NCT03194711

Brief Summary

The single center retrospective study evaluates the acute and long term outcomes of bioabsorbable drug-eluting scaffolds (BVS) implantation in 50 consecutive coronary artery disease (CAD) patients using optical coherence tomography (OCT) imaging.

Trial Health

87
On Track

Trial Health Score

Automated assessment based on enrollment pace, timeline, and geographic reach

Enrollment
40

participants targeted

Target at P25-P50 for all trials

Timeline
Completed

Started May 2017

Shorter than P25 for all trials

Geographic Reach
1 country

1 active site

Status
completed

Health score is calculated from publicly available data and should be used for screening purposes only.

Trial Relationships

Click on a node to explore related trials.

Study Timeline

Key milestones and dates

Study Start

First participant enrolled

May 30, 2017

Completed
20 days until next milestone

First Submitted

Initial submission to the registry

June 19, 2017

Completed
2 days until next milestone

First Posted

Study publicly available on registry

June 21, 2017

Completed
10 months until next milestone

Primary Completion

Last participant's last visit for primary outcome

April 17, 2018

Completed
Same day until next milestone

Study Completion

Last participant's last visit for all outcomes

April 17, 2018

Completed
Last Updated

May 7, 2018

Status Verified

May 1, 2018

Enrollment Period

11 months

First QC Date

June 19, 2017

Last Update Submit

May 4, 2018

Conditions

Keywords

Percutaneous Coronary RevascularizationOptical Coherence TomographyStents, Drug-Eluting

Outcome Measures

Primary Outcomes (2)

  • Acute lumen gain by quantitative coronary angiography (QCA)

    Acute lumen gain after BVS implantation by quantitative coronary angiography (QCA)

    1 year

  • Acute lumen gain by Optical Coherence Tomography (OCT)

    Acute lumen gain after BVS implantation by OCT

    1 year

Secondary Outcomes (1)

  • Major adverse cardiac events

    1 year

Study Arms (1)

Patients with stable CAD

Device: BVS implantation

Interventions

BVS implantation using conventional semicompliant or non-compliant balloon

Patients with stable CAD

Eligibility Criteria

Age18 Years+
Sexall
Healthy VolunteersNo
Age GroupsAdult (18-64), Older Adult (65+)
Sampling MethodProbability Sample
Study Population

Mount Sinai Catheterization laboratory patients who who underwent PCI with BVS implantation and OCT imaging for treatment of CAD

You may qualify if:

  • Consecutive patients who underwent PCI with BVS implantation and OCT imaging for treatment of CAD

You may not qualify if:

  • None

Contact the study team to confirm eligibility.

Sponsors & Collaborators

Study Sites (1)

Icahn School of Medicine at Mount Sinai

New York, New York, 10029, United States

Location

Related Publications (11)

  • Mattesini A, Secco GG, Dall'Ara G, Ghione M, Rama-Merchan JC, Lupi A, Viceconte N, Lindsay AC, De Silva R, Foin N, Naganuma T, Valente S, Colombo A, Di Mario C. ABSORB biodegradable stents versus second-generation metal stents: a comparison study of 100 complex lesions treated under OCT guidance. JACC Cardiovasc Interv. 2014 Jul;7(7):741-50. doi: 10.1016/j.jcin.2014.01.165.

    PMID: 25060016BACKGROUND
  • Serruys PW, Onuma Y, Garcia-Garcia HM, Muramatsu T, van Geuns RJ, de Bruyne B, Dudek D, Thuesen L, Smits PC, Chevalier B, McClean D, Koolen J, Windecker S, Whitbourn R, Meredith I, Dorange C, Veldhof S, Hebert KM, Rapoza R, Ormiston JA. Dynamics of vessel wall changes following the implantation of the absorb everolimus-eluting bioresorbable vascular scaffold: a multi-imaging modality study at 6, 12, 24 and 36 months. EuroIntervention. 2014 Mar 20;9(11):1271-84. doi: 10.4244/EIJV9I11A217.

    PMID: 24291783BACKGROUND
  • Serruys PW, Chevalier B, Dudek D, Cequier A, Carrie D, Iniguez A, Dominici M, van der Schaaf RJ, Haude M, Wasungu L, Veldhof S, Peng L, Staehr P, Grundeken MJ, Ishibashi Y, Garcia-Garcia HM, Onuma Y. A bioresorbable everolimus-eluting scaffold versus a metallic everolimus-eluting stent for ischaemic heart disease caused by de-novo native coronary artery lesions (ABSORB II): an interim 1-year analysis of clinical and procedural secondary outcomes from a randomised controlled trial. Lancet. 2015 Jan 3;385(9962):43-54. doi: 10.1016/S0140-6736(14)61455-0. Epub 2014 Sep 14.

    PMID: 25230593BACKGROUND
  • Kimura T, Kozuma K, Tanabe K, Nakamura S, Yamane M, Muramatsu T, Saito S, Yajima J, Hagiwara N, Mitsudo K, Popma JJ, Serruys PW, Onuma Y, Ying S, Cao S, Staehr P, Cheong WF, Kusano H, Stone GW; ABSORB Japan Investigators. A randomized trial evaluating everolimus-eluting Absorb bioresorbable scaffolds vs. everolimus-eluting metallic stents in patients with coronary artery disease: ABSORB Japan. Eur Heart J. 2015 Dec 14;36(47):3332-42. doi: 10.1093/eurheartj/ehv435. Epub 2015 Sep 1.

    PMID: 26330419BACKGROUND
  • Ellis SG, Kereiakes DJ, Metzger DC, Caputo RP, Rizik DG, Teirstein PS, Litt MR, Kini A, Kabour A, Marx SO, Popma JJ, McGreevy R, Zhang Z, Simonton C, Stone GW; ABSORB III Investigators. Everolimus-Eluting Bioresorbable Scaffolds for Coronary Artery Disease. N Engl J Med. 2015 Nov 12;373(20):1905-15. doi: 10.1056/NEJMoa1509038. Epub 2015 Oct 12.

    PMID: 26457558BACKGROUND
  • Capodanno D, Gori T, Nef H, Latib A, Mehilli J, Lesiak M, Caramanno G, Naber C, Di Mario C, Colombo A, Capranzano P, Wiebe J, Araszkiewicz A, Geraci S, Pyxaras S, Mattesini A, Naganuma T, Munzel T, Tamburino C. Percutaneous coronary intervention with everolimus-eluting bioresorbable vascular scaffolds in routine clinical practice: early and midterm outcomes from the European multicentre GHOST-EU registry. EuroIntervention. 2015 Feb;10(10):1144-53. doi: 10.4244/EIJY14M07_11.

    PMID: 25042421BACKGROUND
  • Garcia-Garcia HM, Serruys PW, Campos CM, Muramatsu T, Nakatani S, Zhang YJ, Onuma Y, Stone GW. Assessing bioresorbable coronary devices: methods and parameters. JACC Cardiovasc Imaging. 2014 Nov;7(11):1130-48. doi: 10.1016/j.jcmg.2014.06.018. Epub 2014 Nov 10.

    PMID: 25459595BACKGROUND
  • Ormiston JA, Serruys PW, Onuma Y, van Geuns RJ, de Bruyne B, Dudek D, Thuesen L, Smits PC, Chevalier B, McClean D, Koolen J, Windecker S, Whitbourn R, Meredith I, Dorange C, Veldhof S, Hebert KM, Rapoza R, Garcia-Garcia HM. First serial assessment at 6 months and 2 years of the second generation of absorb everolimus-eluting bioresorbable vascular scaffold: a multi-imaging modality study. Circ Cardiovasc Interv. 2012 Oct;5(5):620-32. doi: 10.1161/CIRCINTERVENTIONS.112.971549. Epub 2012 Oct 9.

    PMID: 23048057BACKGROUND
  • Kini AS, Vengrenyuk Y, Pena J, Motoyama S, Feig JE, Meelu OA, Rajamanickam A, Bhat AM, Panwar S, Baber U, Sharma SK. Optical coherence tomography assessment of the mechanistic effects of rotational and orbital atherectomy in severely calcified coronary lesions. Catheter Cardiovasc Interv. 2015 Nov 15;86(6):1024-32. doi: 10.1002/ccd.26000. Epub 2015 May 11.

    PMID: 25964009BACKGROUND
  • Kini AS, Motoyama S, Vengrenyuk Y, Feig JE, Pena J, Baber U, Bhat AM, Moreno P, Kovacic JC, Narula J, Sharma SK. Multimodality Intravascular Imaging to Predict Periprocedural Myocardial Infarction During Percutaneous Coronary Intervention. JACC Cardiovasc Interv. 2015 Jun;8(7):937-45. doi: 10.1016/j.jcin.2015.03.016.

    PMID: 26088511BACKGROUND
  • Tearney GJ, Regar E, Akasaka T, Adriaenssens T, Barlis P, Bezerra HG, Bouma B, Bruining N, Cho JM, Chowdhary S, Costa MA, de Silva R, Dijkstra J, Di Mario C, Dudek D, Falk E, Feldman MD, Fitzgerald P, Garcia-Garcia HM, Gonzalo N, Granada JF, Guagliumi G, Holm NR, Honda Y, Ikeno F, Kawasaki M, Kochman J, Koltowski L, Kubo T, Kume T, Kyono H, Lam CC, Lamouche G, Lee DP, Leon MB, Maehara A, Manfrini O, Mintz GS, Mizuno K, Morel MA, Nadkarni S, Okura H, Otake H, Pietrasik A, Prati F, Raber L, Radu MD, Rieber J, Riga M, Rollins A, Rosenberg M, Sirbu V, Serruys PW, Shimada K, Shinke T, Shite J, Siegel E, Sonoda S, Suter M, Takarada S, Tanaka A, Terashima M, Thim T, Uemura S, Ughi GJ, van Beusekom HM, van der Steen AF, van Es GA, van Soest G, Virmani R, Waxman S, Weissman NJ, Weisz G; International Working Group for Intravascular Optical Coherence Tomography (IWG-IVOCT). Consensus standards for acquisition, measurement, and reporting of intravascular optical coherence tomography studies: a report from the International Working Group for Intravascular Optical Coherence Tomography Standardization and Validation. J Am Coll Cardiol. 2012 Mar 20;59(12):1058-72. doi: 10.1016/j.jacc.2011.09.079. Erratum In: J Am Coll Cardiol. 2012 May 1;59(18):1662. Dudeck, Darius [corrected to Dudek, Darius]; Falk, Erlin [corrected to Falk, Erling]; Garcia, Hector [corrected to Garcia-Garcia, Hector M]; Sonada, Shinjo [corrected to Sonoda, Shinjo]; Troels, Thim [corrected to Thim, Troels]; van Es, Gerrit-Ann [correct.

    PMID: 22421299BACKGROUND

MeSH Terms

Conditions

Coronary Disease

Condition Hierarchy (Ancestors)

Myocardial IschemiaHeart DiseasesCardiovascular DiseasesVascular Diseases

Study Officials

  • Annapoorna Kini, MD, MRCP, FACC

    Icahn School of Medicine at Mount Sinai

    PRINCIPAL INVESTIGATOR

Study Design

Study Type
observational
Observational Model
CASE ONLY
Time Perspective
RETROSPECTIVE
Sponsor Type
OTHER
Responsible Party
SPONSOR

Study Record Dates

First Submitted

June 19, 2017

First Posted

June 21, 2017

Study Start

May 30, 2017

Primary Completion

April 17, 2018

Study Completion

April 17, 2018

Last Updated

May 7, 2018

Record last verified: 2018-05

Data Sharing

IPD Sharing
Will not share

Locations