Literature DB >> 34318261

Commentary: Don't leave patients to their own devices: Consider long-term complications after percutaneous atrial septal defect closure.

Neel K Prabhu1,2,3, Joseph W Turek1,2,3, Nicholas D Andersen1,2,3.   

Abstract

Entities:  

Year:  2021        PMID: 34318261      PMCID: PMC8311685          DOI: 10.1016/j.xjtc.2021.02.015

Source DB:  PubMed          Journal:  JTCVS Tech        ISSN: 2666-2507


× No keyword cloud information.
Infective endocarditis is an important late complication after ASD device closure. Patients undergoing percutaneous closure of atrial septal defects require close monitoring for late complications such as infective endocarditis, cardiac erosion, and valve damage. See Article page 240. Percutaneous device closure of atrial septal defects (ASDs) was introduced in the late 1990s as a feasible alternative to surgical repair. Since then, several studies have shown that short-term outcomes and complication rates after percutaneous ASD closure are noninferior to those after surgery., However, an important consideration with percutaneous ASD closure is the prevalence of late complications that have come to light after its widespread adoption. Some of these, including cardiac erosion, thromboembolism, and infective endocarditis, carry significant morbidity and mortality. Kitamura and colleagues present a case report of a 20-year-old man with atopic dermatitis and a secundum ASD who was treated with Amplatzer device (Abbott, Abbott Park, Ill) closure and developed endocarditis with large mobile vegetations 3 years later. The authors concluded that ASD closure devices are associated with risks of thrombotic and infectious complications over the long-term. Kitamura and colleagues should be commended for publishing this interesting report. They provide context for their work and discuss a complication which holds relevance for primary care providers, interventional cardiologists, and cardiovascular surgeons alike. In addition, the authors describe well the preoperative findings and operative techniques used to address the lesion. However, additional details about the medical and social history of the patient, such as comorbidities and history of intravenous or inhaled substance use, could possibly elucidate additional characteristics of the high-risk patient. Furthermore, the authors do not quantify from either their personal experience or literature review the prevalence of ASD device complications. It is intriguing that several case reports describe the same complication of late endocarditis after ASD device deployment.5, 6, 7 As Kitamura and colleagues describe, a likely explanation for this pathology is poor endothelialization of the device and resultant exposure of bare pro-thrombotic metal that could also provide a surface for bacterial adhesion. Although endocarditis is relatively rare after ASD device placement, with approximately 20 cases reported in the literature to date, it carries significant morbidity and mortality because more than 85% of these patients required surgery and 11% experienced operative mortality. Other analyses have reported several other long-term complications after ASD device placement, such as cardiac erosion, nickel hypersensitivity, and valve damage, all of which often present suddenly and are potentially lethal. Although there are no differences in short-term complication rates between surgical and device ASD closure, similar sudden late complications after surgery are relatively rare. Although percutaneous ASD closure has become the preferred treatment at many centers due to the shorter recovery and less invasiveness, it is important to carefully follow patients long-term after ASD device closure. This is especially important for those vulnerable patients with underlying immunocompromise, syndromic comorbidities, or metabolic derangements. In addition, patients with risk factors for endocarditis certainly may be better served with a traditional surgical repair, which remains the gold standard for ASD closure. Kitamura and colleagues should be commended for their contribution to the literature on a late complication of percutaneous ASD closure. Indeed, after undergoing this procedure, patients should not be left to their own devices!
  9 in total

1.  Images in cardiovascular medicine. Incomplete endothelialization and late development of acute bacterial endocarditis after implantation of an Amplatzer septal occluder device.

Authors:  Timothy C Slesnick; Alan W Nugent; Charles D Fraser; Bryan C Cannon
Journal:  Circulation       Date:  2008-05-06       Impact factor: 29.690

2.  Late endocarditis of Amplatzer atrial septal occluder device in a child.

Authors:  Neerod K Jha; Laszlo Kiraly; John Sk Murala; Csaba Tamas; Haitham Talo; Hazem El Badaoui; Magdi Tofeig; Malaika Mendonca; Sameer Sajwani; Mary A Thomas; Sura Ahmed Al Doory; Mohammad D Khan
Journal:  World J Cardiol       Date:  2015-10-26

Review 3.  Infective endocarditis after device closure of atrial septal defects: Case report and review of the literature.

Authors:  Pascal Amedro; Camille Soulatges; Alain Fraisse
Journal:  Catheter Cardiovasc Interv       Date:  2016-09-19       Impact factor: 2.692

4.  Endocarditis and Incomplete Endothelialization 12 Years after Amplatzer Septal Occluder Deployment.

Authors:  Allan K Nguyen; Brian A Palafox; Joanne P Starr; Richard N Gates; Farbouch Berdjis
Journal:  Tex Heart Inst J       Date:  2016-06-01

5.  Surgical and transcatheter (Amplatzer) closure of atrial septal defects: a prospective comparison of results and cost.

Authors:  J D R Thomson; E H Aburawi; K G Watterson; C Van Doorn; J L Gibbs
Journal:  Heart       Date:  2002-05       Impact factor: 5.994

Review 6.  Long-term Complications After Transcatheter Atrial Septal Defect Closure: A Review of the Medical Literature.

Authors:  Zakaria Jalal; Sebastien Hascoet; Alban-Elouen Baruteau; Xavier Iriart; Bernard Kreitmann; Younes Boudjemline; Jean-Benoit Thambo
Journal:  Can J Cardiol       Date:  2016-03-03       Impact factor: 5.223

7.  Transcatheter closure of secundum atrial septal defects using the new self-centering amplatzer septal occluder: initial human experience.

Authors:  J Masura; P Gavora; A Formanek; Z M Hijazi
Journal:  Cathet Cardiovasc Diagn       Date:  1997-12

8.  Results of the U.S. multicenter pivotal study of the HELEX septal occluder for percutaneous closure of secundum atrial septal defects.

Authors:  Thomas K Jones; Larry A Latson; Evan Zahn; Craig E Fleishman; Joth Jacobson; Robert Vincent; Kirk Kanter
Journal:  J Am Coll Cardiol       Date:  2007-05-09       Impact factor: 24.094

9.  Mobile vegetations on a poorly endothelialized atrial septal defect closure device.

Authors:  Hideki Kitamura; Masanori Yamamoto; Ai Kagase
Journal:  JTCVS Tech       Date:  2021-01-13
  9 in total
  1 in total

1.  A Rare Ultra-Long-Term Complication of Occluder Recanalization Due to Spontaneous Perforation of Polyvinyl Alcohol Membrane of Atrial Septal Defect Occluder: A Case Report and Review of the Literature.

Authors:  Kun Xiang; Huanwei Zhuang; Qin Wu; Mi Tang; Jinfu Yang; Chengming Fan
Journal:  Front Cardiovasc Med       Date:  2022-07-22
  1 in total

北京卡尤迪生物科技股份有限公司 © 2022-2023.