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Acute intermittent porphyria: diagnostic conundrums
W S Wassif1, A C Deacon, Y Floderus
1Department of Clinical Biochemistry, King's College School of Medicine and Dentistry, London, UK.
Insights
Identifying gene carriers for acute intermittent porphyria (AIP) is crucial. Assays for hydroxymethylbilane synthase (HMBS) enzyme activity in erythrocytes are effective for diagnosing AIP and identifying at-risk family members.
Area of Science:
- Biochemistry
- Genetics
- Clinical Diagnostics
Background:
- Acute intermittent porphyria (AIP) is an inherited disorder of heme biosynthesis.
- Defects in the hydroxymethylbilane synthase (HMBS) gene on chromosome 11 cause AIP.
- Identifying gene carriers is vital due to the risk of life-threatening neurogenic attacks.
Purpose of the Study:
- To evaluate diagnostic methods for identifying carriers of acute intermittent porphyria.
- To compare the efficacy of different assays for measuring erythrocyte hydroxymethylbilane synthase (HMBS) activity and protein levels.
Main Methods:
- Assessed erythrocyte HMBS activity in 46 family members using High-Performance Liquid Chromatography (HPLC) and fluorimetric assays.
- Determined HMBS immunoreactivity via a sandwich-type ELISA.
- Correlated enzyme activity and protein concentration using statistical analysis.
Main Results:
- Significant correlations were found between HPLC/fluorimetric HMBS activity and enzyme protein concentration (r=0.85, p<0.001 and r=0.80, p<0.001).
- ELISA was useful in excluding AIP in a patient with ambiguous enzyme activity results.
- HPLC and fluorimetric assays demonstrated comparable diagnostic performance with minimal overlap zones.
Conclusions:
- Erythrocyte HMBS activity assays (HPLC and fluorimetry) are reliable for diagnosing acute intermittent porphyria.
- ELISA for HMBS protein can aid in diagnosing AIP, especially in ambiguous cases.
- Early identification of AIP gene carriers through enzyme assays is critical for preventative management.
Abstract:
Acute intermittent prophyria is a genetic disorder of haem biosynthesis caused by defects in the gene encoding hydroxymethylbilane synthase on the long arm of chromosome 11. Every effort should be made to identify gene carriers amongst the relatives of patients known to have acute intermittent porphyria as they are at risk of developing potentially fatal neurogenic attacks if exposed to precipitating factors. Erythrocyte hydroxymethylbilane synthase activity was determined in 46 members of two large well characterised families by assaying enzyme activity by both high performance liquid chromatography (HPLC) and fluorimetric assays. Additionally, hydroxymethylbilane synthase immunoreactivity was determined by a sandwich-type ELISA. Statistically significant correlations were observed between erythrocyte hydroxymethylbilane synthase activity assayed by HPLC and by the fluorimetric assay, and enzyme protein concentration (r = 0.85, p < 0.001 and r = 0.80, p < 0.001, respectively). The assay of hydroxymethylbilane synthase immunoreactive concentration in erythrocytes was useful in excluding acute intermittent porphyria in one patient in whom unequivocal assignment of porphyric status was not possible by assaying enzyme activity alone. Erythrocyte hydroxymethylbilane synthase activity assayed by HPLC and fluorimetry showed approximately equal diagnostic performances, both giving rise to a dichotomic distribution of values, with overlap zones of 6% (1/16) and 22% (2/9), respectively, at the "cut off" applied.
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