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Glycogen Storage Disease type 1a - a secondary cause for hyperlipidemia: report of five cases
Patrícia Margarida Serra Carvalho1, Nuno José Marques Mendes Silva, Patrícia Glória Dinis Dias
1Internal Medicine Ward, Coimbra University Hospital, Av, Bissaya Barreto e Praceta Prof, Mota Pinto, 3000-075, Coimbra, Portugal. pms.carvalho@gmail.com.
Insights
Glycogen storage disease type Ia (GSD Ia) is a rare metabolic disorder. Liver transplantation offers the only definitive solution for severe hyperlipidemia, a common complication in GSD Ia patients.
Area of Science:
- Metabolic disorders
- Genetics
- Internal Medicine
Background:
- Glycogen storage disease type Ia (GSD Ia) is a rare inherited metabolic disorder caused by glucose-6-phosphatase-α deficiency.
- It leads to fasting hypoglycemia, hepatomegaly, and various complications including growth delay, anemia, and hyperlipidemia.
Observation:
- This report details five adult patients with GSD Ia, highlighting varied clinical presentations and disease progression.
- Diagnoses occurred in infancy for most, but one adult case was identified via hepatocellular adenomas.
Findings:
- Patients exhibited growth retardation, anemia, bleeding tendencies, osteopenia/osteoporosis, and hepatocellular adenomas.
- Marked hyperlipidemia and hyperuricemia were prevalent, with some cases showing endothelial dysfunction, brain damage, or renal disease.
- Genetic analysis identified known and novel mutations in the glucose-6-phosphatase gene.
Implications:
- Hyperlipidemia in GSD Ia is challenging to manage with conventional therapies, underscoring the potential role of liver transplantation.
- Endothelial dysfunction suggests an increased cardiovascular risk, necessitating further research and monitoring in GSD Ia patients.
- Limited experience with this rare disease emphasizes the need for collaborative research and evidence-based guidelines.
Background And Aims:
Glycogen storage disease type Ia (GSD Ia) is a rare metabolic disorder, caused by deficient activity of glucose-6-phosphatase-α. It produces fasting induced hypoglycemia and hepatomegaly, usually manifested in the first semester of life. Besides, it is also associated with growth delay, anemia, platelet dysfunction, osteopenia and sometimes osteoporosis. Hyperlipidemia and hyperuricemia are almost always present and hepatocellular adenomas and renal dysfunction frequent late complications.
Methods:
The authors present a report of five adult patients with GSD Ia followed in internal medicine appointments and subspecialties.
Results:
Four out of five patients were diagnosed in the first 6 months of life, while the other one was diagnosed in adult life after the discovery of hepatocellular adenomas. In two cases genetic tests were performed, being identified the missense mutation R83C in one, and the mutation IVS4-3C > G in the intron 4 of glucose-6-phosphatase gene, not previously described, in the other. Growth retardation was present in 3 patients, and all of them had anemia, increased bleeding tendency and hepatocellular adenomas; osteopenia/osteoporosis was present in three cases. All but one patient had marked hyperlipidemia and hyperuricemia, with evidence of endothelial dysfunction in one case and of brain damage with refractory epilepsy in another case. Proteinuria was present in two cases and end-stage renal disease in another case. There was a great variability in the dietary measures; in one case, liver transplantation was performed, with correction of the metabolic derangements.
Conclusions:
Hyperlipidemia is almost always present and only partially responds to dietary and drug therapy; liver transplantation is the only definitive solution. Although its association with premature atherosclerosis is rare, there have been reports of endothelial dysfunction, raising the possibility for increased cardiovascular risk in this group of patients. Being a rare disease, no single metabolic center has experience with large numbers of patients and the recommendations are based on clinical experience more than large scale studies.
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