During interventional surgeries of implantable cardiovascular devices in addressing cardiovascular diseases (CVD), the inevitable tissue damage will trigger host inflammation and vascular lumen injury, leading to delayed re-endothelization and intimal hyperplasia. Endowing cardiovascular implants with anti-inflammatory and endothelialization functions is conducive to the target site, offering significant tissue repair and regeneration benefits. Herein, inspired by the snake's molting process, a ShedWise device was developed by using the poly(propylene fumarate) polyurethane (PPFU) as the foundational material, which was clicked with hyperbranched polylysine (HBPL) and followed by conjugation with pro-endothelial functional Arg-Glu-Asp-Val peptide (REDV), and finally coated with a "self-sacrificing" layer having reactive oxygen species (ROS)-scavenging ability and degradability. During the acute inflammation in the initial stage of implantation, the ROS-responsive hyperbranched poly(acrylate-capped thioketone-containing ethylene glycol (HBPAK) coating effectively modulated the level of environmental inflammation and resisted initial protein adsorption, showcasing robust tissue protection. As the coating gradually "sacrificed", the exposed hyperbranched HBPL-REDV layer recruited specifically endothelial cells and promoted surface endothelialization. In a rat vascular injury model, the ShedWise demonstrated remarkable efficiency in reducing vascular restenosis, protecting the injured tissue, and fostering re-endothelization of the target site. This innovative design will introduce a novel strategy for surface engineering of cardiovascular implants and other medical devices.
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http://dx.doi.org/10.1016/j.bioactmat.2025.01.037 | DOI Listing |
BJS Open
March 2025
Liverpool Centre for Cardiovascular Sciences, Liverpool Heart and Chest Hospital, Liverpool, UK.
Background: Acute Stanford type A aortic dissection is a severe emergency condition that, if left untreated, is associated with a high mortality rate. The extent of surgical repair may impact the outcomes of these patients.
Method: Patients operated for acute type A aortic dissection from a multicentre European registry were included.
Artif Organs
March 2025
The BioRobotics Insitute and Department of Excellence of Robotics & AI, Scuola Superiore Sant'Anna, Pontedera, Italy.
Background: In cardiovascular engineering, the recent introduction of soft robotic technologies sheds new light on the future of implantable cardiac devices, enabling the replication of complex bioinspired architectures and motions. To support human heart function, assistive devices and total artificial hearts have been developed. However, the system's functionality, hemocompatibility, and overall implantability are still open challenges.
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March 2025
Department of Cardiovascular Surgery, Osaka University Graduate School of Medicine, Suita, Osaka, Japan.
Background: The development of aortic valve regurgitation (AR) negatively affects the survival of patients with continuous-flow left ventricular assist device (LVAD) support. Although several risk factors have been identified, little is known about the effect of preoperative aortic root and valve morphology on the development of de novo AR after LVAD implantation.
Methods: Between April 2018 and September 2023, 87 patients underwent durable LVAD implantation at our department.
JACC Cardiovasc Interv
March 2025
Department of Cardiovascular and Pulmonary Sciences, Università Cattolica del Sacro Cuore, Rome, Italy; Department of Cardiovascular Sciences, Fondazione Policlinico Universitario A. Gemelli IRCCS, Rome, Italy. Electronic address:
Background: "Stepwise provisional stenting" is the most adopted approach for percutaneous coronary interventions (PCI) in bifurcation lesions. During these procedures, side-branch (SB) may deserve treatment, but the best ballooning technique is still undetermined.
Objectives: To compare the stent configurations obtained by two SB ballooning sequences after the main vessel (MV) stent implantation: proximal-optimization-technique (POT)+kissing-balloon-inflation+final POT (PKP) versus POT+isolated-SB-dilation+final POT (PSP).
Eur Heart J Case Rep
March 2025
Invasive Cardiology-IRCCS Istituto Auxologico Italiano, San Luca Hospital, Piazzale Brescia 20, 20148 Milan, Italy.
Background: Sutureless bioprosthetic valves (SBVs) are engineered to enable a less invasive surgical valve replacement procedure in patients at high surgical risk. Valve degeneration is a relatively common occurrence across all types of surgical valves, including SBVs. Valve-in-valve (ViV) procedures are increasingly becoming the preferred treatment for many cases of valve degeneration due to their minimally invasive nature and favourable long-term outcomes.
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