Literature DB >> 34411705

Prolonged NCX activation prevents SOD1 accumulation, reduces neuroinflammation, ameliorates motor behavior and prolongs survival in a ALS mouse model.

Serenella Anzilotti1, Valeria Valsecchi2, Paola Brancaccio2, Natascia Guida1, Giusy Laudati2, Valentina Tedeschi2, Tiziana Petrozziello2, Francesco Frecentese3, Elisa Magli3, Brenda Hassler2, Ornella Cuomo2, Luigi Formisano2, Agnese Secondo2, Lucio Annunziato1, Giuseppe Pignataro4.   

Abstract

Imbalance in cellular ionic homeostasis is a hallmark of several neurodegenerative diseases including Amyotrophic Lateral Sclerosis (ALS). Sodium-calcium exchanger (NCX) is a membrane antiporter that, operating in a bidirectional way, couples the exchange of Ca2+ and Na + ions in neurons and glial cells, thus controlling the intracellular homeostasis of these ions. Among the three NCX genes, NCX1 and NCX2 are widely expressed within the CNS, while NCX3 is present only in skeletal muscles and at lower levels of expression in selected brain regions. ALS mice showed a reduction in the expression and activity of NCX1 and NCX2 consistent with disease progression, therefore we aimed to investigate their role in ALS pathophysiology. Notably, we demonstrated that the pharmacological activation of NCX1 and NCX2 by the prolonged treatment of SOD1G93A mice with the newly synthesized compound neurounina: (1) prevented the reduction in NCX activity observed in spinal cord; (2) preserved motor neurons survival in the ventral spinal horn of SOD1G93A mice; (3) prevented the spinal cord accumulation of misfolded SOD1; (4) reduced astroglia and microglia activation and spared the resident microglia cells in the spinal cord; (5) improved the lifespan and mitigated motor symptoms of ALS mice. The present study highlights the significant role of NCX1 and NCX2 in the pathophysiology of this neurodegenerative disorder and paves the way for the design of a new pharmacological approach for ALS.
Copyright © 2021. Published by Elsevier Inc.

Entities:  

Keywords:  ALS; Misfolded SOD1; Motor neurons; Na+/Ca2+ exchanger; Neurounina; SOD1(G93A) mice

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Year:  2021        PMID: 34411705     DOI: 10.1016/j.nbd.2021.105480

Source DB:  PubMed          Journal:  Neurobiol Dis        ISSN: 0969-9961            Impact factor:   5.996


  3 in total

Review 1.  SOD1 in ALS: Taking Stock in Pathogenic Mechanisms and the Role of Glial and Muscle Cells.

Authors:  Caterina Peggion; Valeria Scalcon; Maria Lina Massimino; Kelly Nies; Raffaele Lopreiato; Maria Pia Rigobello; Alessandro Bertoli
Journal:  Antioxidants (Basel)       Date:  2022-03-23

2.  Preconditioning in hypoxic-ischemic neonate mice triggers Na+-Ca2+ exchanger-dependent neurogenesis.

Authors:  P Brancaccio; S Anzilotti; O Cuomo; A Vinciguerra; M Campanile; A Herchuelz; S Amoroso; L Annunziato; G Pignataro
Journal:  Cell Death Discov       Date:  2022-07-13

3.  Sodium-Calcium Exchanger 2: A Pivotal Role in Oxaliplatin Induced Peripheral Neurotoxicity and Axonal Damage?

Authors:  Elisa Ballarini; Alessio Malacrida; Virginia Rodriguez-Menendez; Eleonora Pozzi; Annalisa Canta; Alessia Chiorazzi; Laura Monza; Sara Semperboni; Cristina Meregalli; Valentina Alda Carozzi; Maryamsadat Hashemi; Gabriella Nicolini; Arianna Scuteri; Stephen N Housley; Guido Cavaletti; Paola Alberti
Journal:  Int J Mol Sci       Date:  2022-09-02       Impact factor: 6.208

  3 in total

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