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Metabolic Profile and Pathological Alterations in the Muscle of Patients with Early-Stage Amyotrophic Lateral Sclerosis.
Lanznaster, Débora; Bruno, Clément; Bourgeais, Jérôme; Emond, Patrick; Zemmoura, Ilyess; Lefèvre, Antoine; Reynier, Pascal; Eymieux, Sébastien; Blanchard, Emmanuelle; Vourc'h, Patrick; Andres, Christian R; Bakkouche, Salah Eddine; Herault, Olivier; Favard, Luc; Corcia, Philippe; Blasco, Hélène.
Affiliation
  • Lanznaster D; UMR 1253, iBrain, Université de Tours, INSERM, 37000 Tours, France.
  • Bruno C; UMR 1253, iBrain, Université de Tours, INSERM, 37000 Tours, France.
  • Bourgeais J; Service de Biochimie et Biologie Moléculaire, CHU de Tours, 37000 Tours, France.
  • Emond P; CNRS ERL7001, EA 7501 GICC, Université de Tours, 37000 Tours, France.
  • Zemmoura I; UMR 1253, iBrain, Université de Tours, INSERM, 37000 Tours, France.
  • Lefèvre A; Service de Médecine Nucléaire In Vitro, CHU de Tours, 37000 Tours, France.
  • Reynier P; UMR 1253, iBrain, Université de Tours, INSERM, 37000 Tours, France.
  • Eymieux S; Service de Neurochirurgie, CHU de Tours, 37000 Tours, France.
  • Blanchard E; UMR 1253, iBrain, Université de Tours, INSERM, 37000 Tours, France.
  • Vourc'h P; Service de Biochimie et Biologie Moléculaire, CHU d'Angers, 49000 Angers, France.
  • Andres CR; Mitovasc-Mitolab, UMR CNRS6015-INSERM1083, 49000 Angers, France.
  • Bakkouche SE; Plateforme IBiSA de Microscopie Electronique, Université de Tours et CHU de Tours, 37000 Tours, France.
  • Herault O; INSERM U1259, Université de Tours, 37000 Tours, France.
  • Favard L; Plateforme IBiSA de Microscopie Electronique, Université de Tours et CHU de Tours, 37000 Tours, France.
  • Corcia P; INSERM U1259, Université de Tours, 37000 Tours, France.
  • Blasco H; UMR 1253, iBrain, Université de Tours, INSERM, 37000 Tours, France.
Biomedicines ; 10(6)2022 Jun 02.
Article in En | MEDLINE | ID: mdl-35740329
ABSTRACT
Diverse biomarkers and pathological alterations have been found in muscle of patients with Amyotrophic lateral sclerosis (ALS), but the relation between such alterations and dysfunction in energetic metabolism remains to be investigated. We established the metabolome of muscle and serum of ALS patients and correlated these findings with the clinical status and pathological alterations observed in the muscle. We obtained data from 20 controls and 17 ALS patients (disease duration 9.4 ± 6.8 months). Multivariate metabolomics analysis identified a distinct serum metabolome for ALS compared to controls (p-CV-ANOVA < 0.035) and revealed an excellent discriminant profile for muscle metabolome (p-CV-ANOVA < 0.0012). Citramalate was discriminant for both muscle and serum. High lauroylcarnitine levels in muscle were associated with low Forced Vital Capacity. Transcriptomics analysis of key antioxidant enzymes showed an upregulation of SOD3 (p = 0.0017) and GLRX2(1) (p = 0.0022) in ALS muscle. Analysis of mitochondrial enzymatic activity in muscle revealed higher complex II/CS (p = 0.04) and lower LDH (p = 0.03) activity in ALS than in controls. Our study showed, for the first time, a global dysfunction in the muscle of early-stage ALS patients. Furthermore, we identified novel metabolites to be employed as biomarkers for diagnosis and prognosis of ALS patients.
Key words

Full text: 1 Collection: 01-internacional Database: MEDLINE Type of study: Prognostic_studies Language: En Journal: Biomedicines Year: 2022 Type: Article Affiliation country: France

Full text: 1 Collection: 01-internacional Database: MEDLINE Type of study: Prognostic_studies Language: En Journal: Biomedicines Year: 2022 Type: Article Affiliation country: France