Aim: Atherosclerosis is a common cardiovascular disease causing medical problems globally leading to coronary artery bypass surgery. The present study is to fabricate core/shell nanofibers to encapsulate VEGF for the differentiation of mesenchymal stem cells (MSCs) into smooth muscle cells to develop vascular grafts. Materials & methods: The fabricated core/shell nanofibers contained polycaprolactone/gelatin as the shell, and silk fibroin/VEGF as the core materials. Results: The results observed that the core/shell nanofibers interact to differentiate MSCs into smooth muscle cells by the expression of vascular smooth muscle cell (VSMC) contractile proteins α-actinin, myosin and F-actin. Conclusion: The functionalized polycaprolactone/gelati...
The biofabrication of biomimetic scaffolds for tissue engineering applications is a field in continu...
This review is divided into two interconnected parts, namely a biological and a chemical one. The fo...
New blood vessel formation is essential for tissue regeneration to deliver oxygen and nutrients and ...
Aim: Atherosclerosis is a common cardiovascular disease causing medical problems globally leading to...
Cardiovascular disease is the leading cause of death in the United States with approximately 49% of ...
Nanofibrous scaffolds can mimic the mechanical and structural properties of the natural extracellula...
<div><p>The surgical repair of heart and vascular disease often requires implanting synthetic grafts...
The aortic heart valve regulates blood flow as it exits the heart and enters the body; when this val...
AIM: Success of functional vascularized tissue repair depends on vascular support system supply and ...
Cardiovascular Disease is the number one cause of death in the world, with a mortality rate, globall...
Mimicking the complex intricacies of the extra cellular matrix including 3D configurations and align...
As cardiac diseases, which mostly result in heart failure, are increasing rapidly worldwide, heart ...
Mimicking the structure of extracellular matrix (ECM) of myocardium is necessary for fabrication of ...
Nanofibres for blood vessel tissue engineering: A Review is a published article of the Textile Techn...
Cardiovascular disease (CVD) is the leading cause of death worldwide. Atherosclerosis, one of the pr...
The biofabrication of biomimetic scaffolds for tissue engineering applications is a field in continu...
This review is divided into two interconnected parts, namely a biological and a chemical one. The fo...
New blood vessel formation is essential for tissue regeneration to deliver oxygen and nutrients and ...
Aim: Atherosclerosis is a common cardiovascular disease causing medical problems globally leading to...
Cardiovascular disease is the leading cause of death in the United States with approximately 49% of ...
Nanofibrous scaffolds can mimic the mechanical and structural properties of the natural extracellula...
<div><p>The surgical repair of heart and vascular disease often requires implanting synthetic grafts...
The aortic heart valve regulates blood flow as it exits the heart and enters the body; when this val...
AIM: Success of functional vascularized tissue repair depends on vascular support system supply and ...
Cardiovascular Disease is the number one cause of death in the world, with a mortality rate, globall...
Mimicking the complex intricacies of the extra cellular matrix including 3D configurations and align...
As cardiac diseases, which mostly result in heart failure, are increasing rapidly worldwide, heart ...
Mimicking the structure of extracellular matrix (ECM) of myocardium is necessary for fabrication of ...
Nanofibres for blood vessel tissue engineering: A Review is a published article of the Textile Techn...
Cardiovascular disease (CVD) is the leading cause of death worldwide. Atherosclerosis, one of the pr...
The biofabrication of biomimetic scaffolds for tissue engineering applications is a field in continu...
This review is divided into two interconnected parts, namely a biological and a chemical one. The fo...
New blood vessel formation is essential for tissue regeneration to deliver oxygen and nutrients and ...