2001
DOI: 10.1067/mva.2001.111747
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Morphologic and mechanical characteristics of engineered bovine arteries

Abstract: These findings aid in the systematic understanding of the effects of in vitro parameters on engineered vessels and will be useful for the translation of vessel culture techniques to human cells for the development of autologous human vascular grafts.

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Cited by 233 publications
(188 citation statements)
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“…Vascular SMC were harvested by using standard explant techniques as described in ref. 45. Briefly, the saphenous vein was incised longitudinally, and the endothelial cells were removed by vigorously scraping the surface of the lumen with a scalpel blade to expose the medial layer of the vessel.…”
Section: Methodsmentioning
confidence: 99%
“…Vascular SMC were harvested by using standard explant techniques as described in ref. 45. Briefly, the saphenous vein was incised longitudinally, and the endothelial cells were removed by vigorously scraping the surface of the lumen with a scalpel blade to expose the medial layer of the vessel.…”
Section: Methodsmentioning
confidence: 99%
“…In this study, biodegradable polymer P(LLA-CL) NFS were seeded with porcine coronary artery smooth muscle cells (PCASMCs) and cultured in vitro for up to Sipehia et al (1996) and Deutsch et al (1999) collagen-based tissueengineered vascular grafts co-culture fibroblast, SMCs and ECs on collagen gels !500 mmHg the mechanical strength is below that required for artery (O2000 mmHg) Weinberg & Bell (1986) and Huynh et al (1999) Niklason et al (1999Niklason et al ( , 2001, Buttafoco et al (2006) and Heydarkhan-Hagvall et al (2006) 105 days, with the aim of evaluating the long-term viability of SMCs cultured on the scaffolds and to analyse the cellular effects on polymeric nanofibre degradation. We hypothesize that the degradation behaviour of polymeric polyester nanofibre will be milder than block materials, given the high surface area for diffusion of acidic degradation products.…”
Section: Introductionmentioning
confidence: 99%
“…Les cellules remplissent les treillis en se multipliant et en produisant de la matrice extracellulaire. Des cellules endothĂ©liales sont ensuite ensemencĂ©es Ă  l'intĂ©rieur [6,7]. Ces prothĂšses comprennent seulement deux des trois tuniques vasculaires et prĂ©sentent les dĂ©savantages associĂ©s Ă  la prĂ©sence de biomatĂ©riau: il est en effet difficile de dissocier les propriĂ©tĂ©s des tissus vivants reconstituĂ©s de celles du support inerte auquel ils sont intĂ©grĂ©s, les biomatĂ©riaux pouvant alors interfĂ©rer dans les mesures.…”
Section: Obtention De Vaisseaux Reconstitués Par Génie Tissulaireunclassified
“…Un des grands avantages de la reconstitution par auto-assemblage est d'obtenir, en l'absence de tout matĂ©riau synthĂ©tique, une rĂ©sistance Ă  l'Ă©clatement suffisante pour permettre la greffe du vaisseau [8] et mĂȘme le montage en bain d'organe pour Ă©tudier sa contraction [10]. D'autres vaisseaux obtenus Ă  partir de cellules animales ont Ă©gale-ment pu ĂȘtre montĂ©s de la mĂȘme façon, mais leur rĂ©sistance mĂ©ca-nique Ă  l'Ă©tirement Ă©tait renforcĂ©e par un matĂ©riau synthĂ©tique [6,7] ou hĂ©tĂ©rologue [11].…”
Section: Structure Et Fonction Des Vaisseaux Reconstituésunclassified