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- Ensaio Clínico NCT07731373
Biomarker Panel for PCOS-Associated Liver Steatosis in Adolescent Girls (COMPASS-pedPCOS) (COMPASSpedPCOS)
COMPASS-PedPCOS: BMI-Independent Mechanistic Dissection of PCOS-Associated MASLD in Adolescent Girls With Obesity Using an Expanded Biomarker Panel - A Single-Center Pre-Pilot Clinical Study
This single-center, prospective, observational, cross-sectional mechanistic pilot study will evaluate whether polycystic ovary syndrome (PCOS) contributes to hepatic steatosis in adolescent girls independently of adiposity. A total of 150 girls aged 10-18 years will be enrolled into three groups of 50: girls with PCOS and obesity, age- and body mass index-matched girls with obesity but without PCOS, and healthy normal-weight girls. Each participant will undergo a single evaluation comprising anthropometry, clinical and biochemical phenotyping, transient elastography with controlled attenuation parameter and two-dimensional shear wave elastography, and a single venous blood sample.
An extended biomarker panel will be measured by enzyme-linked immunosorbent assay (Fetuin-A, fibroblast growth factor 21, adiponectin, visfatin, cytokeratin-18 M30 and M65, soluble CD163, growth differentiation factor 15, 11-ketotestosterone, and 11beta-hydroxyandrostenedione), together with liquid chromatography-tandem mass spectrometry measurement of testosterone and sex hormone-binding globulin, and genotyping of PNPLA3 rs738409 and HSD17B13 rs72613567. The primary objective is to compare hepatic steatosis and the hepatokine/adipokine profile between the PCOS with obesity group and the adiposity-matched obesity control group, adjusting for body mass index z-score, insulin resistance, and free androgen index. No therapeutic intervention is assigned by the study protocol.
Visão geral do estudo
Status
Condições
Descrição detalhada
Metabolic dysfunction-associated steatotic liver disease (MASLD) is the most common chronic liver condition of childhood and is closely linked to obesity and insulin resistance. Polycystic ovary syndrome (PCOS) frequently co-occurs with obesity in adolescent girls, and hyperandrogenism has been proposed as an additional hepatic insult. Because obesity is a powerful confounder, the independent contribution of hyperandrogenism to hepatic steatosis in adolescents remains poorly defined.
This study will be conducted at the Departments of Pediatric, Departments of Pediatric Endocrinology, Pediatric Gastroenterology and Hepatology, Medical Biochemistry, Medical Genetics, and Pediatric Radiology of Kayseri City Hospital, Kayseri, Türkiye. Participants will be allocated to three predefined groups. Group 1 comprises girls with PCOS and obesity, diagnosed according to adolescent-adapted Rotterdam criteria requiring both hyperandrogenism and oligo-anovulation, with a body mass index at or above the 95th percentile. Group 2 comprises girls with obesity without features of PCOS, matched to Group 1 for age and body mass index. Group 3 comprises healthy normal-weight girls between the 5th and 84th body mass index percentiles.
The central comparison is Group 1 versus Group 2, which equalises adiposity and therefore isolates the contribution of hyperandrogenism. Hierarchical regression models will additionally adjust for body mass index z-score, homeostatic model assessment of insulin resistance, and free androgen index. Hepatic steatosis will be quantified by the controlled attenuation parameter obtained during vibration-controlled transient elastography; liver stiffness will be assessed by vibration-controlled transient elastography and two-dimensional shear wave elastography.
A single venous blood sample will be obtained at the study visit. Serum will be separated and stored at minus 80 degrees Celsius until batch analysis, and genomic DNA will be isolated for TaqMan single nucleotide polymorphism genotyping of PNPLA3 rs738409 and HSD17B13 rs72613567. All enzyme-linked immunosorbent assay kits will be procured as a single lot, and intra-assay and inter-assay coefficients of variation together with spike-recovery validation will be documented for each kit.
Data will be recorded in a REDCap electronic case report form in accordance with ALCOA+ principles. The study is exploratory and is designed to generate effect-size and variance estimates for a subsequent validation study. Reporting will follow the STROBE statement, and non-invasive diagnostic performance analyses will follow the STARD 2015 statement. The study is also referred to as COMPASS-PedPCOS in institutional, ethics committee and funding documents.
Tipo de estudo
Inscrição (Estimado)
Contactos e Locais
Contato de estudo
- Nome: Agah B Öztürk, MD, MD
- Número de telefone: +90 352 315 77 00
- E-mail: dr-agahoz@hotmail.com
Locais de estudo
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Kayseri, Turquia (Türkiye), 38080
- University of Health Sciences, Kayseri City Hospital
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Contato:
- Agah B ÖZTÜRK, Principal Investigator, Department of Pediatrics, MD
- Número de telefone: +90 352 315 77 00
- E-mail: agahbahadir.ozturk@sbu.edu.tr
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Critérios de participação
Critérios de elegibilidade
Idades elegíveis para estudo
- Filho
- Adulto
Aceita Voluntários Saudáveis
Método de amostragem
População do estudo
Descrição
Inclusion Criteria:
- Female, aged 10 to 18 years, with written informed consent from a parent or legal guardian and written assent from the child.
- Group 1 (PCOS with obesity): both hyperandrogenism and oligo-anovulation required, based on adolescent-adapted Rotterdam criteria; body mass index at or above the 95th percentile.
- Group 2 (Obesity control): body mass index at or above the 95th percentile, without features of PCOS, matched to Group 1 for age and body mass index.
- Group 3 (Healthy control): healthy normal-weight girls (body mass index between the 5th and 84th percentile) without chronic disease, hyperandrogenism, or menstrual irregularity.
Exclusion Criteria:
- Known acute or chronic liver disease (including viral, autoimmune, or Wilson disease) or use of hepatotoxic medication.
- Endocrine disorders or secondary hyperandrogenism, including Cushing syndrome, hypothyroidism, uncontrolled diabetes mellitus, congenital adrenal hyperplasia, androgen-secreting tumour, or hyperprolactinaemia.
- Syndromic or monogenic obesity (including Prader-Willi syndrome, Bardet-Biedl syndrome, Alström syndrome, MC4R or LEP variants) or a known genetic disorder.
- Use of relevant or hepatotoxic medication within the preceding three months, including corticosteroids, metformin, oral contraceptives, valproic acid, or antiandrogens.
- Pregnancy or regular alcohol use.
- Refusal of consent or assent.
Plano de estudo
Como o estudo é projetado?
Detalhes do projeto
Coortes e Intervenções
Grupo / Coorte |
Intervenção / Tratamento |
|---|---|
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Group 1 ''PCOS With Obesity''
PCOS With Obesity (n=50) - Girls aged 10-18 years meeting adolescent-adapted Rotterdam criteria (both hyperandrogenism and oligo-anovulation required) with body mass index at or above the 95th percentile.
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A single fasting venous blood sample is obtained at the study visit.
Enzyme-linked immunosorbent assay measurement of Fetuin-A, fibroblast growth factor 21, adiponectin, visfatin, cytokeratin-18 M30, cytokeratin-18 M65, soluble CD163, growth differentiation factor 15, 11-ketotestosterone and 11beta-hydroxyandrostenedione is performed.
Total testosterone and sex hormone-binding globulin are measured by liquid chromatography-tandem mass spectrometry.
Routine biochemistry and hormonal profiling are performed from the same sample.
Observational only; no therapeutic agent is administered.
Hepatic steatosis and liver stiffness are assessed non-invasively at the same study visit.
Vibration-controlled transient elastography with controlled attenuation parameter yields attenuation (dB/m) and stiffness (kPa) values; two-dimensional shear wave elastography provides an independent stiffness estimate.
Predefined validity criteria are applied to all acquisitions.
No sedation, contrast agent or ionizing radiation is used; the procedure is observational.
Genomic DNA is isolated from the same single venous blood sample; no additional venipuncture is required.
TaqMan allelic discrimination assays are used for genotyping of PNPLA3 rs738409 and HSD17B13 rs72613567.
Genotype call rate and Hardy-Weinberg equilibrium are reported.
Genotyping is performed for research purposes only; results are not used to guide clinical management.
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Group 2 ''Obesity Control''
Obesity Control (n=50) - Girls with body mass index at or above the 95th percentile without features of PCOS, matched to Group 1 for age and body mass index.
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A single fasting venous blood sample is obtained at the study visit.
Enzyme-linked immunosorbent assay measurement of Fetuin-A, fibroblast growth factor 21, adiponectin, visfatin, cytokeratin-18 M30, cytokeratin-18 M65, soluble CD163, growth differentiation factor 15, 11-ketotestosterone and 11beta-hydroxyandrostenedione is performed.
Total testosterone and sex hormone-binding globulin are measured by liquid chromatography-tandem mass spectrometry.
Routine biochemistry and hormonal profiling are performed from the same sample.
Observational only; no therapeutic agent is administered.
Hepatic steatosis and liver stiffness are assessed non-invasively at the same study visit.
Vibration-controlled transient elastography with controlled attenuation parameter yields attenuation (dB/m) and stiffness (kPa) values; two-dimensional shear wave elastography provides an independent stiffness estimate.
Predefined validity criteria are applied to all acquisitions.
No sedation, contrast agent or ionizing radiation is used; the procedure is observational.
Genomic DNA is isolated from the same single venous blood sample; no additional venipuncture is required.
TaqMan allelic discrimination assays are used for genotyping of PNPLA3 rs738409 and HSD17B13 rs72613567.
Genotype call rate and Hardy-Weinberg equilibrium are reported.
Genotyping is performed for research purposes only; results are not used to guide clinical management.
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Group 3 ''Healthy Control''
Healthy Control (n=50) - Girls aged 10-18 years meeting adolescent, Healthy normal-weight girls (body mass index 5th-84th percentile) without chronic disease, hyperandrogenism, or menstrual irregularity.
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A single fasting venous blood sample is obtained at the study visit.
Enzyme-linked immunosorbent assay measurement of Fetuin-A, fibroblast growth factor 21, adiponectin, visfatin, cytokeratin-18 M30, cytokeratin-18 M65, soluble CD163, growth differentiation factor 15, 11-ketotestosterone and 11beta-hydroxyandrostenedione is performed.
Total testosterone and sex hormone-binding globulin are measured by liquid chromatography-tandem mass spectrometry.
Routine biochemistry and hormonal profiling are performed from the same sample.
Observational only; no therapeutic agent is administered.
Hepatic steatosis and liver stiffness are assessed non-invasively at the same study visit.
Vibration-controlled transient elastography with controlled attenuation parameter yields attenuation (dB/m) and stiffness (kPa) values; two-dimensional shear wave elastography provides an independent stiffness estimate.
Predefined validity criteria are applied to all acquisitions.
No sedation, contrast agent or ionizing radiation is used; the procedure is observational.
Genomic DNA is isolated from the same single venous blood sample; no additional venipuncture is required.
TaqMan allelic discrimination assays are used for genotyping of PNPLA3 rs738409 and HSD17B13 rs72613567.
Genotype call rate and Hardy-Weinberg equilibrium are reported.
Genotyping is performed for research purposes only; results are not used to guide clinical management.
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O que o estudo está medindo?
Medidas de resultados primários
Medida de resultado |
Descrição da medida |
Prazo |
|---|---|---|
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Hepatic Steatosis Measured by Controlled Attenuation Parameter (CAP)
Prazo: Day 1 (single study visit)
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Controlled attenuation parameter obtained during vibration-controlled transient elastography, compared between girls with PCOS and obesity and adiposity-matched girls with obesity, and across all three study groups, with adjustment for body mass index z-score, homeostatic model assessment of insulin resistance, and free androgen index.
Unit of measure: dB/m.
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Day 1 (single study visit)
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Serum Fetuin-A Concentration
Prazo: Day 1 (single study visit)
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Serum Fetuin-A measured by enzyme-linked immunosorbent assay and compared across the three study groups with adjustment for body mass index z-score, homeostatic model assessment of insulin resistance, and free androgen index.
Unit of measure: µg/mL.
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Day 1 (single study visit)
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Serum Fibroblast Growth Factor 21 (FGF-21) Concentration
Prazo: Day 1 (single study visit)
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Serum FGF-21 measured by enzyme-linked immunosorbent assay and compared across the three study groups with adjustment for body mass index z-score, homeostatic model assessment of insulin resistance, and free androgen index.
Unit of measure: pg/mL.
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Day 1 (single study visit)
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Serum Adiponectin Concentration
Prazo: Day 1 (single study visit)
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Serum adiponectin measured by enzyme-linked immunosorbent assay and compared across the three study groups with adjustment for body mass index z-score, homeostatic model assessment of insulin resistance, and free androgen index.
Unit of measure: µg/mL.
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Day 1 (single study visit)
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Serum Visfatin Concentration
Prazo: Day 1 (single study visit)
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Serum visfatin measured by enzyme-linked immunosorbent assay and compared across the three study groups with adjustment for body mass index z-score, homeostatic model assessment of insulin resistance, and free androgen index.
Unit of measure: ng/mL.
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Day 1 (single study visit)
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Medidas de resultados secundários
Medida de resultado |
Descrição da medida |
Prazo |
|---|---|---|
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Serum Soluble CD163 Concentration
Prazo: Day 1 (single study visit)
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Serum soluble CD163, a marker of macrophage activation, measured by enzyme-linked immunosorbent assay and compared across the three study groups; evaluated as a candidate mediator of the association between hyperandrogenism and hepatic steatosis.
Unit of measure: ng/mL.
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Day 1 (single study visit)
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Serum Cytokeratin-18 M30 and M65 Concentrations
Prazo: Day 1 (single study visit)
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Serum cytokeratin-18 M30 (apoptotic fragment) and M65 (total cell death) measured by enzyme-linked immunosorbent assay and compared across the three study groups to characterise the mode of hepatocyte death.
Unit of measure: U/L for each analyte.
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Day 1 (single study visit)
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Liver Stiffness Measurement
Prazo: Day 1 (single study visit)
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Liver stiffness assessed by vibration-controlled transient elastography and by two-dimensional shear wave elastography, compared across the three study groups.
Unit of measure: kPa.
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Day 1 (single study visit)
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Discriminatory Performance of the Biomarker Panel for Hepatic Steatosis
Prazo: Day 1 (single study visit)
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Receiver operating characteristic analysis of individual biomarkers and of a composite preliminary risk score for the identification of hepatic steatosis.
Measures include area under the receiver operating characteristic curve with 95% confidence intervals, sensitivity, and specificity at the Youden index.
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Day 1 (single study visit)
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Outras medidas de resultado
Medida de resultado |
Descrição da medida |
Prazo |
|---|---|---|
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Serum Growth Differentiation Factor 15 (GDF-15) Concentration
Prazo: Day 1 (single study visit)
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Serum GDF-15, a marker of mitochondrial stress, measured by enzyme-linked immunosorbent assay and compared across the three study groups.
Unit of measure: pg/mL.
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Day 1 (single study visit)
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Serum 11-Oxygenated Androgen Concentrations
Prazo: Day 1 (single study visit)
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Serum 11-ketotestosterone and 11beta-hydroxyandrostenedione measured by enzyme-linked immunosorbent assay and evaluated for association with hepatic steatosis measures independently of body mass index and insulin resistance.
Unit of measure: ng/dL for each analyte.
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Day 1 (single study visit)
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PNPLA3 rs738409 and HSD17B13 rs72613567 Genotype Distribution and Gene-Gene Interaction
Prazo: Day 1 (single study visit)
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Genotype frequencies of PNPLA3 rs738409 and HSD17B13 rs72613567 determined by TaqMan assay, and evaluation of gene-gene interaction with respect to hepatic steatosis measures.
Measure: genotype counts and interaction estimates; Hardy-Weinberg equilibrium will be assessed.
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Day 1 (single study visit)
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Colaboradores e Investigadores
Patrocinador
Colaboradores
Investigadores
- Investigador principal: Agah B ÖZTÜRK, MD, Kayseri City Hospital, Kayseri, Türkiye
Publicações e links úteis
Publicações Gerais
- Bossuyt PM, Reitsma JB, Bruns DE, Gatsonis CA, Glasziou PP, Irwig L, Lijmer JG, Moher D, Rennie D, de Vet HC, Kressel HY, Rifai N, Golub RM, Altman DG, Hooft L, Korevaar DA, Cohen JF; STARD Group. STARD 2015: an updated list of essential items for reporting diagnostic accuracy studies. BMJ. 2015 Oct 28;351:h5527. doi: 10.1136/bmj.h5527.
- von Elm E, Altman DG, Egger M, Pocock SJ, Gotzsche PC, Vandenbroucke JP; STROBE Initiative. The Strengthening the Reporting of Observational Studies in Epidemiology (STROBE) statement: guidelines for reporting observational studies. Lancet. 2007 Oct 20;370(9596):1453-7. doi: 10.1016/S0140-6736(07)61602-X.
- Peduzzi P, Concato J, Kemper E, Holford TR, Feinstein AR. A simulation study of the number of events per variable in logistic regression analysis. J Clin Epidemiol. 1996 Dec;49(12):1373-9. doi: 10.1016/s0895-4356(96)00236-3.
- Abul-Husn NS, Cheng X, Li AH, Xin Y, Schurmann C, Stevis P, Liu Y, Kozlitina J, Stender S, Wood GC, Stepanchick AN, Still MD, McCarthy S, O'Dushlaine C, Packer JS, Balasubramanian S, Gosalia N, Esopi D, Kim SY, Mukherjee S, Lopez AE, Fuller ED, Penn J, Chu X, Luo JZ, Mirshahi UL, Carey DJ, Still CD, Feldman MD, Small A, Damrauer SM, Rader DJ, Zambrowicz B, Olson W, Murphy AJ, Borecki IB, Shuldiner AR, Reid JG, Overton JD, Yancopoulos GD, Hobbs HH, Cohen JC, Gottesman O, Teslovich TM, Baras A, Mirshahi T, Gromada J, Dewey FE. A Protein-Truncating HSD17B13 Variant and Protection from Chronic Liver Disease. N Engl J Med. 2018 Mar 22;378(12):1096-1106. doi: 10.1056/NEJMoa1712191.
- Romeo S, Kozlitina J, Xing C, Pertsemlidis A, Cox D, Pennacchio LA, Boerwinkle E, Cohen JC, Hobbs HH. Genetic variation in PNPLA3 confers susceptibility to nonalcoholic fatty liver disease. Nat Genet. 2008 Dec;40(12):1461-5. doi: 10.1038/ng.257. Epub 2008 Sep 25.
- Rinella ME, Lazarus JV, Ratziu V, Francque SM, Sanyal AJ, Kanwal F, Romero D, Abdelmalek MF, Anstee QM, Arab JP, Arrese M, Bataller R, Beuers U, Boursier J, Bugianesi E, Byrne CD, Castro Narro GE, Chowdhury A, Cortez-Pinto H, Cryer DR, Cusi K, El-Kassas M, Klein S, Eskridge W, Fan J, Gawrieh S, Guy CD, Harrison SA, Kim SU, Koot BG, Korenjak M, Kowdley KV, Lacaille F, Loomba R, Mitchell-Thain R, Morgan TR, Powell EE, Roden M, Romero-Gomez M, Silva M, Singh SP, Sookoian SC, Spearman CW, Tiniakos D, Valenti L, Vos MB, Wong VW, Xanthakos S, Yilmaz Y, Younossi Z, Hobbs A, Villota-Rivas M, Newsome PN; NAFLD Nomenclature consensus group. A multisociety Delphi consensus statement on new fatty liver disease nomenclature. J Hepatol. 2023 Dec;79(6):1542-1556. doi: 10.1016/j.jhep.2023.06.003. Epub 2023 Jun 24.
- Vos MB, Barve S, Joshi-Barve S, Carew JD, Whitington PF, McClain CJ. Cytokeratin 18, a marker of cell death, is increased in children with suspected nonalcoholic fatty liver disease. J Pediatr Gastroenterol Nutr. 2008 Oct;47(4):481-5. doi: 10.1097/MPG.0b013e31817e2bfb.
- O'Reilly MW, Kempegowda P, Jenkinson C, Taylor AE, Quanson JL, Storbeck KH, Arlt W. 11-Oxygenated C19 Steroids Are the Predominant Androgens in Polycystic Ovary Syndrome. J Clin Endocrinol Metab. 2017 Mar 1;102(3):840-848. doi: 10.1210/jc.2016-3285.
- Salva-Pastor N, Chavez-Tapia NC, Uribe M, Nuno-Lambarri N. Understanding the association of polycystic ovary syndrome and non-alcoholic fatty liver disease. J Steroid Biochem Mol Biol. 2019 Nov;194:105445. doi: 10.1016/j.jsbmb.2019.105445. Epub 2019 Aug 2.
- Pena AS, Witchel SF, Boivin J, Burgert TS, Ee C, Hoeger KM, Lujan ME, Mousa A, Oberfield S, Tay CT, Teede H. International evidence-based recommendations for polycystic ovary syndrome in adolescents. BMC Med. 2025 Mar 11;23(1):151. doi: 10.1186/s12916-025-03901-w.
- Teede HJ, Tay CT, Laven JJE, Dokras A, Moran LJ, Piltonen TT, Costello MF, Boivin J, Redman LM, Boyle JA, Norman RJ, Mousa A, Joham AE; International PCOS Network. Recommendations from the 2023 international evidence-based guideline for the assessment and management of polycystic ovary syndrome. Eur J Endocrinol. 2023 Aug 2;189(2):G43-G64. doi: 10.1093/ejendo/lvad096.
Datas de registro do estudo
Datas Principais do Estudo
Início do estudo (Estimado)
Conclusão Primária (Estimado)
Conclusão do estudo (Estimado)
Datas de inscrição no estudo
Enviado pela primeira vez
Enviado pela primeira vez que atendeu aos critérios de CQ
Primeira postagem (Real)
Atualizações de registro de estudo
Última Atualização Postada (Real)
Última atualização enviada que atendeu aos critérios de controle de qualidade
Última verificação
Mais Informações
Termos relacionados a este estudo
Palavras-chave
Termos MeSH relevantes adicionais
- Doenças urogenitais
- Doenças Genitais
- Doenças do Sistema Endócrino
- Distúrbios Nutricionais
- Neoplasias
- Doenças Urogenitais Masculinas
- Doenças Urogenitais Femininas
- Doenças urogenitais femininas e complicações na gravidez
- Doenças Metabólicas
- Supernutrição
- Peso corporal
- Doenças do aparelho digestivo
- Doenças Genitais Femininas
- Distúrbios do Metabolismo da Glicose
- Doenças do Fígado
- Doenças ovarianas
- Doenças anexiais
- Distúrbios Gonadais
- Anomalias congénitas
- Resistência a insulina
- Hiperinsulinismo
- Excesso de peso
- Cistos ovarianos
- Cistos
- Distúrbios do Desenvolvimento Sexual
- Anormalidades urogenitais
- Obesidade
- 46, XX Distúrbios do Desenvolvimento Sexual
- Síndrome Adrenogenital
- Doenças e Anormalidades Congênitas, Hereditárias e Neonatais
- Condições Patológicas, Sinais e Sintomas
- Doenças Nutricionais e Metabólicas
- Sinais e sintomas
- Síndrome metabólica
- Síndrome dos ovários policísticos
- Fígado gordo
- Obesidade Pediátrica
- Hiperandrogenismo
Outros números de identificação do estudo
- Etik C.D.No:1010 (Kayseri CH)
- TÜSEB2026-A4-U ProjectNo55983 (Outro identificador: Health Institutes of Türkiye (TÜSEB))
Plano para dados de participantes individuais (IPD)
Planeja compartilhar dados de participantes individuais (IPD)?
Descrição do plano IPD
Prazo de Compartilhamento de IPD
Critérios de acesso de compartilhamento IPD
Tipo de informação de suporte de compartilhamento de IPD
- PROTOCOLO DE ESTUDO
- SEIVA
- CIF
- ANALYTIC_CODE
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