Early detection of diabetic kidney disease by urinary proteomics and subsequent intervention with spironolactone to delay progression (PRIORITY): a prospective observational study and embedded randomised placebo-controlled trial.


Journal

The lancet. Diabetes & endocrinology
ISSN: 2213-8595
Titre abrégé: Lancet Diabetes Endocrinol
Pays: England
ID NLM: 101618821

Informations de publication

Date de publication:
04 2020
Historique:
received: 13 11 2019
revised: 07 01 2020
accepted: 16 01 2020
pubmed: 7 3 2020
medline: 21 7 2020
entrez: 6 3 2020
Statut: ppublish

Résumé

Microalbuminuria is an early sign of kidney disease in people with diabetes and indicates increased risk of cardiovascular disease. We tested whether a urinary proteomic risk classifier (CKD273) score was associated with development of microalbuminuria and whether progression to microalbuminuria could be prevented with the mineralocorticoid receptor antagonist spironolactone. In this multicentre, prospective, observational study with embedded randomised controlled trial (PRIORITY), we recruited people with type 2 diabetes, normal urinary albumin excretion, and preserved renal function from 15 specialist centres in ten European countries. All participants (observational cohort) were tested with the CKD273 classifier and classified as high risk (CKD273 classifier score >0·154) or low risk (≤0·154). Participants who were classified as high risk were entered into a randomised controlled trial and randomly assigned (1:1), by use of an interactive web-response system, to receive spironolactone 25 mg once daily or matched placebo (trial cohort). The primary endpoint was development of confirmed microalbuminuria in all individuals with available data (observational cohort). Secondary endpoints included reduction in incidence of microalbuminuria with spironolactone (trial cohort, intention-to-treat population) and association between CKD273 risk score and measures of impaired renal function based on estimated glomerular filtration rate (eGFR; observational cohort). Adverse events (particularly gynaecomastia and hyperkalaemia) and serious adverse events were recorded for the intention-to-treat population (trial cohort). This study is registered with the EU Clinical Trials Register (EudraCT 20120-004523-4) and ClinicalTrials.gov (NCT02040441) and is completed. Between March 25, 2014, and Sept 30, 2018, we enrolled and followed-up 1775 participants (observational cohort), 1559 (88%) of 1775 participants had a low-risk urinary proteomic pattern and 216 (12%) had a high-risk pattern, of whom 209 were included in the trial cohort and assigned to spironolactone (n=102) or placebo (n=107). The overall median follow-up time was 2·51 years (IQR 2·0-3·0). Progression to microalbuminuria was seen in 61 (28%) of 216 high-risk participants and 139 (9%) of 1559 low-risk participants (hazard ratio [HR] 2·48, 95% CI 1·80-3·42; p<0·0001, after adjustment for baseline variables of age, sex, HbA In people with type 2 diabetes and normoalbuminuria, a high-risk score from the urinary proteomic classifier CKD273 was associated with an increased risk of progression to microalbuminuria over a median of 2·5 years, independent of clinical characteristics. However, spironolactone did not prevent progression to microalbuminuria in high-risk patients. European Union Seventh Framework Programme.

Sections du résumé

BACKGROUND
Microalbuminuria is an early sign of kidney disease in people with diabetes and indicates increased risk of cardiovascular disease. We tested whether a urinary proteomic risk classifier (CKD273) score was associated with development of microalbuminuria and whether progression to microalbuminuria could be prevented with the mineralocorticoid receptor antagonist spironolactone.
METHODS
In this multicentre, prospective, observational study with embedded randomised controlled trial (PRIORITY), we recruited people with type 2 diabetes, normal urinary albumin excretion, and preserved renal function from 15 specialist centres in ten European countries. All participants (observational cohort) were tested with the CKD273 classifier and classified as high risk (CKD273 classifier score >0·154) or low risk (≤0·154). Participants who were classified as high risk were entered into a randomised controlled trial and randomly assigned (1:1), by use of an interactive web-response system, to receive spironolactone 25 mg once daily or matched placebo (trial cohort). The primary endpoint was development of confirmed microalbuminuria in all individuals with available data (observational cohort). Secondary endpoints included reduction in incidence of microalbuminuria with spironolactone (trial cohort, intention-to-treat population) and association between CKD273 risk score and measures of impaired renal function based on estimated glomerular filtration rate (eGFR; observational cohort). Adverse events (particularly gynaecomastia and hyperkalaemia) and serious adverse events were recorded for the intention-to-treat population (trial cohort). This study is registered with the EU Clinical Trials Register (EudraCT 20120-004523-4) and ClinicalTrials.gov (NCT02040441) and is completed.
FINDINGS
Between March 25, 2014, and Sept 30, 2018, we enrolled and followed-up 1775 participants (observational cohort), 1559 (88%) of 1775 participants had a low-risk urinary proteomic pattern and 216 (12%) had a high-risk pattern, of whom 209 were included in the trial cohort and assigned to spironolactone (n=102) or placebo (n=107). The overall median follow-up time was 2·51 years (IQR 2·0-3·0). Progression to microalbuminuria was seen in 61 (28%) of 216 high-risk participants and 139 (9%) of 1559 low-risk participants (hazard ratio [HR] 2·48, 95% CI 1·80-3·42; p<0·0001, after adjustment for baseline variables of age, sex, HbA
INTERPRETATION
In people with type 2 diabetes and normoalbuminuria, a high-risk score from the urinary proteomic classifier CKD273 was associated with an increased risk of progression to microalbuminuria over a median of 2·5 years, independent of clinical characteristics. However, spironolactone did not prevent progression to microalbuminuria in high-risk patients.
FUNDING
European Union Seventh Framework Programme.

Identifiants

pubmed: 32135136
pii: S2213-8587(20)30026-7
doi: 10.1016/S2213-8587(20)30026-7
pii:
doi:

Substances chimiques

Mineralocorticoid Receptor Antagonists 0
Spironolactone 27O7W4T232

Banques de données

ClinicalTrials.gov
['NCT02040441']

Types de publication

Journal Article Observational Study Randomized Controlled Trial Research Support, Non-U.S. Gov't

Langues

eng

Sous-ensembles de citation

IM

Pagination

301-312

Investigateurs

Silke Zimmermann (S)
Brit Rädisch (B)
Anika Hävemeier (A)
Annette Busmann (A)
Ulrike Wittkop (U)
Barbara Neuhaus (B)
Regina Ax-Smolarski (R)
Veit Zieglschmid (V)
Eva Bollweber (E)
Heidrun Wölk (H)
Viktor R Curovic (VR)
Ninna H Tougaard (NH)
Mie K Eickhoff (MK)
Sascha Pilemann-Lyberg (S)
Signe A Winther (SA)
Signe V Rosenlund (SV)
Tine W Hansen (TW)
Bernt J von Scholten (BJ)
Christian S Hansen (CS)
Emilie H Zobel (EH)
Jens C Laursen (JC)
Simone Theilade (S)
Lone Jelstrup (L)
Tina R Juhl (TR)
Dorthe Riis (D)
Jessie A Hermann (JA)
Anne G Lundgaard (AG)
Maja L D Halkjær (MLD)
Lene Aabo (L)
Therese Frost Lerche (T)
Maria Lajer (M)
Rikke J Stefansen (RJ)
Maria A Campbell (MA)
Annika Durban (A)
Julia Raad (J)
Michael Prigge (M)
Marco Schiemann (M)
Robbie Wilson (R)
Sharon Kean (S)
Elizabeth Douglas (E)
Pamela Surtees (P)
Christina Gant (C)
Stanley M H Yeung (SMH)
Ilse Hagedoorn (I)
Joanne Flynn (J)
Joe Galloway (J)
Katriona Brooksbank (K)
Carolina Aparicio (C)
Ilian P Iliev (IP)
Francesco Nones (F)
Francesca Lo Bue (F)
Daniela Melacini (D)
Daniela Cugini (D)
Silvia Prandini (S)
Verusca Lecchi (V)
Svitlana Yakymchuk (S)
Giulia Gherardi (G)
Alessandro Villa (A)
Davide Villa (D)
Flavio Gaspari (F)
Antonio N Cannata (AN)
Silvia Ferrari (S)
Nadia Stucchi (N)
Šárka Albrechtová (Š)
Elina Eldeik (E)
Renata Amanaki (R)
Beatriz Fernandez-Fernandez (B)
Jinny Sanchez-Rodriguez (J)
Clotilde Vázquez (C)
Ana B Sanz (AB)
Maria D Sanchez-Niño (MD)
Adrian M Ramos (AM)
Maria Á Gonzalo (MÁ)
Ulrike Schmidt (U)
Gjulsen Selim (G)
Tatjana Gjorgovski (T)
Slavica S Stratrova (SS)
Olivera Stojceva-Taneva (O)
Petra Schutten-Westerneng (P)
Brenda Wierbos (B)
Frank Huvers (F)
Anneke K De Bruin (AK)
Bruno Lapauw (B)
Elsie de Man (E)
Kelly Rokegem (K)
Sabien Inion (S)
Kristin Kreutzmann (K)
Isabelle Dewettinck (I)
Caroline Boukens-de Graaf (C)
Ferrina Clerc-de Jong (F)
Jannet Entius (J)
Marian Nannings (M)
Suzy van Steenderen (S)
Friedrich W Petry (FW)
Ceyda Kilic (C)

Commentaires et corrections

Type : CommentIn
Type : CommentIn

Informations de copyright

Copyright © 2020 Elsevier Ltd. All rights reserved.

Auteurs

Nete Tofte (N)

Steno Diabetes Center Copenhagen, Gentofte, Denmark.

Morten Lindhardt (M)

Steno Diabetes Center Copenhagen, Gentofte, Denmark.

Katarina Adamova (K)

University Clinic of Endocrinology, Diabetes and Metabolic Disorders, Skopje, Macedonia.

Stephan J L Bakker (SJL)

Division of Nephrology, Department of Internal Medicine, University Medical Center Groningen, University of Groningen, Groningen, Netherlands.

Joachim Beige (J)

Division of Nephrology and KfH Renal Unit, Hospital St Georg, Leipzig, Germany; Martin-Luther University Halle, Wittenberg, Germany.

Joline W J Beulens (JWJ)

Amsterdam Public Health Research Institute, VU University Medical Center, Amsterdam, Netherlands; Julius Center for Health Sciences and Primary Care, University Medical Center Utrecht, Utrecht, Netherlands.

Andreas L Birkenfeld (AL)

Department of Internal Medicine IV, Division of Endocrinology, Diabetology, and Nephrology, University Hospital Tübingen, Tübingen, Germany; Institute for Diabetes Research and Metabolic Diseases, Helmholtz Center Munich at Eberhard Karls University of Tübingen, Tübingen, Germany; German Center for Diabetes Research, Neuherberg, Germany.

Gemma Currie (G)

Institute of Cardiovascular and Medical Sciences, University of Glasgow, Glasgow, UK.

Christian Delles (C)

Institute of Cardiovascular and Medical Sciences, University of Glasgow, Glasgow, UK.

Ingo Dimos (I)

Diabetespraxis, Leipzig, Germany.

Lidmila Francová (L)

1st Department, Charles University, Third Faculty of Medicine, Prague, Czech Republic.

Marie Frimodt-Møller (M)

Steno Diabetes Center Copenhagen, Gentofte, Denmark.

Peter Girman (P)

Diabetes Center, Institute for Clinical and Experimental Medicine, Prague, Czech Republic.

Rüdiger Göke (R)

Diabetologische Schwerpunktpraxis, Diabetologen Hessen, Marburg, Germany.

Tereza Havrdova (T)

Diabetes Center, Institute for Clinical and Experimental Medicine, Prague, Czech Republic.

Hiddo J L Heerspink (HJL)

Department of Clinical Pharmacy and Pharmacology, University Medical Center Groningen, University of Groningen, Groningen, Netherlands.

Adriaan Kooy (A)

Bethesda Diabetes Research Center, Hoogeveen, Netherlands; Diabetes Vascular Research Foundation (DVRF), Hoogeveen, Netherlands; University Medical Center Groningen, Groningen, Netherlands.

Gozewijn D Laverman (GD)

Department of Internal Medicine/Nephrology, Ziekenhuisgroep Twente Hospital, Almelo, Netherlands.

Harald Mischak (H)

Mosaiques Diagnostics, Hannover, Germany.

Gerjan Navis (G)

Division of Nephrology, Department of Internal Medicine, University Medical Center Groningen, University of Groningen, Groningen, Netherlands.

Giel Nijpels (G)

Department General Practice and Elderly Care, Amsterdam, Netherlands.

Marina Noutsou (M)

Diabetes Center, 2nd Department of Internal Medicine, Medical School, National and Kapodistrian University of Athens, Hippokratio General Hospital, Athens, Greece.

Alberto Ortiz (A)

Instituto de Investigacion Sanitaria de la Fundacion Jiménez Díaz UAM, Madrid, Spain.

Aneliya Parvanova (A)

Department of Renal Medicine, Clinical Research Centre for Rare Diseases "Aldo e CeleDaccò": Istituto di Ricerche Farmacologiche Mario Negri IRCCS, Ranica, Bergamo, Italy.

Frederik Persson (F)

Steno Diabetes Center Copenhagen, Gentofte, Denmark.

John R Petrie (JR)

Institute of Cardiovascular and Medical Sciences, University of Glasgow, Glasgow, UK.

Piero L Ruggenenti (PL)

Department of Renal Medicine, Clinical Research Centre for Rare Diseases "Aldo e CeleDaccò": Istituto di Ricerche Farmacologiche Mario Negri IRCCS, Ranica, Bergamo, Italy.

Femke Rutters (F)

Amsterdam Public Health Research Institute, VU University Medical Center, Amsterdam, Netherlands.

Ivan Rychlík (I)

1st Department, Charles University, Third Faculty of Medicine, Prague, Czech Republic; Faculty Hospital Královské Vinohrady, Prague, Czech Republic.

Justyna Siwy (J)

Mosaiques Diagnostics, Hannover, Germany.

Goce Spasovski (G)

Department of Nephrology, Cyril and Methodius University in Skopje, Skopje, North Macedonia.

Marijn Speeckaert (M)

Department of Nephrology, Ghent University Hospital, Ghent, Belgium.

Matias Trillini (M)

Department of Renal Medicine, Clinical Research Centre for Rare Diseases "Aldo e CeleDaccò": Istituto di Ricerche Farmacologiche Mario Negri IRCCS, Ranica, Bergamo, Italy.

Petra Zürbig (P)

Mosaiques Diagnostics, Hannover, Germany.

Heiko von der Leyen (H)

Hannover Clinical Trial Center, Hannover Medical School, Hannover, Germany.

Peter Rossing (P)

Steno Diabetes Center Copenhagen, Gentofte, Denmark; University of Copenhagen, Copenhagen, Denmark. Electronic address: peter.rossing@regionh.dk.

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