± 13 years, 59.5% male; 21 (50%) patients received tisagenlecleucel, 21 (50%), axicabtagene ciloleucel or brexucabtagene autoleucel; 14 (33%) and 31 (73.8%) patients developed ICANS and CRS, respectively. At baseline MRI, fluid‐attenuated inversion recovery (FLAIR) white matter (WM) hyperintensities were detected in 41/42 (97.6%). No significant differences between patients who developed ICANS, CRS and neither both were observed in terms of FLAIR hyperintensities nor total brain volume at baseline. Fractional anisotropy extracted from FLAIR hyperintensities and WM areas without macroscopic abnormalities was a predictor of ICANS in the logistic regression model ( p = 0.03 and 0.02, respectively). Conclusions FLAIR hyperintensities and brain volume prior to CAR‐T were not informative, whereas the severity of WM microstructural (axonal) damage predicted ICANS risk. Greater axonal damage was associated with a higher likelihood of ICANS.

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Cite This Study

Lapucci et al. (2026) studied this question.

synapsesocial.com/papers/696f1b189e64f732b51ef18ehttps://doi.org/10.1111/jon.70115
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