Severe neurological involvement characterizes Niemann Pick disease (NPD) type A, an inherited disorder caused by loss of function mutations in the gene encoding acid sphingomyelinase (ASM). Mice lacking ASM, which mimic NPD type A, have provided important insights into the aberrant brain phenotypes induced by ASM deficiency. For example, lipid alterations, including the accumulation of sphingolipids, affect the membranes of different subcellular compartments of neurons and glial cells, leading to anomalies in signalling pathways, neuronal polarization, calcium homeostasis, synaptic plasticity, myelin production or immune response. These findings contribute to our understanding of the overall role of sphingolipids and their metabolic enzymes in brain physiology, and pave the way to design and test new therapeutic strategies for type A NPD and other neurodegenerative disorders. Some of these have already been tested in mice lacking ASM with promising results.

Brain pathology in Niemann Pick disease type A : insights from the acid sphingomyelinase knockout mice / M.D. Ledesma, A. Prinetti, S. Sonnino, E.H. Schuchman. - In: JOURNAL OF NEUROCHEMISTRY. - ISSN 0022-3042. - 116:5(2011), pp. 779-788. [10.1111/j.1471-4159.2010.07034.x]

Brain pathology in Niemann Pick disease type A : insights from the acid sphingomyelinase knockout mice

A. Prinetti
Secondo
;
S. Sonnino
Penultimo
;
2011

Abstract

Severe neurological involvement characterizes Niemann Pick disease (NPD) type A, an inherited disorder caused by loss of function mutations in the gene encoding acid sphingomyelinase (ASM). Mice lacking ASM, which mimic NPD type A, have provided important insights into the aberrant brain phenotypes induced by ASM deficiency. For example, lipid alterations, including the accumulation of sphingolipids, affect the membranes of different subcellular compartments of neurons and glial cells, leading to anomalies in signalling pathways, neuronal polarization, calcium homeostasis, synaptic plasticity, myelin production or immune response. These findings contribute to our understanding of the overall role of sphingolipids and their metabolic enzymes in brain physiology, and pave the way to design and test new therapeutic strategies for type A NPD and other neurodegenerative disorders. Some of these have already been tested in mice lacking ASM with promising results.
English
acid sphingomyelinase ; glia ; neurons ; Niemann Pick disease type A ; sphingolipids ; storage diseases
Settore BIO/10 - Biochimica
Articolo
Sì, ma tipo non specificato
2011
116
5
779
788
Pubblicato
Periodico con rilevanza internazionale
info:eu-repo/semantics/article
Brain pathology in Niemann Pick disease type A : insights from the acid sphingomyelinase knockout mice / M.D. Ledesma, A. Prinetti, S. Sonnino, E.H. Schuchman. - In: JOURNAL OF NEUROCHEMISTRY. - ISSN 0022-3042. - 116:5(2011), pp. 779-788. [10.1111/j.1471-4159.2010.07034.x]
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M.D. Ledesma, A. Prinetti, S. Sonnino, E.H. Schuchman
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/164000
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