: Lysosomal Storage Diseases (LSDs) include roughly 70 inherited metabolic disorders, most of which are expressed in an autosomal recessive pattern. These conditions arise from mutations in genes encoding lysosomal enzymes, leading to intracellular buildup of substrates and subsequent lysosomal dysfunction. LSDs can be broadly classified based on the nature of the stored substrate, encompassing Sphingolipidoses, Mucopolysaccharidoses, Lysosomal Glycogen Storage Disease, Oligosaccharidoses, Mucolipidoses, and Lysosomal Proteinoses. Although individually rare, LSDs collectively affect approximately 1 in 5000 live births. They usually manifest in childhood, but adult-onset types are also detected. Clinical manifestations are heterogeneous and may involve the central nervous system, skeletal system, skin, heart, muscles, kidneys, and other organs. Several therapeutic strategies are available for LSDs, including Enzyme Replacement Therapy to restore deficient enzymes, Hematopoietic Stem Cell Transplantation to provide functional donor-derived cells, Substrate Reduction Therapy and pharmacological chaperones to modulate substrate turnover or enhance enzyme stability, alongside symptomatic and supportive treatments. Ongoing research is also exploring gene therapy-based strategies. Current diagnostic criteria remain insufficient for reliable presymptomatic diagnosis, highlighting the need for more sensitive and specific approaches. In this context, untargeted metabolomics is a powerful strategy to investigate pathogenic pathways, identify novel diagnostic and prognostic biomarkers, and uncover potential therapeutic targets. Accordingly, this review provides an overview of LSDs, focusing on untargeted metabolomics studies and their contribution to the discovery of novel biomarkers and previously unrecognised pathogenic mechanisms relevant to diagnostic and therapeutic innovation.
Metabolomic Insights into Lysosomal Storage Diseases: An Untargeted View
Di Carlo, GessicaPrimo
;Tommolini, Maria LuciaSecondo
;Frisco, Alberto;Spalluto, Giorgia;Zucchelli, Mirco;Cufaro, Maria Concetta;Cicalini, Ilaria;Bucci, Ines;Federici, Luca;De Laurenzi, Vincenzo;Pieragostino, DamianaPenultimo
;Rossi, Claudia
Ultimo
2026-01-01
Abstract
: Lysosomal Storage Diseases (LSDs) include roughly 70 inherited metabolic disorders, most of which are expressed in an autosomal recessive pattern. These conditions arise from mutations in genes encoding lysosomal enzymes, leading to intracellular buildup of substrates and subsequent lysosomal dysfunction. LSDs can be broadly classified based on the nature of the stored substrate, encompassing Sphingolipidoses, Mucopolysaccharidoses, Lysosomal Glycogen Storage Disease, Oligosaccharidoses, Mucolipidoses, and Lysosomal Proteinoses. Although individually rare, LSDs collectively affect approximately 1 in 5000 live births. They usually manifest in childhood, but adult-onset types are also detected. Clinical manifestations are heterogeneous and may involve the central nervous system, skeletal system, skin, heart, muscles, kidneys, and other organs. Several therapeutic strategies are available for LSDs, including Enzyme Replacement Therapy to restore deficient enzymes, Hematopoietic Stem Cell Transplantation to provide functional donor-derived cells, Substrate Reduction Therapy and pharmacological chaperones to modulate substrate turnover or enhance enzyme stability, alongside symptomatic and supportive treatments. Ongoing research is also exploring gene therapy-based strategies. Current diagnostic criteria remain insufficient for reliable presymptomatic diagnosis, highlighting the need for more sensitive and specific approaches. In this context, untargeted metabolomics is a powerful strategy to investigate pathogenic pathways, identify novel diagnostic and prognostic biomarkers, and uncover potential therapeutic targets. Accordingly, this review provides an overview of LSDs, focusing on untargeted metabolomics studies and their contribution to the discovery of novel biomarkers and previously unrecognised pathogenic mechanisms relevant to diagnostic and therapeutic innovation.I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.


