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Specific types of leukodystrophy include the following with their respective ICD-10 codes when available: [citation needed] (E75.2) Alexander disease (E75.2) Canavan disease (E75.2) Hypomyelinating leukodystrophy type 7 (4H syndrome) (E75.2) Krabbe disease (E75.2) Metachromatic leukodystrophy (E75.2) Pelizaeus–Merzbacher disease
Krabbe disease (KD) (also known as globoid cell leukodystrophy [3] or galactosylceramide lipidosis) is a rare and often fatal lysosomal storage disease that results in progressive damage to the nervous system. KD involves dysfunctional metabolism of sphingolipids and is inherited in an autosomal recessive pattern.
Atidarsagene autotemcel, sold under the brand name Libmeldy among others, is a gene therapy treatment for metachromatic leukodystrophy developed by Orchard Therapeutics.It contains an autologous CD34⁺ cell enriched population that contains haematopoietic stem and progenitor cells transduced using a lentiviral vector encoding the human arylsulfatase A (ARSA) gene.
Leukoencephalopathy with neuroaxonal spheroids (LENAS), also known as adult-onset leukoencephalopathy with axonal spheroids and pigmented glia (ALSP), hereditary diffuse leukoencephalopathy with spheroids (HDLS) and pigmentary orthochromatic leukodystrophy (POLD) [1] is an extremely rare kind of leukoencephalopathy and is classified as a neurodegenerative disease.
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Multiple sclerosis is often a misdiagnosis, but only in children due to its neurological characteristics, onset in early years, and MRI abnormalities. [1] However, there are many differences between the two diseases. The glial cells express a loss of myelin. This loss of myelin is different from that seen in other diseases where hypomyelination ...
Hereditary cancer syndromes underlie 5 to 10% of all cancers and there are over 50 identifiable hereditary forms of cancer. [5] Scientific understanding of cancer susceptibility syndromes is actively expanding: additional syndromes are being found, [6] the underlying biology is becoming clearer, and genetic testing is improving detection, treatment, and prevention of cancer syndromes. [7]
25% (1 in 4) of children will have the disease; 50% (2 in 4) of children will be carriers, but unaffected; 25% (1 in 4) children will be free of MLD – unaffected child that is not a carrier; If one parent is affected and one is free of MLD: 0% (0) children will have the disorder – only one parent is affected, other parent always gives ...