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result(s) for
"Spongy degeneration of the brain"
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The natural history of Canavan disease: 23 new cases and comparison with patients from literature
by
Kohlschütter, Alfried
,
Guder, Philipp
,
Eichler, Florian S.
in
Amidohydrolases - genetics
,
Aspartoacylase deficiency
,
Canavan disease
2021
Background
Canavan disease (CD, MIM # 271900) is a rare and devastating leukodystrophy of early childhood. To identify clinical features that could serve as endpoints for treatment trials, the clinical course of CD was studied retrospectively and prospectively in 23 CD patients. Results were compared with data of CD patients reported in three prior large series. Kaplan Meier survival analysis including log rank test was performed for pooled data of 82 CD patients (study cohort and literature patients).
Results
Onset of symptoms was between 0 and 6 months. Psychomotor development of patients was limited to abilities that are usually gained within the first year of life. Macrocephaly became apparent between 4 and 18 months of age. Seizure frequency was highest towards the end of the first decade. Ethnic background was more diverse than in studies previously reported. A CD severity score with assessment of 11 symptoms and abilities was developed.
Conclusions
Early hallmarks of CD are severe psychomotor disability and macrocephaly that develop within the first 18 months of life. While rare in the first year of life, seizures increase in frequency over time in most patients. CD occurs more frequently outside Ashkenazi Jewish communities than previously reported. Concordance of phenotypes between siblings but not patients with identical
ASPA
mutations suggest the influence of yet unknown modifiers. A CD severity score may allow for assessment of CD disease severity both retrospectively and prospectively.
Journal Article
Knock-out mouse for Canavan disease: a model for gene transfer to the central nervous system
by
Ezell, Ed L.
,
Campbell, Gerald A.
,
Matalon, Reuben
in
Amidohydrolases - genetics
,
Animals
,
aspartoacylase deficiency
2000
Background Canavan disease (CD) is an autosomal recessive leukodystrophy characterized by deficiency of aspartoacylase (ASPA) and increased levels of N‐acetylaspartic acid (NAA) in brain and body fluids, severe mental retardation and early death. Gene therapy has been attempted in a number of children with CD. The lack of an animal model has been a limiting factor in developing vectors for the treatment of CD. This paper reports the successful creation of a knock‐out mouse for Canavan disease that can be used for gene transfer. Methods Genomic library λ knock‐out shuttle (λKOS) was screened and a specific pKOS/Aspa clone was isolated and used to create a plasmid with 10 base pair (bp) deletion of exon four of the murine aspa. Following linearization, the plasmid was electroporated to ES cells. Correctly targeted ES clones were identified following positive and negative selection and confirmed by Southern analysis. Chimeras were generated by injection of ES cells to blastocysts. Germ line transmission was achieved by the birth of heterozygous mice as confirmed by Southern analysis. Results Heterozygous mice born following these experiments have no overt phenotype. The homozygous mice display neurological impairment, macrocephaly, generalized white matter disease, deficient ASPA activity and high levels of NAA in urine. Magnetic resonance imaging (MRI) and spectroscopy (MRS) of the brain of the homozygous mice show white matter changes characteristic of Canavan disease and elevated NAA levels. Conclusion The newly created ASPA deficient mouse establishes an important animal model of Canavan disease. This model should be useful for developing gene transfer vectors to treat Canavan disease. Vectors for the central nervous system (CNS) and modulation of NAA levels in the brain should further add to the understanding of the pathophysiology of Canavan disease. Data generated from this animal model will be useful for developing strategies for gene therapy in other neurodegenerative diseases. Copyright © 2000 John Wiley & Sons, Ltd.
Journal Article
Biochemistry and Molecular Biology of Canavan Disease
by
Matalon, Reuben
,
Michals-Matalon, Kimberlee
in
Amidohydrolases - deficiency
,
Amidohydrolases - genetics
,
Animals
1999
Canavan in 1931 described spongy degeneration of the brain in a child who was thought to have had Schilder's disease. Since that classic histological description, Canavan disease has become a distinct clinical entity, with the recognition by Van Bogaert and Bertrand that this is an autosomal recessive disease prevalant among children of Jewish extraction. Recent advances in the understanding of the biochemical defect led to an increase in awareness and ease in diagnosis, and indeed the disease is not as rare as initially thought. Exploring the molecular aspects of Canavan disease has led to exciting new developments in carrier detection and prevention of Canavan disease. Work is underway in our laboratory to develop a knock-out mouse for Canavan disease for understanding of the pathophysiology of this disease and formulating gene therapy.
Journal Article
Chapter 62 - Canavan Disease
by
Matalon, Reuben
,
Matalon, Kimberlee Michals
in
Aspartoacylase deficiency
,
Canavan Disease
,
Leukodystrophy
2015
Spongy degeneration of the brain, Canavan disease, is an autosomal recessive leukodystrophy prevalent among individuals of Ashkenazi Jewish extraction. The disease is characterized by severe mental retardation, developmental delays, and early death. Deficiency of the enzyme aspartoacylase, causes excessive amounts of N-acetylaspartic acid in the urine, brain and body fluids. High levels of N-acetylaspartic acid in the urine are diagnostic for Canavan disease. Mild or juvenile cases of Canavan disease with mild elevation of N-acetylaspartic acid and developmental delay have also been found. The gene for aspartoacylase has been cloned and mutations identified. Ashkenazi Jewish populations have two mutations in 98% of the cases while other ethnic groups have more diverse mutations. A knockout mouse with the same phenotype as Canavan disease has been generated. Trials in knockout mice and Canavan patients are underway for potential treatment for Canavan disease.
Book Chapter