Numerical analysis of paclitaxel-eluting coronary stents: Mechanics and drug release properties

被引:5
作者
Gagliardi, Mariacristina [1 ]
机构
[1] CNR, Ist Nanosci, NEST, Piazza San Silvestro 12, I-56127 Pisa, Italy
关键词
Drug-eluting stent; Finite element model; Mechanical stress; Drug delivery; ARTERIAL; SIMULATION; DELAMINATION; GENERATION; THROMBOSIS; DEPLOYMENT; DIFFUSION; DELIVERY; STRESSES; LONG;
D O I
10.1016/j.medengphy.2020.06.004
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
Since theoretical models provide data that cannot be otherwise gathered, numerical methods applied to medical devices analysis have emerged as fundamental tool in preclinical development. Large efforts were done to study mechanical and drug-eluting properties in stents but often the coating modelling is neglected. This work presents a finite element framework to calculate mechanical loads and drug distri-bution in three commercial drug-eluting stents (Palmaz-Schatz, Palmaz Genesis and Multi Link Vision), to check coatings strength and drug distribution maps in biological tissues. The promising copolymer poly(methylmethacrylate-co-n-butylmethacrylate), loaded with paclitaxel, is analyzed. Results demon-strated that the coating undergoes localized plastic phenomena, and calculated stresses are lower than the ultimate stress, ensuring coating integrity. Computed drug concentration depends on stent geometry and its values are in all cases lower than the toxicity level for this drug. (C) 2020 IPEM. Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:78 / 85
页数:8
相关论文
共 56 条
[1]   Polymer-free drug-eluting stents for coronary artery disease [J].
Baquet, Moritz ;
Jochheim, David ;
Mehilli, Julinda .
JOURNAL OF INTERVENTIONAL CARDIOLOGY, 2018, 31 (03) :330-337
[2]  
Belytschko Ted., 2006, Nonlinear Finite Elements for Continua and Structures
[3]  
Bezzera H., 2016, INTRAVASCULAR OCT 1
[4]   Safety and Efficacy of Polymer-Free Drug-Eluting Stents Amphilimus-Eluting Cre8 Versus Biolimus-Eluting BioFreedom Stents [J].
Chiarito, Mauro ;
Sardella, Gennaro ;
Colombo, Antonio ;
Briguori, Carlo ;
Testa, Luca ;
Bedogni, Francesco ;
Fabbiocchi, Franco ;
Paggi, Anita ;
Palloshi, Altin ;
Tamburino, Corrado ;
Margonato, Alberto ;
Pivato, Carlo Andrea ;
Baber, Usman ;
Calcagno, Simone ;
Giordano, Arturo ;
Godino, Cosmo ;
Stefanini, Giulio G. .
CIRCULATION-CARDIOVASCULAR INTERVENTIONS, 2019, 12 (02)
[5]   Finite element simulation of stent and balloon interaction [J].
Chua, SND ;
Mac Donald, BJ ;
Hashmi, MSJ .
JOURNAL OF MATERIALS PROCESSING TECHNOLOGY, 2003, 143 :591-597
[6]  
Cognini R, 2013, IN C IND ENG ENG MAN, P1, DOI 10.1109/IEEM.2013.6962363
[7]   Prolonged High-Pressure is Required for Optimal Stent Deployment as Assessed by Optical Coherence Tomography [J].
Cook, Jeffrey R. ;
Mhatre, Ajay ;
Wang, Fen Wei ;
Uretsky, Barry F. .
CATHETERIZATION AND CARDIOVASCULAR INTERVENTIONS, 2014, 83 (04) :521-527
[8]   Drug delivery patterns for different stenting techniques in coronary bifurcations: a comparative computational study [J].
Cutri, Elena ;
Zunino, Paolo ;
Morlacchi, Stefano ;
Chiastra, Claudio ;
Migliavacca, Francesco .
BIOMECHANICS AND MODELING IN MECHANOBIOLOGY, 2013, 12 (04) :657-669
[9]   How does stent expansion alter drug transport properties of the arterial wall? [J].
Escuer, Javier ;
Cebollero, Martina ;
Pena, Estefania ;
McGinty, Sean ;
Martinez, Miguel A. .
JOURNAL OF THE MECHANICAL BEHAVIOR OF BIOMEDICAL MATERIALS, 2020, 104
[10]   Mechanical properties of coronary stents determined by using finite element analysis [J].
Etave, F ;
Finet, G ;
Boivin, M ;
Boyer, JC ;
Rioufol, G ;
Thollet, G .
JOURNAL OF BIOMECHANICS, 2001, 34 (08) :1065-1075