A Phenomenological Model for Mechanically Mediated Growth, Remodeling, Damage, and Plasticity of Gel-Derived Tissue Engineered Blood Vessels
نویسندگان
چکیده
منابع مشابه
Gene therapy in tissue-engineered blood vessels.
Cardiovascular disease is the leading cause of morbidity and mortality in Western society. More than 1 million arterial bypass procedures are performed annually in the United States, where either autologous veins or synthetic grafts are used to replace arteries in the coronary or peripheral circulation. Tissue engineering of blood vessels from autologous cells has the potential to produce biolo...
متن کاملMechanically Induced Damage in Tissue Engineered Skeletal Muscle
INTRODUCTION Engineered tissues offer strong possibilities as model systems for studying tissue responses to physical, chemical or biological stimuli. Moreover, they can be used to investigate specific pathologies or clinical treatments with less ethical considerations and better experimental control than animal models or human studies. We use the concept of tissue engineering to design in-vitr...
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آب حاصل از بارش منبع تأمین نیازهای بی شمار جانداران به ویژه انسان است و هرگونه کاهش در کم و کیف آن مستقیماً حیات موجودات زنده را تحت تأثیر منفی قرار می دهد. نوسان سال به سال بارش از ویژگی های اساسی و بسیار مهم بارش های سالانه ایران محسوب می شود که آثار زیان بار آن در تمام عرصه های اقتصادی، اجتماعی و حتی سیاسی- امنیتی به نحوی منعکس می شود. چون میزان آب ناشی از بارش یکی از مولفه های اصلی برنامه ...
15 صفحه اولBiaxial biomechanical properties of self-assembly tissue-engineered blood vessels.
Along with insights into the potential for graft success, knowledge of biomechanical properties of small diameter tissue-engineered blood vessel (TEBV) will enable designers to tailor the vessels' mechanical response to closer resemble that of native tissue. Composed of two layers that closely mimic the native media and adventitia, a tissue-engineered vascular adventitia (TEVA) is wrapped aroun...
متن کاملFunctional tissue-engineered blood vessels from bone marrow progenitor cells.
OBJECTIVE Stem cells have significant potential for development of cell-based therapeutics for cardiovascular tissue regeneration. METHODS We developed a novel method for isolating smooth muscle cells (SMC) from ovine bone marrow using a tissue-specific promoter and fluorescence-activated cell sorting. RESULTS As compared to vascular SMC, bone marrow-derived smooth muscle progenitor cells (...
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ژورنال
عنوان ژورنال: Journal of Biomechanical Engineering
سال: 2009
ISSN: 0148-0731,1528-8951
DOI: 10.1115/1.4000124