The Application of a New Highly-Sensitive Radioimmunoassay for Plasma 21-Deoxycortisol to the Detection of Steroid-21-Hydroxylase Deficiency
21-deoxycortisol (21-DF) is a steroid of strictly adrenal origin formed by the 11-hydroxylation of 17-hydroxyprogesterone. This metabolic pathway is minor in normal subjects, in whom basal plasma concentrations range from 0·03 to 0·63 nmol/L and from 0·865 to 1·50 nmol/L after adrenocorticotropic ho...
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Veröffentlicht in: | Annals of clinical biochemistry 1994-01, Vol.31 (1), p.56-64 |
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Sprache: | eng |
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Zusammenfassung: | 21-deoxycortisol (21-DF) is a steroid of strictly adrenal origin formed by the 11-hydroxylation of 17-hydroxyprogesterone. This metabolic pathway is minor in normal subjects, in whom basal plasma concentrations range from 0·03 to 0·63 nmol/L and from 0·865 to 1·50 nmol/L after adrenocorticotropic hormone (ACTH; Synacthène Immédiat, Ciba/Geigy, France). However, this metabolic pathway becomes major in 21-hydroxylase-deficient patients: in those who have the classical form of congenital adrenal hyperplasia (CAH) basal plasma 21-DF levels can attain more than 144 nmol/L. The synthesis of two isomers, E and Z, of the 21-deoxycortisol-3-carboxymethyloxime (CMO) hapten enabled us to prepare the corresponding E and Z immunogens by coupling them to bovine serum albumin (BSA), as well as the corresponding iodinated E and Z 21-DF-3-CMO-histamine tracers. We developed a very sensitive radioimmunoassay for 21-DF in plasma by associating an anti-21-DF-3-CMO-BSA-E isomer antibody to an iodinated 21-DF histamine-Z isomer (standard curve IC 50 = 8 pg/tube). This plasma 21-DF radioimmunoassay allowed diagnosis of the classical form of CAH in untreated newborn (basal 21-DF levels greater than 144 nmol/L), as well as the late-onset form (post-ACTH 21-DF levels greater than 11 · 54 nmol/L), and also permitted detection of 21-hydroxylase-deficient heterozygotes of both forms of CAH among the general population (post-ACTH 21-DF levels between 2·02 and 9·52 nmol/L). |
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ISSN: | 0004-5632 1758-1001 |
DOI: | 10.1177/000456329403100110 |