4.5 Review

Classical Hereditary galactosemia: findings in patients and animal models

期刊

METABOLIC BRAIN DISEASE
卷 -, 期 -, 页码 -

出版社

SPRINGER/PLENUM PUBLISHERS
DOI: 10.1007/s11011-023-01281-9

关键词

Galactose; Duarte variant; Neurodegeneration; Galactosemia models; Oxidative stress

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Classic galactosemia is a rare inborn error of metabolism caused by gene variants leading to absent or misfolded enzyme, resulting in galactose metabolite accumulation and cell damage. Its symptoms vary and prevalence differs among populations. Dairy restriction is a common treatment, but recent studies suggest its reconsideration in certain cases. Further preclinical trials are needed to understand the disease and propose new treatments.
Classic galactosemia is a rare inborn error of metabolism that affects the metabolism of galactose, a sugar derived from milk and derivates. Classic galactosemia is caused by variants of the GALT gene, which lead to absent or misfolded forms of the ubiquitously present galactose-1-phosphate uridylyltransferase enzyme (GALT) driving galactose metabolites to accumulate, damaging cells from neurons to hepatocytes. The disease has different prevalence around the world due to different allele frequencies among populations and its symptoms range from cognitive and psychomotor impairment to hepatic, ophthalmological, and bone structural damage. The practice of newborn screening still varies among countries, dairy restriction treatment is a consensus despite advances in preclinical treatment strategies. Recent clinical studies in Duarte variant suggest dairy restriction could be reconsidered in these cases. Despite noteworthy advances in the classic galactosemia understanding, preclinical trials are still crucial to fully understand the pathophysiology of the disease and help propose new treatments. This review aims to report a comprehensive analysis of past studies and state of art research on galactosemia screening, its clinical and preclinical trials, and treatments with the goal of shedding light on this complex and multisystemic innate error of the metabolism.

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