P576Dynamic hoop tensile tests of electrospun small diameter vascular grafts
نویسندگان
چکیده
منابع مشابه
Development of Novel, Bioresorbable, Small-Diameter Electrospun Vascular Grafts
This study proposes a production method capable of producing vascular grafts from fully synthetic, resorbable polymers that both meet basic minimum mechanical requirements for potential vascular grafts, and have a compliance similar to that of the intended vasculature being replaced. All of the electrospun vascular grafts in this work meet the minimum mechanical requirements for compliance, bur...
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Tissue engineering, using either polymer or biological based scaffolds, represents the newest approach to overcoming limitations of small diameter prosthetic vascular grafts. Their disadvantages include thromboembolism and thrombosis, anticoagulant related haemorrhage, compliance mismatch, neointimal hyperplasia, as well as aneurysm formation. This current review represents an overview about pr...
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336 ©2013 Society For Biomaterials
متن کاملTissue engineering of recellularized small-diameter vascular grafts.
A tissue-engineered small-diameter arterial graft would be of benefit to patients requiring vascular reconstructive procedures. Our objective was to produce a tissue-engineered vascular graft with a high patency rate that could withstand arterial pressures. Rat arteries were acellularized with a series of detergent solutions, recellularized by incubation with a primary culture of endothelial ce...
متن کاملAntithrombogenic modification of small-diameter microfibrous vascular grafts.
OBJECTIVE To develop small-diameter vascular grafts with a microstructure similar to native matrix fibers and with chemically modified microfibers to prevent thrombosis. METHODS AND RESULTS Microfibrous vascular grafts (1-mm internal diameter) were fabricated by electrospinning, and hirudin was conjugated to the poly (L-lactic acid) microfibers through an intermediate linker of poly(ethylene ...
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ژورنال
عنوان ژورنال: Cardiovascular Research
سال: 2018
ISSN: 0008-6363,1755-3245
DOI: 10.1093/cvr/cvy060.428