Neuromyelitis optica spectrum disorders (NMOSD) include a rare group of autoimmune conditions that primarily affect the central nervous system. They are characterized by inflammation and damage to the optic nerves, brain and spinal cord, leading to severe vision impairment, locomotor disability and sphynteric disturbances. In the majority of cases, NMOSD arises due to specific serum immunoglobulin G (IgG) autoantibodies targeting aquaporin 4 (AQP4-IgG), which is the most prevalent water-channel protein of the central nervous system. Early diagnosis and treatment are crucial to manage symptoms and prevent long-term disability in NMOSD patients. NMOSD were previously associated with a poor prognosis. However, recently, a number of randomized controlled trials have demonstrated that biological therapies acting on key elements of NMOSD pathogenesis, such as B cells, interleukin-6 (IL-6) pathway, and complement, have impressive efficacy in preventing the occurrence of clinical relapses. The approval of the initial drugs marks a revolutionary advancement in the treatment of NMOSD patients, significantly transforming therapeutic options and positively impacting their prognosis. In this review, we will provide an updated overview of the key immunopathological, clinical, laboratory, and neuroimaging aspects of NMOSD. Additionally, we will critically examine the latest advancements in NMOSD treatment approaches. Lastly, we will discuss key aspects regarding optimization of treatment strategies and their monitoring.

Moving towards a new era for the treatment of neuromyelitis optica spectrum disorders / Preziosa, Paolo; Amato, Maria Pia; Battistini, Luca; Capobianco, Marco; Centonze, Diego; Cocco, Eleonora; Conte, Antonella; Gasperini, Claudio; Gastaldi, Matteo; Tortorella, Carla; Filippi, Massimo. - In: JOURNAL OF NEUROLOGY. - ISSN 0340-5354. - 271:7(2024), pp. 3879-3896. [10.1007/s00415-024-12426-w]

Moving towards a new era for the treatment of neuromyelitis optica spectrum disorders

Preziosa, Paolo;Conte, Antonella;Gasperini, Claudio;
2024

Abstract

Neuromyelitis optica spectrum disorders (NMOSD) include a rare group of autoimmune conditions that primarily affect the central nervous system. They are characterized by inflammation and damage to the optic nerves, brain and spinal cord, leading to severe vision impairment, locomotor disability and sphynteric disturbances. In the majority of cases, NMOSD arises due to specific serum immunoglobulin G (IgG) autoantibodies targeting aquaporin 4 (AQP4-IgG), which is the most prevalent water-channel protein of the central nervous system. Early diagnosis and treatment are crucial to manage symptoms and prevent long-term disability in NMOSD patients. NMOSD were previously associated with a poor prognosis. However, recently, a number of randomized controlled trials have demonstrated that biological therapies acting on key elements of NMOSD pathogenesis, such as B cells, interleukin-6 (IL-6) pathway, and complement, have impressive efficacy in preventing the occurrence of clinical relapses. The approval of the initial drugs marks a revolutionary advancement in the treatment of NMOSD patients, significantly transforming therapeutic options and positively impacting their prognosis. In this review, we will provide an updated overview of the key immunopathological, clinical, laboratory, and neuroimaging aspects of NMOSD. Additionally, we will critically examine the latest advancements in NMOSD treatment approaches. Lastly, we will discuss key aspects regarding optimization of treatment strategies and their monitoring.
2024
AQP4-IgG; Diagnosis; NMOSD; Prognosis; Treatment
01 Pubblicazione su rivista::01d Recensione
Moving towards a new era for the treatment of neuromyelitis optica spectrum disorders / Preziosa, Paolo; Amato, Maria Pia; Battistini, Luca; Capobianco, Marco; Centonze, Diego; Cocco, Eleonora; Conte, Antonella; Gasperini, Claudio; Gastaldi, Matteo; Tortorella, Carla; Filippi, Massimo. - In: JOURNAL OF NEUROLOGY. - ISSN 0340-5354. - 271:7(2024), pp. 3879-3896. [10.1007/s00415-024-12426-w]
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/1722441
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