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Magnetic Resonance Imaging in Immune Effector Cell-Associated Neurotoxicity Syndrome

Contribution of Magnetic Resonance Imaging in Immune Effector Cell-Associated Neurotoxicity Syndrome

Status
Completed
Phases
NA
Study type
Interventional
Source
ClinicalTrials.gov
Registry ID
NCT05510596
Acronym
MR-ICANS
Enrollment
25
Registered
2022-08-22
Start date
2022-09-22
Completion date
2023-09-14
Last updated
2024-08-09

For informational purposes only — not medical advice. Sourced from public registries and may not reflect the latest updates. Terms

Conditions

Lymphoma, B-Cell, Neurotoxicity

Keywords

Neurotoxicity, CAR-T CELLS, Immune cells associated neurotoxicity syndrome, Cytokine release syndrome

Brief summary

The treatment of large-cell B-cell lymphomas refractory to more than 2 lines of therapy has recently been revolutionized by the use of immunotherapies consisting of autologous genetically modified cells or CAR-T CELLS (chimeric antigen receptor-T cells), which very significantly increase progression-free survival and overall survival. Nevertheless, this therapy is frequently associated with cytokine release syndrome and in approximately 20% to 60% of patients with neurological complications that can sometimes be dramatic and are associated with a significant mortality rate. The mechanisms behind this neurotoxicity are unclear. Despite the frequent occurrence of neurological toxicity characterized in particular by headache, tremor, and encephalopathy that is most often transient, brain imaging by CT or, preferably, MRI are most often normal. The rare abnormalities that have been identified suggest the presence of cytotoxic edema associated with the existence of transient modifications of the blood-brain barrier. To date, the management of neurotoxicity associated with CAR-T CELLS remains empirical. It combines early management of cytokine release syndrome (by administration of anti-IL6) and treatment with corticosteroids, the objective of which would be to control neurotoxicity more specifically. A better understanding of the pathophysiological mechanisms associated with this neurotoxicity appears essential today in order to be able to propose adapted prevention and treatment methods. Main objectives are to compare tissue permeability by quantitative MRI measurement of Ktrans to the theoretical peak of neurotoxicity between patients with CAR-T Cell-induced neurotoxicity and those without neurotoxicity and to Study, by MRI, the evolution of tissue microcirculatory parameters (from D-3 to D7) between groups of patients with or without the occurrence of neurotoxicity associated with CAR-T CELL treatment. For this purpose, 25 subjects will be included (the investigators hypothesize 40% with treatment-induced neurological impairment).

Detailed description

The treatment of large-cell B-cell lymphomas refractory to more than 2 lines of therapy has recently been revolutionized by the use of immunotherapies consisting of autologous genetically modified cells or CAR-T CELLS (chimeric antigen receptor-T cells), which very significantly increase progression-free survival and overall survival. Nevertheless, this therapy is frequently associated with cytokine release syndrome and in approximately 20% to 60% of patients with neurological complications that can sometimes be dramatic and are associated with a significant mortality rate. The mechanisms behind this neurotoxicity are unclear but may include : * A systemic toxicity associated with the cytokine release syndrome. This toxicity would thus be favoured by the associated inflammatory response syndrome manifested in particular by hyperthermia, changes in blood pressure, and an increase in CRP, ferritin and the number of white blood cells. * A breakdown of the blood-brain barrier, as evidenced by increased protein levels, cellularity and cytokine levels in the cerebrospinal fluid. Among other things, this rupture could be promoted by the synthesis of proinflammatory cytokines (IL6, TNF-alpha, IFN-gamma) that would promote endothelial activation. * Direct toxicity to neurons and/or microglial cells. Despite the frequent occurrence of neurological toxicity characterized in particular by headache, tremor, and encephalopathy that is most often transient, brain imaging by CT or, preferably, MRI are most often normal. The rare abnormalities that have been identified suggest the presence of cytotoxic edema associated with the existence of transient modifications of the blood-brain barrier. To date, the management of neurotoxicity associated with CAR-T CELLS remains empirical. It combines early management of cytokine release syndrome (by administration of anti-IL6) and treatment with corticosteroids, the objective of which would be to control neurotoxicity more specifically. A better understanding of the pathophysiological mechanisms associated with this neurotoxicity appears essential today in order to be able to propose adapted prevention and treatment methods. Objectives: Main: \* To Compare tissue permeability by quantitative MRI measurement of Ktrans to the theoretical peak of neurotoxicity between patients with CAR-T Cell-induced neurotoxicity and those without neurotoxicity. Secondary: * To Study, by MRI, the evolution of tissue microcirculatory parameters (from D-3 to D7) between groups of patients with or without the occurrence of neurotoxicity associated with CAR-T CELL treatment. * To Correlate the values of the MRI parameters with the usual clinical and biological parameters known to be associated with the occurrence of neurotoxicity (at D0 and theoretical peak). * To Correlate the values of the MRI parameters with the values (at D0 and at NADIR) of a panel of cytokines of interest (V-PLEX Neuroinflammation Panel Human 1 Kit, Meso Scale Discovery®).

Interventions

OTHERMagnetic Resonance Imaging with contrast injection

Magnetic Resonance Imaging with contrast injection

OTHERBlood withdrawal

Blood withdrawal : serum, plasma, cytokine assay

OTHERNeuropsychological tests

Neuropsychological tests

Sponsors

University Hospital, Montpellier
Lead SponsorOTHER

Study design

Allocation
NA
Intervention model
SINGLE_GROUP
Primary purpose
DIAGNOSTIC
Masking
NONE

Eligibility

Sex/Gender
ALL
Age
18 Years to No maximum
Healthy volunteers
No

Inclusion criteria

* Subject aged from 18 years old * Subject able to understand the nature, purpose and methodology of the study * Subject with diffuse large B-cell lymphoma to be treated with axicabtagene ciloleucel, tisagenlecleucel or brexucabtagene autoleucel for their lymphoma.

Exclusion criteria

* Refusal to sign the informed consent * Subject presenting a cerebral localization of his lymphoma * Contraindication to the realization of an MRI (metallic foreign body, pace-maker, cochlear implants) * Claustrophobic subject * Subject with a neurodegenerative disease (Parkinson's, Alzheimer's...) * Subject with psychiatric disorders such as psychosis, except for anxiety-depressive episodes * Subject with a systemic pathology with neurological manifestation * Subject with a previous or evolving neurological pathology * Subject with or with a history of severe head trauma (group 2 or 3 according to the Masters classification) * Contraindication to the use of gadoline contrast products (severe renal insufficiency, liver transplantation, known or suspected hypersensitivity to the product) * Pregnant or breastfeeding women * Patient under tutelage * Patient under curatorship * Patient deprived of liberty * Not a beneficiary of a social security system

Design outcomes

Primary

MeasureTime frameDescription
Study of tissue permeability evolution10 daysQuantitative measurement of KTRANS (rate of contrast agent transfer from plasma to the extravascular extracellular space, reflecting capillary permeability). (Time in second)

Secondary

MeasureTime frameDescription
Qualitative analysis10 daysMicrobleeding analysis (3DEPI T2\*)
Semi-quantitative analysis of parameters associated with permeability10 daysWash-in, Wash-out (Time in second)
Quantitative analysis of parameters associated with permeability10 daysKep: rate of return transfer of the contrast agent from the extravascular extracellular space to the plasma (Volume/Time/Volume)
Qualitative analysis of tissue signals10 daysFLAIR hypersignals analysis by MRI (signal of a tissue superior to the signal of the surrounding tissues) (visual assessment)
Qualitative analysis : comparison with clinical data10 daysPresence, absence of neurotoxicity and inflammation
Comparison with biological data from standard care and Neuroinflammation Panel Human 1 Kit10 daysComparison of MRI data with biological markers (such as CRP, ferritin, white blood cell count, LDH, procalcitonin, fibrinogen) and cytokine profile of neuroinflammation by multiplex immunoassay kit. An ultrasensitive multiplex using electrochemiluminescence.
Quantitative analysis10 daysCerebral blood flow analysis (3DPCASL) (L/min)

Countries

France

Outcome results

None listed

Source: ClinicalTrials.gov · Data processed: Feb 4, 2026