Absorbable polymer stent technologies for vascular regeneration (original) (raw)

In vitro and in vivo characterisation of biodegradable polymer-based drug-eluting stent

Marc Vorpahl

EuroIntervention, 2011

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Bio-resorbable polymer stents: a review of material progress and prospects

Thomas Durig

Progress in Polymer Science, 2018

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Biocompatible Polymer Materials with Antimicrobial Properties for Preparation of Stents

Daniela Plachá

Nanomaterials

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Bioresorbable polymeric stents: current status and future promise

Liping Tang

Journal of biomaterials science. Polymer edition, 2003

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Advantages and disadvantages of biodegradable platforms in drug eluting stents

Alfredo E. Rodriguez

World Journal of Cardiology, 2011

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Review: Bioresorbable polymeric stents: current status and future promise

Liping Tang

Journal of Biomaterials Science, Polymer Edition, 2003

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Vascular Response to Drug-Eluting Stent With Biodegradable vs. Durable Polymer

Takashi Akasaka

Circulation Journal, 2014

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Novel biodegradable polymeric matrix coated cardiovascular stent for controlled drug delivery

Devesh Kothwala

Trends in Biomaterials …, 2007

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Biodegradable drug eluting coating of cardiovascular stents dewets and can cause thrombosis

Irina Kondyurina

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Thrombogenicity and early vascular healing response in metallic biodegradable polymer-based and fully bioabsorbable drug-eluting stents

Oscar Salcedo Sanchez

Circulation. Cardiovascular interventions, 2015

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A Bioresorbable Cardiovascular Stent Prepared From L-Lactide, Trimethylene Carbonate and Glycolide Terpolymers

guralp ozkoc

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Biolimus-eluting stent with biodegradable polymer: one step forward in the fight against stent thrombosis vulnerability?

Joanna Wykrzykowska

Interventional Cardiology, 2012

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Poly(( R , S )-3,3-dimethylmalic acid) derivatives as a promising cardiovascular metallic stent coating: Biodegradation and biocompatibility of the hydrolysis products in human endothelial cells

Hanna Hlawaty

Polymer Degradation and Stability, 2016

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ABC’s of bioabsorption: application of lactide based polymers in fully resorbable cardiovascular stents

Mart Eenink

EuroIntervention, 2009

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A Review based on Biodegradable and Bioabsorbable Stents for Coronary Artery Disease

mahmood aldobali

Procedia Computer Science, 2019

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Recent trend in applications of polymer materials to stents

Phruedsaporn Taranamai

Gastrointestinal Intervention

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Real-World Clinical Outcomes of Indigenous Biodegradable Polymer Drug-Eluting Stents

Atitf A Gawalkar

Cureus, 2021

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Development of a sirolimus-eluting poly (l-lactide)/poly(4-hydroxybutyrate) absorbable stent for peripheral vascular intervention

Katrin Sternberg, Thomas Reske

Biomedizinische Technik/Biomedical Engineering, 2000

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Marked Inflammatory Sequelae to Implantation of Biodegradable and Nonbiodegradable Polymers in Porcine Coronary Arteries

Heleen Van Beusekom

Circulation, 1996

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Development of a novel biocompatible polymer system for extended drug release in a next-generation drug-eluting stent

Alejandra Cáceres

Journal of Biomedical Materials Research Part A, 2008

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Efficacy and Safety of the Novel Sirolimus-Eluting, Biodegradable Polymer Coated Stent in Human Coronary Lesions

Jacobs Publishers

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A novel drug-eluting stent using bioabsorbable polymer technology: Two-year follow-up of the CURAMI registry

Jimmy Lim

International Journal of Cardiology, 2009

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A review on biodegradable materials for cardiovascular stent application

Muhammad iqbal sabir

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Review Open Access Research into biodegradable polymeric stents: a review of experimental and modelling work

Vessel Plus

Vessel Plus, 2018

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Evolution of Coronary Stents: From Bare-Metal Stents to Fully Biodegradable, Drug-Eluting Stents

Marc Vorpahl, Klaus Tiroch

Combination Products in Therapy, 2013

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Next generation stent coatings: convergence of biotechnology and nanotechnology

Mo S. Alavijeh

Trends in Biotechnology, 2012

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Role of polymers in improving the results of stenting in coronary arteries

Mattheus Goosen

Biomaterials, 1996

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New stent surface materials: The impact of polymer-dependent interactions of human endothelial cells, smooth muscle cells, and platelets

Katrin Sternberg, Raila Busch

Acta Biomaterialia, 2014

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Biodegradable Polymer Versus Permanent Polymer Drug-Eluting Stents and Everolimus- Versus Sirolimus-Eluting Stents in Patients With Coronary Artery Disease

Julinda Mehilli

Journal of the American College of Cardiology, 2011

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Comparison of Vascular Responses Following New‐Generation Biodegradable and Durable Polymer‐Based Drug‐Eluting Stent Implantation in an Atherosclerotic Rabbit Iliac Artery Model

Yohei T Ohno

Journal of the American Heart Association, 2016

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Surface Modification of Biodegradable Polymers towards Better Biocompatibility and Lower Thrombogenicity

Sabine Illner

PLOS ONE, 2015

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