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      A Chinese girl with delayed puberty due to 17α-hydroxylase deficiency: the diagnosis, treatment and monitoring approach

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          Abstract

          Summary

          17α-hydroxylase deficiency (17α-OHD) is a rare form of congenital adrenal hyperplasia. We report the case of a teenage girl with 17α-OHD who presented with delayed puberty, hypergonadotropic hypogonadism and hypertension. We illustrate the clinical approach in workup, the subsequent management and monitoring of this rare condition.

          Learning points
          • 17α-hydroxylase deficiency (17α-OHD) should be considered as a rare yet important differential diagnosis of girls with delayed puberty and elevated gonadotropins.

          • Urine steroid profile, plasma aldosterone and renin levels should be assessed in adolescent girls with hypergonadotropic hypogonadism, after the exclusion of more common conditions, e.g. Turner syndrome.

          • Inhibiting deoxycorticosterone (DOC) release by partial glucocorticoid replacement, counteracting DOC’s mineralocorticoid effects by antagonists (such as eplerenone or spironolactone) as well as sex hormone replacements constitute the major backbone in the management of 17α-OHD.

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          Steroid 17-hydroxylase and 17,20-lyase deficiencies, genetic and pharmacologic.

          Steroid 17-hydroxylase 17,20-lyase (cytochrome P450c17, P450 17A1, CYP17A1) catalyzes two major reactions: steroid 17-hydroxylation followed by the 17,20-lyase reactions. The most severe mutations in the cognate CYP17A1 gene abrogate all activities and cause combined 17-hydroxylase/17,20-lyase deficiency (17OHD), a biochemical phenotype that is replicated by treatment with the potent CYP17A1 inhibitor abiraterone acetate. The adrenals of patients with 17OHD synthesize 11-deoxycorticosterone (DOC) and corticosterone but no 19-carbon steroids, similar to the rodent adrenal, and DOC causes hypertension and hypokalemia. Loss of 17,20-lyase activity precludes sex steroid synthesis and leads to sexual infantilism. Rare missense CYP17A1 mutations minimally disrupt 17-hydroxylase activity but cause isolated 17,20-lyase deficiency (ILD), Mutations in the POR gene encoding the required cofactor protein cytochrome P450-oxidoreductase causes a spectrum of disease from ILD to 17OHD combined with 21-hydroxylase and aromatase deficiencies, sometimes including skeletal malformations. Mutations in the CYB5A gene encoding a second cofactor protein cytochrome b5 also selectively disrupt 17,20-lyase activity and cause the purest form of ILD. The clinical manifestations of these conditions are best understood in the context of the biochemistry of CYP17A1.
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            17-hydroxylation deficiency in man.

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              Steroid Metabolome Analysis in Disorders of Adrenal Steroid Biosynthesis and Metabolism

              Abstract Steroid biosynthesis and metabolism are reflected by the serum steroid metabolome and, in even more detail, by the 24-hour urine steroid metabolome, which can provide unique insights into alterations of steroid flow and output indicative of underlying conditions. Mass spectrometry–based steroid metabolome profiling has allowed for the identification of unique multisteroid signatures associated with disorders of steroid biosynthesis and metabolism that can be used for personalized approaches to diagnosis, differential diagnosis, and prognostic prediction. Additionally, steroid metabolome analysis has been used successfully as a discovery tool, for the identification of novel steroidogenic disorders and pathways as well as revealing insights into the pathophysiology of adrenal disease. Increased availability and technological advances in mass spectrometry–based methodologies have refocused attention on steroid metabolome profiling and facilitated the development of high-throughput steroid profiling methods soon to reach clinical practice. Furthermore, steroid metabolomics, the combination of mass spectrometry–based steroid analysis with machine learning–based approaches, has facilitated the development of powerful customized diagnostic approaches. In this review, we provide a comprehensive up-to-date overview of the utility of steroid metabolome analysis for the diagnosis and management of inborn disorders of steroidogenesis and autonomous adrenal steroid excess in the context of adrenal tumors.

                Author and article information

                Journal
                Endocrinol Diabetes Metab Case Rep
                Endocrinol Diabetes Metab Case Rep
                EDM
                Endocrinology, Diabetes & Metabolism Case Reports
                Bioscientifica Ltd (Bristol )
                2052-0573
                04 September 2023
                01 July 2023
                : 2023
                : 3
                : 23-0047
                Affiliations
                [1 ]Department of Paediatrics and Adolescent Medicine , Queen Mary Hospital, Hong Kong
                [2 ]Department of Paediatrics and Adolescent Medicine , Tseung Kwan O Hospital, Hong Kong
                [3 ]Division of Chemical Pathology , Department of Pathology, Queen Elizabeth Hospital, Hong Kong
                [4 ]Department of Paediatrics and Adolescent Medicine , Hong Kong Children’s Hospital, Hong Kong
                Author notes
                Correspondence should be addressed to J Tung; Email: tungylj@ 123456hku.hk
                Author information
                http://orcid.org/0009-0007-8886-3124
                http://orcid.org/0000-0001-7897-716X
                Article
                EDM230047
                10.1530/EDM-23-0047
                10563631
                37747283
                326a8e8e-508f-4659-9e9a-d07e9a0f931b
                © the author(s)

                This work is licensed under a Creative Commons Attribution-NonCommercial 4.0 International License.

                History
                : 19 April 2023
                : 04 September 2023
                Categories
                Adolescent/young adult
                Female
                Asian - Chinese
                China
                Adrenal
                Puberty
                New Disease or Syndrome: Presentations/Diagnosis/Management
                New Disease or Syndrome: Presentations/Diagnosis/Management

                adolescent/young adult,female,asian - chinese,china,adrenal,puberty,new disease or syndrome: presentations/diagnosis/management,september,2023

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