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Infants and children born with severe cardiac valve lesions have no effective long term treatment options since currently available tissue or mechanical prosthetic valves have sizing limitations and no avenue to accommodate the growth of the pediatric patient. Tissue engineered heart valves (TEHVs) which could provide for growth, self-repair, infection resistance, and long-term replacement could be an ideal solution. Porcine small intestinal submucosa (PSIS) has recently emerged as a potentially attractive bioscaffold for TEHVs. PSIS may possess the ability to recruit endogenous cardiovascular cells, leading to phenotypically-matched replacement tissue when the scaffold has completely degraded. Our group has successfully implanted custom-made PSIS valves in 4 infants with critical valve defects in whom standard bioprosthetic or mechanical valves were not an option. Short term clinical follow-up has been promising. However, no hydrodynamic data has been reported to date on these valves. The purpose of this study was to assess the functional effectiveness of tri-leaflet PSIS bioscaffolds in the aortic position compared to standard tri-leaflet porcine bioprosthetic valves. Hydrodynamic evaluation of acute PSIS function was conducted using a left heart simulator in our laboratory. Our results demonstrated similar flow and pressure profiles (p > 0.05) between the PSIS valves and the control valves. However, forward flow energy losses were found to be significantly greater (p < 0.05) in the PSIS valves compared to the controls possibly as a result of stiffer material properties of PSIS relative to glutaraldehyde-fixed porcine valve tissue. Our findings suggest that optimization of valve dimensions and shape may be important in accelerating de novo valve tissue growth and avoidance of long-term complications associated with higher energy losses (e.g. left ventricular hypertrophy). Furthermore, long term animal and clinical studies will be needed in order to conclusively address somatic growth potential of PSIS valves.
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http://dx.doi.org/10.1007/s13239-016-0290-x | DOI Listing |
Circ Cardiovasc Interv
September 2025
Keele Cardiovascular Research Group, Keele University, United Kingdom (M.A.M., R.B.).
Background: Evidence informing clinical guidelines assumes that all transcatheter aortic valve implantation (TAVI) devices have similar effectiveness, in other words, displaying a class effect across TAVI valves. We aimed to assess the comparative effectiveness of different TAVI platforms relative to other TAVI counterparts or surgical aortic valve replacement (SAVR).
Methods: MEDLINE/Embase/CENTRAL were searched from inception until April 2025, for randomized controlled trials comparing outcomes with different commercially available TAVI devices relative to other TAVI counterparts or SAVR.
Multimed Man Cardiothorac Surg
September 2025
Robotic mitral repair is often associated with longer ischaemic and cardiopulmonary bypass times, particularly early in the learning curve. We demonstrate a semi-continuous, three-suture technique for robotic annuloplasty that retains the mechanical principles of traditional interrupted sutures while leveraging the advantages of robotic precision and exposure. The use of pre-knotted sutures minimizes intra-cardiac knot tying, further enhancing procedural efficiency.
View Article and Find Full Text PDFRev Med Liege
September 2025
Service de Pneumologie, CHU Liège, Belgique.
Severe emphysema impairs lung function and quality of life in patients with Chronic Obstructive Pulmonary Disease (COPD). Despite optimized medical treatment and rehabilitation, some patients require lung volume reduction interventions (endoscopic or surgical). This study evaluates one-year outcomes of patients managed at the Emphysema Clinic of CHU Liège.
View Article and Find Full Text PDFTurk Kardiyol Dern Ars
September 2025
Division of Arrhythmia and Electrophysiology, Department of Cardiology, University of Health Sciences, Yuksek Ihtisas Cardiovascular Building, Ankara City Hospital, Ankara, Türkiye.
Objective: Transvenous lead extraction (TLE) is used in various clinical scenarios, such as device-related infections. Mechanically powered sheaths are one of the most commonly used tools for TLE procedures. We evaluated the procedural and clinical outcomes of a novel extraction technique for chronically implanted leads in the treatment of device-related infections.
View Article and Find Full Text PDFCardiol Young
September 2025
Congenital Valve Procedural Planning Program, Division of Pediatric Cardiac Surgery, Cleveland Clinic Children's, and Heart, Vascular, and Thoracic Institute, Cleveland Clinic, Cleveland, OH, USA.
Background: Congenital aortic valvar disease represents a heterogeneous population with suboptimal surgical repair or replacement outcomes. We assess our approach and short-term outcomes in this population using cardiac CT evaluation for personalised surgical planning and execution.
Methods: We assessed patients who underwent aortic valvar surgery from February 2022 to August 2024.