Injectable borax-loaded alginate hydrogels reduce muscle atrophy, modulate inflammation, and promote neuroprotection in the SOD1G93A mouse model of ALS through mechanisms involving IGF-Akt-mTOR signaling

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Autores de IIS La Fe

Participantes ajenos a IIS La Fe

  • Rodriguez-Romano, A
  • Gonzalez-Valdivieso, J
  • Moreno-Martinez, L
  • Osta, R
  • Rico, P

Grupos

Abstract

Amyotrophic Lateral Sclerosis (ALS) is a prevalent condition characterized by motor neuron loss and skeletal muscle paralysis. Despite being associated to mutations in over 40 genes, its etiology remains elusive without a cure or effective treatment. ALS, historically considered a motor neuron disease, is defined today as a multisystem disorder involving non-neuronal cell types, including early muscle pathology independent of motor neuron degeneration (dying back hypothesis), thus skeletal muscle actively contributes to disease pathology, making it a viable therapeutic target for ALS. Our previous research has shown that boron transporter NaBC1 (encoded by the SLC4A11 gene), after activation co-localizes with integrins and growth factor receptors synergistically enhancing muscle repair. Here we investigate the effects of injectable alginate-based hydrogels for controlled local borax release in Amyotrophic Lateral Sclerosis muscle. Treated mice showed improved motor function, prolonged survival, and activation of essential muscle metabolic pathways, leading to enhanced muscle repair and reduced atrophy and inflammation. Interestingly, local muscle repair activation provided retrograde neuroprotection by preserving motor neurons and reducing neuro-inflammation. This study highlights the role of muscle tissue in ALS pathology, supporting its targeting with NaBC1-based therapies for muscle regeneration.

Copyright © 2025 The Authors. Published by Elsevier B.V. All rights reserved.

Datos de la publicación

ISSN/ISSNe:
0141-8130, 1879-0003

International Journal of Biological Macromolecules  ELSEVIER

Tipo:
Article
Páginas:
145645-145645
PubMed:
40602557
Factor de Impacto:
1,100 SCImago
Cuartil:
Q1 SCImago

Citas Recibidas en Web of Science: 2

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Keywords

  • Borax; ALS; Muscle regeneration; Alginate hydrogel

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