<?xml version='1.0' encoding='UTF-8'?><codeBook xmlns="ddi:codebook:2_5" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance" xsi:schemaLocation="ddi:codebook:2_5 https://ddialliance.org/Specification/DDI-Codebook/2.5/XMLSchema/codebook.xsd" version="2.5"><docDscr><citation><titlStmt><titl>Replication Data for: High resolution daily profiles of tissue adrenal steroids by portable automated collection</titl><IDNo agency="DOI">doi:10.18710/5TW8YF</IDNo></titlStmt><distStmt><distrbtr source="archive">DataverseNO</distrbtr><distDate>2023-06-21</distDate></distStmt><verStmt source="archive"><version date="2023-09-28" type="RELEASED">1</version></verStmt><biblCit>Upton, Thomas; Zavala, Eder; Methlie, Paal; Kämpe, Olle; Tsagarakis, Stylianos; Øksnes, Marianne; Bensing, Sophie; Vassiliadi, Dimitra; Grytaas, Marianne; Botusan, Ileana; Ueland, Greta; Berinder, Katerina; Simunkova, Katerina; Balomenaki, Maria; Margaritopoulos, Dimitris; Henne, Nina; Crossley, Robin; Russell, Georgina; Husebye, Eystein; Lightman, Stafford, 2023, "Replication Data for: High resolution daily profiles of tissue adrenal steroids by portable automated collection", https://doi.org/10.18710/5TW8YF, DataverseNO, V1</biblCit></citation></docDscr><stdyDscr><citation><titlStmt><titl>Replication Data for: High resolution daily profiles of tissue adrenal steroids by portable automated collection</titl><IDNo agency="DOI">doi:10.18710/5TW8YF</IDNo></titlStmt><rspStmt><AuthEnty affiliation="University of Bristol">Upton, Thomas</AuthEnty><AuthEnty affiliation="University of Birmingham">Zavala, Eder</AuthEnty><AuthEnty affiliation="University of Bergen">Methlie, Paal</AuthEnty><AuthEnty affiliation="Karolinska Institute">Kämpe, Olle</AuthEnty><AuthEnty affiliation="Geniko Nosokomeio Athenon O Euangelismos">Tsagarakis, Stylianos</AuthEnty><AuthEnty affiliation="University of Bergen">Øksnes, Marianne</AuthEnty><AuthEnty affiliation="Karolinska Institute">Bensing, Sophie</AuthEnty><AuthEnty affiliation="Evangelismos General Hospital">Vassiliadi, Dimitra</AuthEnty><AuthEnty affiliation="Haukeland University Hospital">Grytaas, Marianne</AuthEnty><AuthEnty affiliation="Karolinska Institute">Botusan, Ileana</AuthEnty><AuthEnty affiliation="Haukeland University Hospital">Ueland, Greta</AuthEnty><AuthEnty affiliation="Karolinska Institute">Berinder, Katerina</AuthEnty><AuthEnty affiliation="University of Bergen">Simunkova, Katerina</AuthEnty><AuthEnty affiliation="Evangelismos General Hospital">Balomenaki, Maria</AuthEnty><AuthEnty affiliation="Evangelismos General Hospital">Margaritopoulos, Dimitris</AuthEnty><AuthEnty affiliation="University of Bergen">Henne, Nina</AuthEnty><AuthEnty affiliation="Designworks Windsor">Crossley, Robin</AuthEnty><AuthEnty affiliation="University of Bristol">Russell, Georgina</AuthEnty><AuthEnty affiliation="University of Bergen">Husebye, Eystein</AuthEnty><AuthEnty affiliation="University of Bristol">Lightman, Stafford</AuthEnty></rspStmt><prodStmt><producer abbr="UiB">University of Bergen</producer><software version="3.9 or later">Python</software><software version="3.9 or later">REDCap</software><grantNo agency="EU Horizon 2020">633515</grantNo></prodStmt><distStmt><distrbtr source="archive">DataverseNO</distrbtr><distrbtr affiliation="University of Bergen" URI="https://dataverse.no/dataverse/uib">University of Bergen</distrbtr><contact affiliation="University of Bristol" email="thomas.upton@bristol.ac.uk">Upton, Thomas</contact><depositr>Upton, Thomas</depositr><depDate>2023-03-16</depDate></distStmt><holdings URI="https://doi.org/10.18710/5TW8YF"/></citation><stdyInfo><subject><keyword xml:lang="en">Medicine, Health and Life Sciences</keyword><keyword vocab="MeSH" vocabURI="https://www.ncbi.nlm.nih.gov/mesh/">Microdialysis</keyword><keyword vocab="MeSH" vocabURI="https://www.ncbi.nlm.nih.gov/mesh/">Monitoring, Ambulatory</keyword><keyword vocab="MeSH" vocabURI="https://www.ncbi.nlm.nih.gov/mesh/">Tandem Mass Spectrometry</keyword><keyword vocab="MeSH" vocabURI="https://www.ncbi.nlm.nih.gov/mesh/">Adrenal Cortex Function Tests</keyword><keyword vocab="MeSH" vocabURI="https://www.ncbi.nlm.nih.gov/mesh/">Biomedical Technology</keyword><keyword vocab="MeSH" vocabURI="https://www.ncbi.nlm.nih.gov/mesh/">Ultradian Rhythm</keyword><keyword vocab="MeSH" vocabURI="https://www.ncbi.nlm.nih.gov/mesh/">Circadian Rhythm</keyword><keyword vocab="MeSH" vocabURI="https://www.ncbi.nlm.nih.gov/mesh/">Adrenal Gland Diseases</keyword><keyword vocab="MeSH" vocabURI="https://www.ncbi.nlm.nih.gov/mesh/">Adrenal Cortex Hormones</keyword><keyword vocab="MeSH" vocabURI="https://www.ncbi.nlm.nih.gov/mesh/">Hydroxycorticosteroids</keyword></subject><abstract>1. Time series measurements of adrenal hormones, measured in microdialysis fluid
&lt;br> 2. Time series measurements of adrenal hormones and ACTH, measured in blood plasma
&lt;br> 3. Supporting metadata 
&lt;br> 4. Non-validated questionnaire responses</abstract><abstract>&lt;br> Rhythms are intrinsic to endocrine systems, and disruption of these hormone oscillations occurs at very early stages of disease. Since adrenal hormones are secreted with both circadian and ultradian periods, conventional single time point measures provide limited information about rhythmicity, and crucially do not provide information during sleep when many hormones fluctuate from nadir to peak concentrations. If blood sampling is attempted overnight, this necessitates admission to a clinical research unit, can be stressful and disturbs sleep. To overcome this problem, and to measure free hormones within their target tissues, we used microdialysis, an ambulatory fraction collector and liquid-chromatography tandem mass-spectrometry (LC-MS/MS) to obtain high-resolution profiles of tissue adrenal steroids over 24 hours in 214 healthy volunteers. For validation, we compared tissue against plasma measurements in a further seven healthy volunteers. Sample collection from subcutaneous tissue was safe, well tolerated and allowed most normal activities to continue. In addition to cortisol, we identified daily and ultradian variation in free cortisone, corticosterone (CCS), 18-hydroxycortisol (18-OHF), aldosterone, tetrahydrocortisol (THF), allotetrahydrocortisol (aTHF), and the presence of dehydroepiandrosterone sulphate (DHEA-S). We used mathematical and computational methods to quantify the interindividual variability of hormones at different times of the day and develop “dynamic biomarkers” of normality in healthy individuals stratified by sex, age and body mass index (BMI). Our results provide, for the first time, an insight into the dynamics of adrenal steroids in tissue in real world settings and will serve as a normative reference for novel and improved biomarkers of endocrine disorders. (ULTRADIAN, NCT02934399).</abstract><sumDscr><collDate cycle="P1" event="start" date="2017-05-02">2017-05-02</collDate><collDate cycle="P1" event="end" date="2020-02-26">2020-02-26</collDate><dataKind>Machine readable text files</dataKind><dataKind>clinical data</dataKind></sumDscr></stdyInfo><method><dataColl><sources/></dataColl><anlyInfo/></method><dataAccs><setAvail/><useStmt/><notes type="DVN:TOU" level="dv">&lt;a href="http://creativecommons.org/publicdomain/zero/1.0">CC0 1.0&lt;/a></notes></dataAccs><othrStdyMat><relPubl><citation><titlStmt><titl>Upton TJ, Zavala E, Methlie P, Kämpe O, Tsagarakis S, Øksnes M, et al. High-resolution daily profiles of tissue adrenal steroids by portable automated collection. Science Translational Medicine. 2023;15(701):eadg8464.</titl><IDNo agency="doi">10.1126/scitranslmed.adg8464</IDNo></titlStmt><biblCit>Upton TJ, Zavala E, Methlie P, Kämpe O, Tsagarakis S, Øksnes M, et al. High-resolution daily profiles of tissue adrenal steroids by portable automated collection. 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