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10.1007/s00018-013-1546-3

http://scihub22266oqcxt.onion/10.1007/s00018-013-1546-3
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C4024341!4024341!24399290
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suck abstract from ncbi

pmid24399290      Cell+Mol+Life+Sci 2014 ; 71 (11): 2103-18
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  • Engineering of arteries in vitro #MMPMID24399290
  • Huang AH; Niklason LE
  • Cell Mol Life Sci 2014[Jun]; 71 (11): 2103-18 PMID24399290show ga
  • This review will focus on two elements that are essential for functional arterial regeneration in vitro: the mechanical environment and the bioreactors used for tissue growth. The importance of the mechanical environment to embryological development, vascular functionality, and vascular graft regeneration will be discussed. Bioreactors generate mechanical stimuli to simulate the biomechanical environment of the arterial system. This system has been used to reconstruct arterial grafts with appropriate mechanical strength for implantation by controlling the chemical and mechanical environments in which the grafts are grown. Bioreactors are powerful tools to study the effect of mechanical stimuli on extracellular matrix (ECM) architecture and the mechanical properties of engineered vessels. Hence biomimetic systems enable us to optimize chemo-biomechanical culture conditions to regenerate engineered vessels with physiological properties similar to those of native arterial vessels. In addition, this review will introduce and examine various approaches and techniques that have been used to engineer biologically-based vascular grafts, including collagen-based grafts, fibrin-gel grafts, cell sheet engineering, biodegradable polymers, and decellularization of native vessels.
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