Small-diameter blood vessels (SDBVs) are still a challenging task to prepare due to the occurrence of thrombosis formation, intimal hyperplasia, and aneurysmal dilation. Electrospinning technique, as a promising tissue engineering approach, can fabricate polymer fibrous scaffolds that satisfy requirements on the construction of extracellular matrix (ECM) of native blood vessel and promote the adhesion, proliferation, and growth of cells. In this review, we summarize the polymers that are deployed for the fabrication of SDBVs and classify them into three categories, synthetic polymers, natural polymers, and hybrid polymers. Furthermore, the biomechanical properties and the biological activities of the electrospun SBVs including anti-thrombog...
Aiming to develop a scaffold architecture mimicking morphological and mechanically that of a blood v...
Aiming to develop a scaffold architecture mimicking morphological and mechanically that of a blood v...
Objectives: There is a rising interest for the development of small-sized blood vessels substitutes....
Small-diameter blood vessels (SDBVs) are still a challenging task to prepare due to the occurrence o...
Small-diameter blood vessels (SDBVs) are still a challenging task to prepare due to the occurrence o...
The successful replacement of small-diameter blood vessels, affected by cardiovascular disease, with...
A novel biomimetic vascular graft scaffolds were produced by electrospinning method with the most su...
© 2018 Taylor & Francis A novel biomimetic vascular graft scaffolds were produced by electrospinni...
Tissue engineering aims to understand the naturally-occurring, complexly efficient biological system...
Objectives: There is a rising interest for the development of small-sized blood vessels substitutes....
Objectives: There is a rising interest for the development of small-sized blood vessels substitutes....
Aiming to develop a scaffold architecture mimicking morphological and mechanically that of a blood v...
Aiming to develop a scaffold architecture mimicking morphological and mechanically that of a blood v...
Aiming to develop a scaffold architecture mimicking morphological and mechanically that of a blood v...
Natural polymers such as collagens, elastin, and fibrinogen make up much of the body’s native extrac...
Aiming to develop a scaffold architecture mimicking morphological and mechanically that of a blood v...
Aiming to develop a scaffold architecture mimicking morphological and mechanically that of a blood v...
Objectives: There is a rising interest for the development of small-sized blood vessels substitutes....
Small-diameter blood vessels (SDBVs) are still a challenging task to prepare due to the occurrence o...
Small-diameter blood vessels (SDBVs) are still a challenging task to prepare due to the occurrence o...
The successful replacement of small-diameter blood vessels, affected by cardiovascular disease, with...
A novel biomimetic vascular graft scaffolds were produced by electrospinning method with the most su...
© 2018 Taylor & Francis A novel biomimetic vascular graft scaffolds were produced by electrospinni...
Tissue engineering aims to understand the naturally-occurring, complexly efficient biological system...
Objectives: There is a rising interest for the development of small-sized blood vessels substitutes....
Objectives: There is a rising interest for the development of small-sized blood vessels substitutes....
Aiming to develop a scaffold architecture mimicking morphological and mechanically that of a blood v...
Aiming to develop a scaffold architecture mimicking morphological and mechanically that of a blood v...
Aiming to develop a scaffold architecture mimicking morphological and mechanically that of a blood v...
Natural polymers such as collagens, elastin, and fibrinogen make up much of the body’s native extrac...
Aiming to develop a scaffold architecture mimicking morphological and mechanically that of a blood v...
Aiming to develop a scaffold architecture mimicking morphological and mechanically that of a blood v...
Objectives: There is a rising interest for the development of small-sized blood vessels substitutes....