Evidence mapPaperPMID 33913339Full record

Trial reportCirculation2021

Effect of Denosumab or Alendronic Acid on the Progression of Aortic Stenosis: A Double-Blind Randomized Controlled Trial.

Tania A Pawade, Mhairi K Doris, Rong Bing, Audrey C White, Laura Forsyth, Emily Evans, Catriona Graham, Michelle C Williams, Edwin J R van Beek, Alison Fletcher and 13 more

Registry-linked trialOpen access · bronzeAbstract readRandomized Controlled Trial
In one paragraph

Trial report in Circulation, 2021. The graph could read no effect estimate from its abstract, so it casts no vote on the map. It is linked to trial NCT02132026 (SALTIRE II), which is not on this map. Cited by 77 papers, 5 of them syntheses that pooled it.

0numbers the graph read from it
0cells of the map it votes in
77citing papers in PubMed, 5 pooled it
14.6field-weighted citation impact, top 1% of its field
1 · What the graph read from it

What it found

Each row is one number read from the abstract, on the scale the paper reported it, with its interval. Left of the dashed line favours the treatment, right favours the comparator. Under each row is the sentence it came from. New to these charts? A ten-minute tutorial.

The abstract states no effect estimate the extractor could read, or names no intervention and outcome on the map, so this paper lights no cell and moves no belief. It is still indexed, cited and linked below.

2 · The registry

The trial behind it

Trials whose registry record cites this paper, or whose number appears in the abstract. A trial that started after this paper was published is citing it as background, not reporting it.

NCT02132026 phase2completednot on this map

SALTIRE II: Bisphosphonates and RANKL Inhibition in Aortic Stenosis

TypeinterventionalSponsorUniversity of EdinburghRan2014 to 2019Enrolled152ConditionsCalcific Aortic StenosisArmsDenosumab, Alendronic Acid, Denosumab Placebo, Alendronic Acid Placebo
3 · Its place in the literature

Who cites it

77 citing papers in PubMed, 5 syntheses or guidelines pooled it, 139 citations in OpenAlex.

  1. Effect of osteoporosis medications on vascular and valvular calcification: a systematic review and meta-analysis.Osteoporosis international : a journal established as result of cooperation between the European Foundation for Osteoporosis and the National Osteoporosis Foundation of the USA · 2025
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  3. Oxidized Phospholipids and Calcific Aortic Valvular Disease.Journal of the American College of Cardiology · 2024
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17 more citing papers are in PubMed but not listed here.

4 · The record

Corrections and comments

5 · Who and what money

Authors and funding

23 authors at 6 institutions in 3 countries.

Tania A Pawade *British Heart Foundation Centre for Cardiovascular Science (T.A.P., M.K.D., R.B., A.C.W., M.C.W., P.D.A., J.P.M.A., T.R.G.C., W.S.A.J., M.S., T.F., N.B., D.E.N., M.R.D.), University of Edinburgh, United Kingdom.
Mhairi K Doris *British Heart Foundation Centre for Cardiovascular Science (T.A.P., M.K.D., R.B., A.C.W., M.C.W., P.D.A., J.P.M.A., T.R.G.C., W.S.A.J., M.S., T.F., N.B., D.E.N., M.R.D.), University of Edinburgh, United Kingdom.
Rong Bing *British Heart Foundation Centre for Cardiovascular Science (T.A.P., M.K.D., R.B., A.C.W., M.C.W., P.D.A., J.P.M.A., T.R.G.C., W.S.A.J., M.S., T.F., N.B., D.E.N., M.R.D.), University of Edinburgh, United Kingdom.
Audrey C WhiteBritish Heart Foundation Centre for Cardiovascular Science (T.A.P., M.K.D., R.B., A.C.W., M.C.W., P.D.A., J.P.M.A., T.R.G.C., W.S.A.J., M.S., T.F., N.B., D.E.N., M.R.D.), University of Edinburgh, United Kingdom.
Laura ForsythEdinburgh Clinical Trials Unit (L.F.), University of Edinburgh, United Kingdom.
Emily EvansEdinburgh Clinical Research Facility (E.E., C.G.), University of Edinburgh, United Kingdom.
Catriona GrahamEdinburgh Clinical Research Facility (E.E., C.G.), University of Edinburgh, United Kingdom.
Michelle C WilliamsBritish Heart Foundation Centre for Cardiovascular Science (T.A.P., M.K.D., R.B., A.C.W., M.C.W., P.D.A., J.P.M.A., T.R.G.C., W.S.A.J., M.S., T.F., N.B., D.E.N., M.R.D.), University of Edinburgh, United Kingdom.
Edwin J R van BeekEdinburgh Imaging (E.J.R.v.B., A.F., C.L.), University of Edinburgh, United Kingdom.
Alison FletcherEdinburgh Imaging (E.J.R.v.B., A.F., C.L.), University of Edinburgh, United Kingdom.
Philip D AdamsonBritish Heart Foundation Centre for Cardiovascular Science (T.A.P., M.K.D., R.B., A.C.W., M.C.W., P.D.A., J.P.M.A., T.R.G.C., W.S.A.J., M.S., T.F., N.B., D.E.N., M.R.D.), University of Edinburgh, United Kingdom.
Jack P M AndrewsBritish Heart Foundation Centre for Cardiovascular Science (T.A.P., M.K.D., R.B., A.C.W., M.C.W., P.D.A., J.P.M.A., T.R.G.C., W.S.A.J., M.S., T.F., N.B., D.E.N., M.R.D.), University of Edinburgh, United Kingdom.
Timothy R G CartlidgeBritish Heart Foundation Centre for Cardiovascular Science (T.A.P., M.K.D., R.B., A.C.W., M.C.W., P.D.A., J.P.M.A., T.R.G.C., W.S.A.J., M.S., T.F., N.B., D.E.N., M.R.D.), University of Edinburgh, United Kingdom.
William S A JenkinsBritish Heart Foundation Centre for Cardiovascular Science (T.A.P., M.K.D., R.B., A.C.W., M.C.W., P.D.A., J.P.M.A., T.R.G.C., W.S.A.J., M.S., T.F., N.B., D.E.N., M.R.D.), University of Edinburgh, United Kingdom.
Maaz SyedBritish Heart Foundation Centre for Cardiovascular Science (T.A.P., M.K.D., R.B., A.C.W., M.C.W., P.D.A., J.P.M.A., T.R.G.C., W.S.A.J., M.S., T.F., N.B., D.E.N., M.R.D.), University of Edinburgh, United Kingdom.
Takeshi FujisawaBritish Heart Foundation Centre for Cardiovascular Science (T.A.P., M.K.D., R.B., A.C.W., M.C.W., P.D.A., J.P.M.A., T.R.G.C., W.S.A.J., M.S., T.F., N.B., D.E.N., M.R.D.), University of Edinburgh, United Kingdom.
Christophe LucatelliEdinburgh Imaging (E.J.R.v.B., A.F., C.L.), University of Edinburgh, United Kingdom.
William FraserNorwich Medical School, University of East Anglia, United Kingdom (W.F.).
Stuart H RalstonInstitute of Genetics and Molecular Medicine (S.H.R.), University of Edinburgh, United Kingdom.
Nicholas BoonBritish Heart Foundation Centre for Cardiovascular Science (T.A.P., M.K.D., R.B., A.C.W., M.C.W., P.D.A., J.P.M.A., T.R.G.C., W.S.A.J., M.S., T.F., N.B., D.E.N., M.R.D.), University of Edinburgh, United Kingdom.
Bernard PrendergastKing's College London, United Kingdom (B.P.).
David E NewbyBritish Heart Foundation Centre for Cardiovascular Science (T.A.P., M.K.D., R.B., A.C.W., M.C.W., P.D.A., J.P.M.A., T.R.G.C., W.S.A.J., M.S., T.F., N.B., D.E.N., M.R.D.), University of Edinburgh, United Kingdom.
Marc R DweckBritish Heart Foundation Centre for Cardiovascular Science (T.A.P., M.K.D., R.B., A.C.W., M.C.W., P.D.A., J.P.M.A., T.R.G.C., W.S.A.J., M.S., T.F., N.B., D.E.N., M.R.D.), University of Edinburgh, United Kingdom.
British Heart Foundation · GBUniversity of Edinburgh · GBInstitute of Genetics and Cancer · GBJohnson & Johnson (United Kingdom) · GBKing's College - North Carolina · USUniversity of East Anglia · GB

Funding

British Heart Foundation CH/09/002/26360British Heart Foundation FS/13/77/30488British Heart Foundation FS/14/78/31020British Heart Foundation FS/16/19/31982British Heart Foundation FS/ICRF/20/26002British Heart Foundation RG/16/10/32375Wellcome Trust WT103782AIA
6 · The paper itself

Abstract

backgroundValvular calcification is central to the pathogenesis and progression of aortic stenosis, with preclinical and observational studies suggesting that bone turnover and osteoblastic differentiation of valvular interstitial cells are important contributory mechanisms. We aimed to establish whether inhibition of these pathways with denosumab or alendronic acid could reduce disease progression in aortic stenosis.

methodsIn a single-center, parallel group, double-blind randomized controlled trial, patients >50 years of age with calcific aortic stenosis (peak aortic jet velocity >2.5 m/s) were randomized 2:1:2:1 to denosumab (60 mg every 6 months), placebo injection, alendronic acid (70 mg once weekly), or placebo capsule. Participants underwent serial assessments with Doppler echocardiography, computed tomography aortic valve calcium scoring, and

resultsA total of 150 patients (mean age, 72±8 years; 21% women) with calcific aortic stenosis (peak aortic jet velocity, 3.36 m/s [2.93-3.82 m/s]; aortic valve calcium score, 1152 AU [655-2065 AU]) were randomized and received the allocated trial intervention: denosumab (n=49), alendronic acid (n=51), and placebo (injection n=25, capsule n=25; pooled for analysis). Serum C-terminal telopeptide, a measure of bone turnover, halved from baseline to 6 months with denosumab (0.23 [0.18-0.33 µg/L] to 0.11 µg/L [0.08-0.17 µg/L]) and alendronic acid (0.20 [0.14-0.28 µg/L] to 0.09 µg/L [0.08-0.13 µg/L]) but was unchanged with placebo (0.23 [0.17-0.30 µg/L] to 0.26 µg/L [0.16-0.31 µg/L]). There were no differences in 24-month change in aortic valve calcium score between denosumab and placebo (343 [198-804 AU] versus 354 AU [76-675 AU]; P=0.41) or alendronic acid and placebo (326 [138-813 AU] versus 354 AU [76-675 AU];

conclusionsNeither denosumab nor alendronic acid affected progression of aortic valve calcification in patients with calcific aortic stenosis. Alternative pathways and mechanisms need to be explored to identify disease-modifying therapies for the growing population of patients with this potentially fatal condition. Registration: URL: https://www.clinicaltrials.gov; Unique identifier: NCT02132026.

Indexed as

Disease ProgressionAgedAged, 80 and overAlendronateAortic Valve StenosisBone Density Conservation AgentsDenosumabDouble-Blind MethodFemaleHumansMaleMiddle AgedPositron Emission Tomography Computed TomographyTreatment OutcomeVascular CalcificationAlendronateBone Density Conservation AgentsDenosumabalendronateaortic stenosiscalcium signalingcomputed tomography, X-raydenosumab

Identifiers

PMID33913339
PMCPMC8212878
OpenAlexW3158108305

What Socratic holds

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Registered trials

Read under generation 80e0d062 · epoch 390. Bibliography from PubMed, PubMed Central and OpenAlex; grants from NIH RePORTER; trial links from ClinicalTrials.gov; estimates, votes and beliefs from the Socratic graph.