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Catheter Cardiovasc Interv ; 81(2): E124-9, 2013 Feb.
Article in English | MEDLINE | ID: mdl-22566402

ABSTRACT

OBJECTIVES: To test the local delivery of sirolimus nanoparticles following percutaneous transluminal coronary angioplasty (PTCA) to treat in-stent restenosis (ISR) in a swine model. BACKGROUND: Coronary bare-metal stent (BMS) implantation reduces major adverse cardiac events when compared with PTCA; however, ISR rates remain high. METHODS: Eighteen swine underwent BMS deployment guided by intravascular ultrasound (IVUS). Of these, 16 developed ISR (1 stent/swine) and underwent angioplasty with a noncompliant balloon (PTCA-NC). The animals were then randomized into four groups for local infusion of sirolimus nanoparticles through a porous balloon catheter, as follows: (1) PTCA-NC alone (control); (2) PTCA-NC + (polylactic acid)-based nanoparticle formulation (anionic 1); (3) PTCA-NC + (polylactic-co-glycolic acid)-based nanoparticle formulation (anionic 2); and (4) PTCA-NC + Eudragit RS nanoparticle formulation (cationic). Coronary angiography and IVUS follow-up were performed 28 days after ISR treatment. RESULTS: There was one episode of acute coronary occlusion with the cationic formulation. Late area loss was similar in all groups at 28 days according to IVUS. However, luminal volume loss (control = 20.7%, anionic 1 = 4.0%, anionic 2 = 6.7%, cationic = 9.6%; P = 0.01) and neointimal volume gain (control = 68.7%, anionic 1 = 17.4%, anionic 2 = 29.5%, cationic = 31.2%; P = 0.019) were significantly reduced in all treatment groups, especially in anionic 1. CONCLUSIONS: PTCA-NC followed by local infusion of sirolimus nanoparticles was safe and efficacious to reduce neointima in this model, and this strategy may be a promising treatment for BMS ISR. Further studies are required to validate this method in humans.


Subject(s)
Cardiac Catheters , Cardiovascular Agents/administration & dosage , Coronary Restenosis/therapy , Coronary Vessels/drug effects , Drug Delivery Systems/instrumentation , Nanoparticles , Percutaneous Coronary Intervention , Sirolimus/administration & dosage , Acrylic Resins/chemistry , Animals , Cardiovascular Agents/chemistry , Chemistry, Pharmaceutical , Coronary Angiography , Coronary Restenosis/diagnostic imaging , Coronary Vessels/diagnostic imaging , Disease Models, Animal , Drug Carriers , Equipment Design , Infusions, Parenteral , Lactic Acid/chemistry , Neointima , Polyesters , Polyglycolic Acid/chemistry , Polylactic Acid-Polyglycolic Acid Copolymer , Polymers/chemistry , Porosity , Sirolimus/chemistry , Swine , Time Factors , Ultrasonography, Interventional
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