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42 Results Found

  • Review
  • Open Access
36 Citations
10,083 Views
28 Pages

Abnormal Sphingolipid World in Inflammation Specific for Lysosomal Storage Diseases and Skin Disorders

  • Marta Moskot,
  • Katarzyna Bocheńska,
  • Joanna Jakóbkiewicz-Banecka,
  • Bogdan Banecki and
  • Magdalena Gabig-Cimińska

Research in recent years has shown that sphingolipids are essential signalling molecules for the proper biological and structural functioning of cells. Long-term studies on the metabolism of sphingolipids have provided evidence for their role in the...

  • Review
  • Open Access
21 Citations
7,466 Views
24 Pages

Gene Therapy of Sphingolipid Metabolic Disorders

  • Alisa A. Shaimardanova,
  • Valeriya V. Solovyeva,
  • Shaza S. Issa and
  • Albert A. Rizvanov

11 February 2023

Sphingolipidoses are defined as a group of rare hereditary diseases resulting from mutations in the genes encoding lysosomal enzymes. This group of lysosomal storage diseases includes more than 10 genetic disorders, including GM1-gangliosidosis, Tay&...

  • Article
  • Open Access
9 Citations
3,135 Views
17 Pages

Altered Sphingolipid Hydrolase Activities and Alpha-Synuclein Level in Late-Onset Schizophrenia

  • Tatiana Usenko,
  • Anastasia Bezrukova,
  • Katerina Basharova,
  • Galina Baydakova,
  • Elena Shagimardanova,
  • Nataliya Blatt,
  • Albert Rizvanov,
  • Oleg Limankin,
  • Maxim Novitskiy and
  • Sofya Pchelina
  • + 16 authors

31 December 2023

Recent data described that patients with lysosomal storage disorders (LSDs) may have clinical schizophrenia (SCZ) features. Disruption of lipid metabolism in SCZ pathogenesis was found. Clinical features of schizophrenia (SCZ) have been demonstrated...

  • Article
  • Open Access
8 Citations
3,555 Views
16 Pages

Rottlerin Stimulates Exosome/Microvesicle Release Via the Increase of Ceramide Levels Mediated by Ampk in an In Vitro Model of Intracellular Lipid Accumulation

  • Yessenia L. Molina,
  • David García-Seisdedos,
  • Bohdan Babiy,
  • Milagros Lerma,
  • Javier Martínez-Botas,
  • María J. Casarejos,
  • María T. Vallejo,
  • Diego Gómez-Coronado,
  • Miguel A. Lasunción and
  • Rebeca Busto
  • + 1 author

Exosomes/microvesicles originate from multivesicular bodies that allow the secretion of endolysosome components out of the cell. In the present work, we investigated the effects of rottlerin, a polyphenol, on exosome/microvesicle secretion in a model...

  • Article
  • Open Access
32 Citations
6,647 Views
14 Pages

Induced Pluripotent Stem Cells Derived from a CLN5 Patient Manifest Phenotypic Characteristics of Neuronal Ceroid Lipofuscinoses

  • Kristiina Uusi-Rauva,
  • Tea Blom,
  • Carina Von Schantz-Fant,
  • Tomas Blom,
  • Anu Jalanko and
  • Aija Kyttälä

Neuronal ceroid lipofuscinoses (NCLs) are autosomal recessive progressive encephalopathies caused by mutations in at least 14 different genes. Despite extensive studies performed in different NCL animal models, the molecular mechanisms underlying neu...

  • Article
  • Open Access
21 Citations
4,241 Views
11 Pages

Impact of Intravenous Trehalose Administration in Patients with Niemann–Pick Disease Types A and B

  • Moein Mobini,
  • Shabnam Radbakhsh,
  • Francyne Kubaski,
  • Peyman Eshraghi,
  • Saba Vakili,
  • Rahim Vakili,
  • Manijeh Khalili,
  • Majid Varesvazirian,
  • Tannaz Jamialahmadi and
  • Amirhossein Sahebkar
  • + 5 authors

4 January 2022

Background and Aims: Niemann–Pick disease (NPD) types A (NPA) and B (NPB) are caused by deficiency of the acid sphingomyelinase enzyme, which is encoded by the SMPD1 gene, resulting in progressive pathogenic accumulation of lipids in tissues. Trehalo...

  • Communication
  • Open Access
41 Citations
6,104 Views
11 Pages

14 April 2020

Sphingolipids represent a class of bioactive lipids that modulate the biophysical properties of biological membranes and play a critical role in cell signal transduction. Multiple studies have demonstrated that sphingolipids control crucial cellular...

  • Review
  • Open Access
36 Citations
6,771 Views
20 Pages

Lysosomal Ceramide Metabolism Disorders: Implications in Parkinson’s Disease

  • Silvia Paciotti,
  • Elisabetta Albi,
  • Lucilla Parnetti and
  • Tommaso Beccari

21 February 2020

Ceramides are a family of bioactive lipids belonging to the class of sphingolipids. Sphingolipidoses are a group of inherited genetic diseases characterized by the unmetabolized sphingolipids and the consequent reduction of ceramide pool in lysosomes...

  • Review
  • Open Access
29 Citations
7,359 Views
23 Pages

Sphingolipid metabolism starts with the biosynthesis of ceramide, a bioactive lipid and the backbone for the biosynthesis of complex sphingolipids such as sphingomyelin and glycosphingolipids. These are degraded back to ceramide and then to sphingosi...

  • Review
  • Open Access
71 Citations
10,611 Views
30 Pages

Gangliosidoses are caused by monogenic defects of a specific hydrolase or an ancillary sphingolipid activator protein essential for a specific step in the catabolism of gangliosides. Such defects in lysosomal function cause a primary accumulation of...

  • Review
  • Open Access
2,795 Views
31 Pages

Sphingolipidoses and Retinal Involvement: A Comprehensive Review

  • Chiara Carrozzi,
  • Daniele Fumi,
  • Davide Fasciolo,
  • Federico Di Tizio,
  • Serena Fragiotta,
  • Mariachiara Di Pippo and
  • Solmaz Abdolrahimzadeh

6 March 2025

Sphingolipidoses are a class of inherited lysosomal storage diseases, characterized by enzymatic deficiencies that impair sphingolipid degradation. This enzymatic malfunction results in the pathological accumulation of sphingolipids within lysosomes,...

  • Review
  • Open Access
1 Citations
2,152 Views
17 Pages

4 June 2025

Neurodegenerative diseases, including Alzheimer’s disease and Parkinson’s disease, are characterized by progressive neuronal loss, leading to cognitive and motor impairments. Although these diseases have distinct clinical manifestations,...

  • Review
  • Open Access
8 Citations
3,836 Views
25 Pages

Potential Role of Sphingolipidoses-Associated Lysosphingolipids in Cancer

  • Patricia Dubot,
  • Leonardo Astudillo,
  • Nicole Therville,
  • Lorry Carrié,
  • Magali Pettazzoni,
  • David Cheillan,
  • Jérôme Stirnemann,
  • Thierry Levade,
  • Nathalie Andrieu-Abadie and
  • Frédérique Sabourdy

5 October 2022

Sphingolipids play a key structural role in cellular membranes and/or act as signaling molecules. Inherited defects of their catabolism lead to lysosomal storage diseases called sphingolipidoses. Although progress has been made toward a better unders...

  • Review
  • Open Access
6 Citations
5,286 Views
26 Pages

Zebra-Sphinx: Modeling Sphingolipidoses in Zebrafish

  • Luca Mignani,
  • Jessica Guerra,
  • Marzia Corli,
  • Davide Capoferri and
  • Marco Presta

Sphingolipidoses are inborn errors of metabolism due to the pathogenic mutation of genes that encode for lysosomal enzymes, transporters, or enzyme cofactors that participate in the sphingolipid catabolism. They represent a subgroup of lysosomal stor...

  • Review
  • Open Access
241 Citations
27,045 Views
37 Pages

A Comprehensive Review: Sphingolipid Metabolism and Implications of Disruption in Sphingolipid Homeostasis

  • Brianna M. Quinville,
  • Natalie M. Deschenes,
  • Alex E. Ryckman and
  • Jagdeep S. Walia

Sphingolipids are a specialized group of lipids essential to the composition of the plasma membrane of many cell types; however, they are primarily localized within the nervous system. The amphipathic properties of sphingolipids enable their particip...

  • Article
  • Open Access
14 Citations
5,727 Views
24 Pages

26 February 2020

The ASAH1 gene encodes acid ceramidase (AC), an enzyme that is implicated in the metabolism of ceramide (Cer). Mutations in the ASAH1 gene cause two different disorders, Farber disease (FD), a rare lysosomal storage disorder, and a rare form of spina...

  • Review
  • Open Access
22 Citations
8,774 Views
16 Pages

24 November 2019

Sphingolipidoses are inherited genetic diseases characterized by the accumulation of glycosphingolipids. Sphingolipidoses (SP), which usually involve the loss of sphingolipid hydrolase function, are of lysosomal origin, and represent an important gro...

  • Article
  • Open Access
1 Citations
1,634 Views
17 Pages

Cultured Macrophage Models for the Investigation of Lysosomal Glucocerebrosidase and Gaucher Disease

  • Max Louwerse,
  • Kateryna O. Bila,
  • Martijn J. C. van der Lienden,
  • Arnout Jan M. de Beaufort,
  • Rolf G. Boot,
  • Marta Artola,
  • Marco van Eijk and
  • Johannes M. F. G. Aerts

Macrophages are specialised cells that degrade a range of substrates during their lifetime. In inherited lysosomal storage disorders, particularly the sphingolipidoses, macrophages transform into storage cells and contribute to pathology. An appropri...

  • Review
  • Open Access
18 Citations
6,386 Views
37 Pages

Lysosomal storage disorders (LSDs) are predominantly very rare recessive autosomal neurodegenerative diseases.Sphingolipidoses, a sub-group of LSDs, result from defects in lysosomal enzymes involved in sphingolipid catabolism, and feature disrupted s...

  • Review
  • Open Access
82 Citations
9,260 Views
19 Pages

The Emerging and Diverse Roles of Bis(monoacylglycero) Phosphate Lipids in Cellular Physiology and Disease

  • Megan R. Showalter,
  • Anastasia L. Berg,
  • Alexander Nagourney,
  • Hailey Heil,
  • Kermit L. Carraway and
  • Oliver Fiehn

29 October 2020

Although understudied relative to many phospholipids, accumulating evidence suggests that bis(monoacylglycero)phosphate (BMP) is an important class of regulatory lipid that plays key roles in lysosomal integrity and function. BMPs are rare in most ma...

  • Review
  • Open Access
18 Citations
9,813 Views
14 Pages

Lysosomal storage disorders (LSDs) are characterized by an accumulation of various substances, such as sphingolipids, mucopolysaccharides, and oligosaccharides. The LSD enzymes responsible for the catabolism are active at acidic pH in the lysosomal c...

  • Article
  • Open Access
3 Citations
2,967 Views
15 Pages

Modulation of Dietary Choline Uptake in a Mouse Model of Acid Sphingomyelinase Deficiency

  • Ángel Gaudioso,
  • Pilar Moreno-Huguet,
  • Josefina Casas,
  • Edward H. Schuchman and
  • María Dolores Ledesma

Acid sphingomyelinase deficiency (ASMD) is a lysosomal storage disorder caused by mutations in the gene-encoding acid sphingomyelinase (ASM). ASMD impacts peripheral organs in all patients, including the liver and spleen. The infantile and chronic ne...

  • Review
  • Open Access
3 Citations
3,871 Views
17 Pages

Multi-Modality Cardiovascular Imaging Assessment in Fabry Disease

  • Ashwin Roy,
  • Mohamed Mansour,
  • David Oxborough,
  • Tarekegn Geberhiwot and
  • Richard Steeds

2 February 2022

Fabry disease (FD) is a rare X-linked lysosomal storage disorder manifesting as progressive multi-organ accumulation of sphingolipids due to deficiency in the enzyme α-Galactosidase A. Sphingolipid accumulation can take place in all cardiac cel...

  • Review
  • Open Access
14 Citations
4,113 Views
16 Pages

Atherosclerosis in Fabry Disease—A Contemporary Review

  • Ashwin Roy,
  • Hamza Umar,
  • Antonio Ochoa-Ferraro,
  • Adrian Warfield,
  • Nigel Lewis,
  • Tarekegn Geberhiwot and
  • Richard Steeds

27 September 2021

Fabry disease (FD) is a lysosomal storage disorder characterised by a deficiency in the enzyme α-galactosidase A resulting in sphingolipid deposition which causes progressive cardiac, renal, and cerebral manifestations. The case illustrates a patient...

  • Review
  • Open Access
11 Citations
7,582 Views
18 Pages

Gaucher’s disease (GD) is the most frequently inherited lysosomal storage disease, presenting both visceral and neurologic symptoms. Mutations in acid β-glucocerebrosidase disrupt the sphingolipid catabolic pathway promoting glucosylceramide (GlcCer)...

  • Article
  • Open Access
12 Citations
8,151 Views
21 Pages

A Hyphenated Technique based on High-Performance Thin Layer Chromatography for Determining Neutral Sphingolipids: A Proof of Concept

  • Andrés Domínguez,
  • Carmen Jarne,
  • Vicente L. Cebolla,
  • Javier Galbán,
  • María Savirón,
  • Jesús Orduna,
  • Luis Membrado,
  • María-Pilar Lapieza,
  • Elena Romero and
  • Rosa Garriga
  • + 2 authors

Hyphenated HPTLC has been used to analyze several neutral sphingolipids acting as lysosomal storage disease (LSD) biomarkers. Automated multiple development (AMD) provides separation of lipid peaks, which are detected and quantified using fluorescenc...

  • Review
  • Open Access
19 Citations
4,314 Views
18 Pages

10 May 2022

N-terminal nucleophile (Ntn)-hydrolases catalyze the cleavage of amide bonds in a variety of macromolecules, including the peptide bond in proteins, the amide bond in N-linked protein glycosylation, and the amide bond linking a fatty acid to sphingos...

  • Article
  • Open Access
4 Citations
4,527 Views
21 Pages

Iron Limitation Restores Autophagy and Increases Lifespan in the Yeast Model of Niemann–Pick Type C1

  • Telma S. Martins,
  • Rafaela S. Costa,
  • Rita Vilaça,
  • Carolina Lemos,
  • Vitor Teixeira,
  • Clara Pereira and
  • Vítor Costa

Niemann–Pick type C1 (NPC1) is an endolysosomal transmembrane protein involved in the export of cholesterol and sphingolipids to other cellular compartments such as the endoplasmic reticulum and plasma membrane. NPC1 loss of function is the maj...

  • Review
  • Open Access
12 Citations
5,323 Views
11 Pages

Cardiac Magnetic Resonance in Fabry Disease: Morphological, Functional, and Tissue Features

  • Giovanni Donato Aquaro,
  • Carmelo De Gori,
  • Lorenzo Faggioni,
  • Maria Luisa Parisella,
  • Giacomo Aringhieri,
  • Dania Cioni,
  • Riccardo Lencioni and
  • Emanuele Neri

1 November 2022

Fabry disease (FD) is an X-linked inheritable storage disease caused by a deficiency of alpha-galactosidase causing lysosomal overload of sphingolipids. FD cardiomyopathy is characterized by left ventricular (LV) hypertrophy and should be considered...

  • Article
  • Open Access
13 Citations
4,389 Views
13 Pages

Different Trafficking Phenotypes of Niemann-Pick C1 Gene Mutations Correlate with Various Alterations in Lipid Storage, Membrane Composition and Miglustat Amenability

  • Graham Brogden,
  • Hadeel Shammas,
  • Friederike Walters,
  • Katia Maalouf,
  • Anibh M. Das,
  • Hassan Y. Naim and
  • Sandra Rizk

Niemann-Pick Type C (NPC) is an autosomal recessive lysosomal storage disease leading to progressive neurodegeneration. Mutations in the NPC1 gene, which accounts for 95% of the cases, lead to a defect in intra-lysosomal trafficking of cholesterol an...

  • Review
  • Open Access
18 Citations
6,619 Views
18 Pages

LRRK2 and Lipid Pathways: Implications for Parkinson’s Disease

  • Jasmin Galper,
  • Woojin S. Kim and
  • Nicolas Dzamko

30 October 2022

Genetic alterations in the LRRK2 gene, encoding leucine-rich repeat kinase 2, are a common risk factor for Parkinson’s disease. How LRRK2 alterations lead to cell pathology is an area of ongoing investigation, however, multiple lines of evidenc...

  • Article
  • Open Access
2,562 Views
24 Pages

Lectin-Based Substrate Detection in Fabry Disease Using the Gb3-Binding Lectins StxB and LecA

  • Serap Elçin-Guinot,
  • Simon Lagies,
  • Yoav Avi-Guy,
  • Daniela Neugebauer,
  • Tobias B. Huber,
  • Christoph Schell,
  • Bernd Kammerer and
  • Winfried Römer

Fabry disease, the second most common lysosomal storage disorder, is caused by a deficiency of α-galactosidase A (α-Gal A), which leads to an accumulation of glycosphingolipids (GSL), mainly globotriaosylceramide (also known as Gb3). This...

  • Article
  • Open Access
12 Citations
4,627 Views
13 Pages

NPC1 Deficiency in Mice is Associated with Fetal Growth Restriction, Neonatal Lethality and Abnormal Lung Pathology

  • Jorge L. Rodriguez-Gil,
  • Dawn E. Watkins-Chow,
  • Laura L. Baxter,
  • Tadafumi Yokoyama,
  • Patricia M. Zerfas,
  • Matthew F. Starost,
  • William A. Gahl,
  • May Christine V. Malicdan,
  • Forbes D. Porter and
  • William J. Pavan
  • + 1 author

19 December 2019

The rare lysosomal storage disorder Niemann-Pick disease type C1 (NPC1) arises from mutation of NPC1, which encodes a lysosomal transmembrane protein essential for normal transport and trafficking of cholesterol and sphingolipids. NPC1 is highly hete...

  • Article
  • Open Access
10 Citations
3,315 Views
12 Pages

A 20-Year Longitudinal Study of Plasma Chitotriosidase Activity in Treated Gaucher Disease Type 1 and 3 Patients—A Qualitative and Quantitative Approach

  • Paulina Szymańska-Rożek,
  • Barbara Czartoryska,
  • Grazina Kleinotiene,
  • Patryk Lipiński,
  • Anna Tylki-Szymańska and
  • Agnieszka Ługowska

24 February 2023

Chitotriosidase is an enzyme produced and secreted in large amounts by activated macrophages, especially macrophages loaded with phagocytozed glycosphingolipid in Gaucher disease. Macrophages phagocytose decayed blood cells that contain a lot of sphi...

  • Review
  • Open Access
124 Views
6 Pages

Kardiomyopathie bei Morbus Fabry

  • Simone Müller,
  • Felix C. Tanner,
  • Christiane Gruner,
  • Frank Ruschitzka,
  • Andreas Flammer and
  • Albina Nowak

19 September 2018

Fabry disease – a rare but important cause of left ventricular hypertrophy. Fabry disease (synonym: Morbus Fabry, Anderson Fabry disease) is an Xlinked lysosomal storage disease due to a deficient activity of alpha-galactosidase A. This leads to path...

  • Review
  • Open Access
13 Citations
6,797 Views
6 Pages

Lysosomal Storage Disorders and Malignancy

  • Gregory M. Pastores and
  • Derralynn A. Hughes

27 February 2017

Lysosomal storage disorders (LSDs) are infrequent to rare conditions caused by mutations that lead to a disruption in the usual sequential degradation of macromolecules or their transit within the cell. Gaucher disease (GD), a lipidosis, is among the...

  • Article
  • Open Access
6 Citations
4,400 Views
21 Pages

Sphingomyelin phosphodiesterase (SMPD1) is a key enzyme in the sphingolipid metabolism. Genetic SMPD1 variants have been related to the Niemann-Pick lysosomal storage disorder, which has different degrees of phenotypic severity ranging from severe sy...

  • Article
  • Open Access
3 Citations
1,377 Views
22 Pages

Targeting Glucosylceramide Synthase: Innovative Drug Repurposing Strategies for Lysosomal Diseases

  • Giorgia Canini,
  • Elena Mazzinelli,
  • Giuseppina Nocca,
  • Wanda Lattanzi and
  • Alessandro Arcovito

28 February 2025

Sphingolipidoses, a subgroup of lysosomal storage diseases (LSDs), are rare and debilitating disorders caused by defects in sphingolipid metabolism. Despite advancements in treatment, therapeutic options remain limited. Miglustat, a glucosylceramide...

  • Review
  • Open Access
26 Citations
4,826 Views
29 Pages

Anderson-Fabry disease (AFD), a genetic disorder caused by mutations in the α-galactosidase-A (GLA) gene, disrupts lysosomal function, leading to vascular complications. The accumulation of globotriaosylceramide (Gb3) in arterial walls triggers...

  • Article
  • Open Access
11 Citations
4,811 Views
14 Pages

Differential Proteomics Reveals miR-155 as a Novel Indicator of Liver and Spleen Pathology in the Symptomatic Niemann-Pick Disease, Type C1 Mouse Model

  • Melissa R. Pergande,
  • Antony Cougnoux,
  • Rathnayake A. C. Rathnayake,
  • Forbes D. Porter and
  • Stephanie M. Cologna

Niemann-Pick disease, type C1 (NPC1) is a rare, autosomal recessive, lipid storage disorder caused by mutations in NPC1. As a result, there is accumulation of unesterified cholesterol and sphingolipids in the late endosomal/lysosomal system. Clinical...

  • Review
  • Open Access
890 Views
26 Pages

Background/Objectives: Fabry disease is an X-linked lysosomal storage disorder. It is characterised by impaired metabolism of glycosphingolipids whose accumulation causes irreversible organ damage and life-threatening complications. Genotype–ph...

  • Article
  • Open Access
1 Citations
1,292 Views
22 Pages

Gene Expression Profile of the Cerebral Cortex of Niemann-Pick Disease Type C Mutant Mice

  • Iris Valeria Servín-Muñoz,
  • Daniel Ortuño-Sahagún,
  • María Paulina Reyes-Mata,
  • Christian Griñán-Ferré,
  • Mercè Pallàs and
  • Celia González-Castillo

24 July 2025

Background/Objectives: Niemann-Pick disease Type C (NPC) represents an autosomal recessive disorder with an incidence rate of 1 in 100,000 live births that belongs to the lysosomal storage diseases (LSDs). NPC is characterized by the abnormal accumul...