Cardiovasc Pathol
December 2024
J Vasc Interv Radiol
January 2025
Purpose: To study the in vivo safety and effectiveness of a novel radiopaque nonadhesive polyacrylate (PA) peripheral liquid embolic system (AMBER SEL-P) relative to ethylene-vinyl alcohol copolymer (EVOH, Onyx) in a healthy swine endovascular model.
Materials And Methods: Twenty-five swine underwent rete mirabile and bilateral kidney embolization with PA or EVOH and were followed up for 24 hours (n = 5) and 30 days (n = 10), and 3 (n = 10) months. Angiographic features (penetrability, radiopacity, catheter entrapment, fragmentation, occlusion, and vasospasm) were evaluated.
Cardiovasc Pathol
November 2024
Objective: To investigate the local, downstream, and systemic effects of 2 different paclitaxel-coated balloons.
Design: Preclinical study in healthy peripheral arteries of a swine model, with randomized allocation of the distribution of the devices: the test paclitaxel-coated balloon (PCB) (Luminor), a control PCB (IN.PACT), and a plain angioplasty balloon (Oceanus), considering single (1×) and overlapping (3×) doses with simple blind histologic analysis.
Introduction And Objectives: New drug-eluting stents (DES) designed to overcome the limitations of existing devices should initially be tested in preclinical studies. Our objective was to analyze the safety and efficacy of new biodegradable polymer-based DES compared with bare-metal stents (BMS) and commercially available DES in a model of normal porcine coronary arteries.
Methods: We randomly implanted 101 stents (BMS and biodegradable polymer-based sirolimus-eluting stents: 3 test stent iterations [BD1, BD2, and BD3], Orsiro, Biomime and Biomatrix) in the coronary arteries of 34 domestic pigs.
The incidence increase of infections in patients with hip or knee implants with resistant pathogens (mainly some S. coagulase-negative and gram positive bacteria) demands advanced antibiotic loaded formulations. In this paper, we report the design of new biantibiotic acrylic bone cements for in situ delivery.
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