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RSS FeedsIJMS, Vol. 23, Pages 11724: Pathogenic Roles of Heparan Sulfate and Its Use as a Biomarker in Mucopolysaccharidoses (International Journal of Molecular Sciences)

 
 

3 october 2022 14:36:05

 
IJMS, Vol. 23, Pages 11724: Pathogenic Roles of Heparan Sulfate and Its Use as a Biomarker in Mucopolysaccharidoses (International Journal of Molecular Sciences)
 


Heparan sulfate (HS) is an essential glycosaminoglycan (GAG) as a component of proteoglycans, which are present on the cell surface and in the extracellular matrix. HS-containing proteoglycans not only function as structural constituents of the basal lamina but also play versatile roles in various physiological processes, including cell signaling and organ development. Thus, inherited mutations of genes associated with the biosynthesis or degradation of HS can cause various diseases, particularly those involving the bones and central nervous system (CNS). Mucopolysaccharidoses (MPSs) are a group of lysosomal storage disorders involving GAG accumulation throughout the body caused by a deficiency of GAG-degrading enzymes. GAGs are stored differently in different types of MPSs. Particularly, HS deposition is observed in patients with MPS types I, II, III, and VII, all which involve progressive neuropathy with multiple CNS system symptoms. While therapies are available for certain symptoms in some types of MPSs, significant unmet medical needs remain, such as neurocognitive impairment. This review presents recent knowledge on the pathophysiological roles of HS focusing on the pathogenesis of MPSs. We also discuss the possible use and significance of HS as a biomarker for disease severity and therapeutic response in MPSs.


 
96 viewsCategory: Biochemistry, Biophysics, Molecular Biology
 
IJMS, Vol. 23, Pages 11727: Enhanced Hydrogen Evolution Reactivity of T’-Phase Tungsten Dichalcogenides (WS2, WSe2, and WTe2) Materials: A DFT Study (International Journal of Molecular Sciences)
IJMS, Vol. 23, Pages 11729: Early Life Stress Affects Bdnf Regulation: A Role for Exercise Interventions (International Journal of Molecular Sciences)
 
 
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