Publication:
Cortical Thickness and Serum NfL Explain Cognitive Dysfunction in Newly Diagnosed Patients With Multiple Sclerosis

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Date

2021

Authors

Cruz-Gomez, Álvaro J.
Forero, Lucía
Lozano-Soto, Elena
Cano-Cano, Fátima
Sanmartino, Florencia
Rashid-López, Raúl
Paz-Expósito, Jsé
Gómez Ramirez, Jaime D.
Espinosa-Rosso, Raúl
González-Rosa, Javier J.

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Wolters Kluwer Health, Inc. on behalf of the American Academy of Neurology
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Background and Objectives To determine the relative importance of global or regional MRI and blood markers of neu rodegeneration and neuroaxonal injury in predicting cognitive performance for recently di agnosed patients with multiple sclerosis (MS). Methods Thirty-five newly diagnosed patients with relapsing-remitting MS (RRMS) and 23 healthy controls (HCs) simultaneously completed a full clinical and neuropsychological assessment, structural brain MRI, and serum neurofilament light chain (sNfL) level test. Linear regression analyses were performed to determine which global or regional measures of gray matter (GM) atrophy and cortical thickness (CT), in combination with sNfL levels and clinical scores, are most strongly related to neuropsychological impairment. Results Compared with HCs, patients with MS showed bilateral thalamic GM atrophy (left, p = 0.033; right, p = 0.047) and diminished CT, particularly in the right superior and transverse temporal gyri (p = 0.045; p = 0.037). Regional atrophy failed to add predictive variance, whereas anxiety symptoms, sNfL, and global CT were the best predictors (R2 = 0.404; p < 0.001) of cognitive outcomes, with temporal thickness accounting for greater variance in cognitive deficits than global CT. Discussion Thalamic GM atrophy and thinning in temporal regions represent a distinctive MRI trait in the early stages of MS. Although sNfL levels alone do not clearly differentiate HCs and patients with RRMS, in combination with global and regional CT, sNfL levels can better explain the presence of underlying cognitive deficits. Hence, cortical thinning and sNfL increases can be considered 2 parallel neurodegenerative markers in the pathogenesis of progression in newly diagnosed patients with MS.

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MeSH Terms

Medical Subject Headings::Persons::Persons::Age Groups::Adolescent
Medical Subject Headings::Persons::Persons::Age Groups::Adult
Medical Subject Headings::Anatomy::Nervous System::Central Nervous System::Brain::Prosencephalon::Telencephalon::Cerebrum::Cerebral Cortex
Medical Subject Headings::Check Tags::Female
Medical Subject Headings::Organisms::Eukaryota::Animals::Chordata::Vertebrates::Mammals::Primates::Haplorhini::Catarrhini::Hominidae::Humans
Medical Subject Headings::Analytical, Diagnostic and Therapeutic Techniques and Equipment::Diagnosis::Diagnostic Techniques and Procedures::Diagnostic Imaging::Magnetic Resonance Imaging
Medical Subject Headings::Check Tags::Male
Medical Subject Headings::Persons::Persons::Age Groups::Adult::Middle Aged
Medical Subject Headings::Chemicals and Drugs::Macromolecular Substances::Polymers::Biopolymers::Intermediate Filament Proteins::Neurofilament Proteins
Medical Subject Headings::Anatomy::Nervous System::Central Nervous System::Brain::Prosencephalon::Diencephalon::Thalamus
Medical Subject Headings::Persons::Persons::Age Groups::Adult::Young Adult
Medical Subject Headings::Psychiatry and Psychology::Psychological Phenomena and Processes::Mental Processes::Cognition
Medical Subject Headings::Diseases::Nervous System Diseases::Demyelinating Diseases::Demyelinating Autoimmune Diseases, CNS::Multiple Sclerosis::Multiple Sclerosis, Relapsing-Remitting

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Keywords

Cortical thickness, Multiple sclerosis, Cognitive dysfunction, Serum, Brain, Serum neurofilament light chain (sNfL), Hueso cortical, Esclerosis múltiple, Disfunción cognitiva, Suero, Encéfalo

Citation

Cruz-Gomez ÁJ, Forero L, Lozano-Soto E, Cano-Cano F, Sanmartino F, Rashid-López R, el al. Cortical Thickness and Serum NfL Explain Cognitive Dysfunction in Newly Diagnosed Patients With Multiple Sclerosis. Neurol Neuroimmunol Neuroinflamm. 2021 Aug 31;8(6):e1074