Because of the severe increase of mortality by cardiovascular diseases, there has been rising interest among the tissue-engineering community for small-sized blood vessel substitutes. Here we present small diameter vascular grafts made of slow degradable poly(epsilon-caprolactone) nanofibers obtained by electrospinning. The process was optimized by a factorial design approach that led to reproducible grafts with inner diameters of 2 and 4 mm, respectively. Fiber sizes, graft morphology, and the resulting tensile stress and tensile strain values were studied as a function of various parameters in order to obtain optimal vascular grafts for implantation after gamma-sterilization. The influence of polymer concentration, solvent, needle-collect...
Electrospinning is a commonly proposed method for generating polymeric scaffolds for use in tissue a...
Tubular vascular grafts 1.1 mm in diameter based on poly(L-lactide) microfibers were obtained by ele...
Nanofibrous scaffolds are part of an intense research effort to design the next generation of vascul...
Because of the severe increase of mortality by cardiovascular diseases, there has been rising intere...
Because of the severe increase of mortality by cardiovascular diseases, there has been rising intere...
Because of the severe increase of mortality by cardiovascular diseases, there has been rising intere...
<div><p>The surgical repair of heart and vascular disease often requires implanting synthetic grafts...
There is a pressing need to develop vascular graft since no clinically available appropriate prosthe...
Cardiovascular disease is the leading cause of death worldwide and patients often require surgical b...
Hypothesis: Vascular tissue engineering offers innovative solutions to the vascular replacement prob...
Due to the morphological resemblance between the electrospun nanofibers and extracellular matrix (EC...
Despite the tremendous advances in the past few decades, the clinical problems associated with low m...
Biodegradable polymers have potential as a scaffold material for making small diameter artery bypass...
Biodegradable polymers have potential as a scaffold material for making small diameter artery bypass...
There is an important clinical need for suitable vascular grafts, especially for small diameter vess...
Electrospinning is a commonly proposed method for generating polymeric scaffolds for use in tissue a...
Tubular vascular grafts 1.1 mm in diameter based on poly(L-lactide) microfibers were obtained by ele...
Nanofibrous scaffolds are part of an intense research effort to design the next generation of vascul...
Because of the severe increase of mortality by cardiovascular diseases, there has been rising intere...
Because of the severe increase of mortality by cardiovascular diseases, there has been rising intere...
Because of the severe increase of mortality by cardiovascular diseases, there has been rising intere...
<div><p>The surgical repair of heart and vascular disease often requires implanting synthetic grafts...
There is a pressing need to develop vascular graft since no clinically available appropriate prosthe...
Cardiovascular disease is the leading cause of death worldwide and patients often require surgical b...
Hypothesis: Vascular tissue engineering offers innovative solutions to the vascular replacement prob...
Due to the morphological resemblance between the electrospun nanofibers and extracellular matrix (EC...
Despite the tremendous advances in the past few decades, the clinical problems associated with low m...
Biodegradable polymers have potential as a scaffold material for making small diameter artery bypass...
Biodegradable polymers have potential as a scaffold material for making small diameter artery bypass...
There is an important clinical need for suitable vascular grafts, especially for small diameter vess...
Electrospinning is a commonly proposed method for generating polymeric scaffolds for use in tissue a...
Tubular vascular grafts 1.1 mm in diameter based on poly(L-lactide) microfibers were obtained by ele...
Nanofibrous scaffolds are part of an intense research effort to design the next generation of vascul...