The lack of vascularization limits the creation of engineered tissue constructs with clinically relevant sizes. We pioneered a bottom-up process (modular tissue engineering) in which constructs with intrinsic vasculature were assembled from endothelialized building blocks. In this study, we prepared an interpenetrating polymer network (IPN) hydrogel from a collagen-alginate blend and evaluated its use as microspheres in modular tissue engineering. Ionotropic gelation of alginate was combined with collagen fibrillogenesis, and the resulting hydrogel was stiffer and had greater resistance to enzymatic degradation relative to that of collagen alone; the viability of embedded mesenchymal stromal cells (adMSC) was unaltered. IPN microspheres wer...
The authors are also grateful to Dr Zabihollah Hasanzadeh for providing cartilage tissue, Ghaffari C...
Therapeutic induction of blood vessel growth (angiogenesis) in ischemic tissues holds great potentia...
Success of 3D tissue substitutes in clinical applications depends on the presence of vascular networ...
The lack of vascularization limits the creation of engineered tissue constructs with clinically rele...
AbstractDevelopment of the technique for constructing an internal perfusable vascular network is a c...
Development of the technique for constructing an internal perfusable vascular network is a challengi...
Survival of engineered tissues in vivo requires the presence of an internal vascular network and imm...
Vascular diseases arc among the primary causes of death worldwide. In serious conditions, replacemen...
Collagen hydrogels have been widely investigated as scaffolds for vascular tissue engineering due in...
Hydrogels are effective platforms for use as artificial extracellular matrices, cell carriers, and t...
The development of complex and large 3D vascularized tissue constructs remains the major goal of tis...
<div><p>In recent years, microfluidic systems have been used to study fundamental aspects of angioge...
Thesis (M. Eng.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Compute...
In recent years, microfluidic systems have been used to study fundamental aspects of angiogenesis th...
The development of three-dimensional (3D) fibrous networks as platforms for tissue engineering appli...
The authors are also grateful to Dr Zabihollah Hasanzadeh for providing cartilage tissue, Ghaffari C...
Therapeutic induction of blood vessel growth (angiogenesis) in ischemic tissues holds great potentia...
Success of 3D tissue substitutes in clinical applications depends on the presence of vascular networ...
The lack of vascularization limits the creation of engineered tissue constructs with clinically rele...
AbstractDevelopment of the technique for constructing an internal perfusable vascular network is a c...
Development of the technique for constructing an internal perfusable vascular network is a challengi...
Survival of engineered tissues in vivo requires the presence of an internal vascular network and imm...
Vascular diseases arc among the primary causes of death worldwide. In serious conditions, replacemen...
Collagen hydrogels have been widely investigated as scaffolds for vascular tissue engineering due in...
Hydrogels are effective platforms for use as artificial extracellular matrices, cell carriers, and t...
The development of complex and large 3D vascularized tissue constructs remains the major goal of tis...
<div><p>In recent years, microfluidic systems have been used to study fundamental aspects of angioge...
Thesis (M. Eng.)--Massachusetts Institute of Technology, Dept. of Electrical Engineering and Compute...
In recent years, microfluidic systems have been used to study fundamental aspects of angiogenesis th...
The development of three-dimensional (3D) fibrous networks as platforms for tissue engineering appli...
The authors are also grateful to Dr Zabihollah Hasanzadeh for providing cartilage tissue, Ghaffari C...
Therapeutic induction of blood vessel growth (angiogenesis) in ischemic tissues holds great potentia...
Success of 3D tissue substitutes in clinical applications depends on the presence of vascular networ...