Paolo Valera

Ion Mobility QTOF-MS Untargeted Lipidomics of Human Serum Reveals a Metabolic Fingerprint for GNE Myopathy

Manis, Cristina;Casula, Mattia;Caboni, Pierluigi
2024-01-01

Abstract

GNE myopathy, also known as hereditary inclusion body myopathy (HIBM), is a rare genetic muscle disorder marked by a gradual onset of muscle weakness in young adults. GNE myopathy (GNEM) is caused by bi-allelic variants in the UDP-N-acetylglucosamine 2-epimerase (UDP-GlcNAc 2-epimerase)/N-acetylmannosamine kinase (ManNAc kinase) gene (GNE), clinically resulting in the loss of ambulation within 10–20 years from the onset of the initial symptoms. The disease’s mechanism is poorly understood and non-invasive biomarkers are lacking, hindering effective therapy development. Based on the available evidence, we employed a lipidomic approach to study the serum lipid profile of GNE patients. The multivariate statistical analysis revealed a downregulation of carnitines, as well as of lysophosphatidylcholines, in sera samples derived from GNEM patients. Furthermore, we identified lower levels of sphingomyelins and, concomitantly, high levels of ceramides in serum samples from GNEM patients when compared to control samples derived from healthy donors. Moreover, the GNEM serum samples showed the upregulation of Krebs cycle intermediates, in addition to a decrease in oxaloacetic acid. The correlated data gathered in this study can offer a promising diagnostic panel of complex lipids and polar metabolites that can be used in clinic for GNEM in terms of a metabolic fingerprint measurable in a minimally invasive manner.
2024
2024
Inglese
29
21
5211
17
Esperti anonimi
internazionale
scientifica
GNE myopathy; HIBM; Nonaka myopathy; GNEM biomarkers; carnitines; lysophosphocholines; ceramides
Manis, Cristina; Casula, Mattia; Roos, Andreas; Hentschel, Andreas; Vorgerd, Matthias; Pogoryelova, Oksana; Derksen, Alexa; Spendiff, Sally; Lochmülle ...espandi
1.1 Articolo in rivista
info:eu-repo/semantics/article
1 Contributo su Rivista::1.1 Articolo in rivista
262
10
open
   Novel therapeutic approaches to target GNE Myopathy
   ProDGNE
   Fundao para a Cincia e a Tecnologia, I.P.
   EJP RD - Programa Europeu Conjunto para as Doenças Raras 2020
   EJPRD/0001/2020
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