Myasthenia gravis is a chronic autoimmune disorder that affects the neuromuscular junction leading to fluctuating skeletal muscle fatigability. The majority of myasthenia gravis patients have detectable antibodies in their serum, targeting acetylcholine receptor, muscle-specific kinase, or related proteins. Current treatment for myasthenia gravis involves symptomatic therapy, immunosuppressive drugs such as corticosteroids, azathioprine, and mycophenolate mofetil, and thymectomy, which is primarily indicated in patients with thymoma or thymic hyperplasia. However, this condition continues to pose significant challenges including an unpredictable and variable disease progression, differing response to individual therapies, and substantial long-term side effects associated with standard treatments (including an increased risk of infections, osteoporosis, and diabetes), underscoring the necessity for a more personalized approach to treatment. Furthermore, about fifteen percent of patients, called “refractory myasthenia gravis patients”, do not respond adequately to standard therapies. In this context, the introduction of molecular therapies has marked a significant advance in myasthenia gravis management. Advances in understanding myasthenia gravis pathogenesis, especially the role of pathogenic antibodies, have driven the development of these biological drugs, which offer more selective, rapid, and safer alternatives to traditional immunosuppressants. This review aims to provide a comprehensive overview of emerging therapeutic strategies targeting specific immune pathways in myasthenia gravis, with a particular focus on preclinical evidence, therapeutic rationale, and clinical translation of B-cell depletion therapies, neonatal Fc receptor inhibitors, and complement inhibitors.

Novel therapies for myasthenia gravis: Translational research from animal models to clinical application / Sorrenti, B., Laurini, C., Bosco, L., Strano, C.M.M., Ratti, A., Falzone, Y.M., Previtali, S.C.. - In: NEURAL REGENERATION RESEARCH. - ISSN 1673-5374. - 21:5(2026), pp. 1834-1848. [10.4103/NRR.NRR-D-24-01011]

Novel therapies for myasthenia gravis: Translational research from animal models to clinical application

Benedetta Sorrenti
Primo
;
Christian Laurini
Secondo
;
Luca Bosco;Camilla Mirella Maria Strano;Adele Ratti;Yuri Matteo Falzone
Penultimo
;
Stefano Carlo Previtali
Ultimo
2026-01-01

Abstract

Myasthenia gravis is a chronic autoimmune disorder that affects the neuromuscular junction leading to fluctuating skeletal muscle fatigability. The majority of myasthenia gravis patients have detectable antibodies in their serum, targeting acetylcholine receptor, muscle-specific kinase, or related proteins. Current treatment for myasthenia gravis involves symptomatic therapy, immunosuppressive drugs such as corticosteroids, azathioprine, and mycophenolate mofetil, and thymectomy, which is primarily indicated in patients with thymoma or thymic hyperplasia. However, this condition continues to pose significant challenges including an unpredictable and variable disease progression, differing response to individual therapies, and substantial long-term side effects associated with standard treatments (including an increased risk of infections, osteoporosis, and diabetes), underscoring the necessity for a more personalized approach to treatment. Furthermore, about fifteen percent of patients, called “refractory myasthenia gravis patients”, do not respond adequately to standard therapies. In this context, the introduction of molecular therapies has marked a significant advance in myasthenia gravis management. Advances in understanding myasthenia gravis pathogenesis, especially the role of pathogenic antibodies, have driven the development of these biological drugs, which offer more selective, rapid, and safer alternatives to traditional immunosuppressants. This review aims to provide a comprehensive overview of emerging therapeutic strategies targeting specific immune pathways in myasthenia gravis, with a particular focus on preclinical evidence, therapeutic rationale, and clinical translation of B-cell depletion therapies, neonatal Fc receptor inhibitors, and complement inhibitors.
2026
Inglese
Shenyang
21
5
1834
1848
15
Pubblicato
https://www.ovid.com/jnls/nrronline/fulltext/10.4103/nrr.nrr-d-24-01011~novel-therapies-for-myasthenia-gravis-translational-research
Esperti anonimi
Internazionale
Goal 3: Good health and well-being
acetylcholine receptor (AChR); animal models; B-cell depletion; biological therapies; complement; immunotherapy; muscle-specific kinase (MuSK); neonatal Fc receptor
No
Novel therapies for myasthenia gravis: Translational research from animal models to clinical application / Sorrenti, B., Laurini, C., Bosco, L., Strano, C.M.M., Ratti, A., Falzone, Y.M., Previtali, S.C.. - In: NEURAL REGENERATION RESEARCH. - ISSN 1673-5374. - 21:5(2026), pp. 1834-1848. [10.4103/NRR.NRR-D-24-01011]
open
7
info:eu-repo/semantics/article
262
Sorrenti, Benedetta; Laurini, Christian; Bosco, Luca; Strano, Camilla Mirella Maria; Ratti, Adele; Falzone, Yuri Matteo; Previtali, Stefano Carlo...espandi
1 Contributo su Rivista::1.1.1 Articolo in rivista - Review
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.11768/204049
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