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2000
Volume 6, Issue 1
  • ISSN: 1574-8898
  • E-ISSN: 2212-3954

Abstract

Genetic mutations that cause specific lysosomal protein deficiencies account for more than 45 Lysosomal Storage Diseases (LSDs), mostly pre-adult disorders which are associated with neurological symptoms and mental retardation. Interestingly, such diseases are often characterized by intracellular deposition and protein aggregation, events also found in age-related neurodegenerative diseases. During the past twenty years, different approaches have been introduced for the treatment of these disorders, several of which are now in routine clinical use or clinical trials. Among them, enzyme replacement therapy (ERT) represented a major progress. However, the usefulness of ERT is limited due to the fact that enzyme distribution is insufficient and treatment costs are very high. A further novel therapeutic option for LSDs is based on the use of small molecules, that can either inhibit a key enzyme which is responsible for substrate synthesis (substrate reduction) or act as a chaperone to increase the residual activity of the lysosomal enzyme (pharmacological chaperones). In addition recently various gene therapy approaches have been developed, mostly based on adeno-associated and lentiviral vectors, and strategies based on stem cells administration are beginning their route. This review provides an update of the status of research on LSDs therapeutic approaches, including recent patents in the field.

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/content/journals/prn/10.2174/157488911794079127
2011-01-01
2025-09-05
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  • Article Type:
    Research Article
Keyword(s): AAV-sphingomielinase; acid glucosidase; acid-labile; adeno-associated-virus (AAV); Affinity; albumin; Alzheimer's; anterograde transport; arylsulfatase; autophagosome-lysosome fusion; autosomal recessive manner; binding receptors; bioavailability; Biomarin; biosafety; blood-brain barrier (BBB); bone marrow transplantation; bone marrow transplantation (BMT); carbohydrate; cartilage; central nervous system (CNS); chimeric polypeptides; Chinese Hamster Ovary (CHO); clinical manifestations; CSF; dexamethasone; dextran; endosomal-lysosomal pathway; endosperm; enzyme activators; enzyme biodistribution; enzyme delivery; Enzyme Replacement Therapy; enzyme replacement therapy; enzyme targeting; Fabry disease; Gaucher disease; GENE THERAPY; gene therapy; glucocerebrosidase; glucocorticosteroid; glucosidase; glucuronidase; glycosaminoglycan; glycosylated; Golgi; heart; hereditary; homeostasis; homologous recombination events; iduronidase injections; immune-mediated problems; insulin; intracranial injections; isolation; ligand; lungs; lysosomal hydrolases; lysosomal storage disorders; Lysosomes; macroporous spherical; mannose 6-phosphate receptors; mannose-rich oligosaccharides; mesenchymal stem cells (MSCs); metabolic cross correction; metabolic cross-correction; microglia; mucopolysaccharidoses (MPS); multisystem disorder; neurodegeneration; neurodegenerative diseases; neurons; Niemann-Pick disease; non-immunoglobulin polypeptide; orphan drug; Parkinson's diseases; pathogenic mechanisms; pathology; peripheral nervous systems; pharmacological chaperone therapy; pharmacological chaperone therapy (PCT); phosphoglycerate kinase; phosphorylation of proteins; Plantechno; plexus choroids; polyethylene glycol; polyglycolic acid; polymer conjugates; polypeptide; polyvinylpyrrolidone; Pompe disease; protein glycosylation; protein phosphorylation; proteolytic enzyme; proteostasis; rationale; replication; retinal diseases; secretory cells; sialylation modification; skeleton; solubility; sortilin; stem cells; storage vacuoles; substrate reduction therapy; sulfatase modifying factor 1; thiol-reactive group
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