Processing scaffolds that mimic the extracellular matrix (ECM) of natural bone in structure and chemical composition is a potential promising option for engineering physiologically functional bone tissue. In this article, we report a novel method, by combining electrospinning and mineralization, to process a series of nano-fibrous scaffolding systems with desirable characteristics suitable for biomimetic bone tissue engineering. We have chosen two types of polymers, namely collagen and poly (lactic-co-glycolic acid) (PLGA), natural and synthetic of its kind, respectively, to electrospin into nano-fibrous scaffolds. The electrospun scaffolds have high surface area, high porosity and well connected open pore network. In order to mimic the che...
Guoqiang Zhou,1–3 Sudan Liu,1 Yanyan Ma,1 Wenshi Xu,1 Wei Meng,1 Xue Lin,1 Wenying Wang,1,3 Sh...
In this work, we fabricated polymeric fibrous scaffolds for bone tissue engineering using primary hu...
A straightforward, fast and versatile technique to fabricate mineralized nanofibrous polymer scaffol...
Processing scaffolds that mimic the extracellular matrix (ECM) of natural bone in structure and chem...
The use of biomaterials and scaffolds to boost bone regeneration is increasingly gaining interest as...
The use of biomaterials and scaffolds to boost bone regeneration is increasingly gaining interest as...
Electrospinning is a promising and versatile technique that is used to fabricate polymeric nanofibro...
Nanofibrous materials produced by electrospinning processes have attracted considerable interest in ...
One of the major limitations in scaffold-based bone tissue engineering has been the inability to inc...
Biomimetic nanocomposite scaffolds were fabricated by electrospinning poly(l-lactic acid) and a blen...
An ideal engineered scaffold should support the regeneration of natural extracellular matrix; for bo...
Bone is a complex and a highly specialised form of connective tissue defining the structure and shap...
Surface mineralization is an effective method to produce calcium phosphate apatite coating on the su...
Yuanyuan Zhou,1,2 Hongchang Yao,1 Jianshe Wang,1 Dalu Wang,1 Qian Liu,1 Zhongjun Li11College of Chem...
Current strategies for skeletal regeneration involve the use of autogenous and allogenic bone grafts...
Guoqiang Zhou,1–3 Sudan Liu,1 Yanyan Ma,1 Wenshi Xu,1 Wei Meng,1 Xue Lin,1 Wenying Wang,1,3 Sh...
In this work, we fabricated polymeric fibrous scaffolds for bone tissue engineering using primary hu...
A straightforward, fast and versatile technique to fabricate mineralized nanofibrous polymer scaffol...
Processing scaffolds that mimic the extracellular matrix (ECM) of natural bone in structure and chem...
The use of biomaterials and scaffolds to boost bone regeneration is increasingly gaining interest as...
The use of biomaterials and scaffolds to boost bone regeneration is increasingly gaining interest as...
Electrospinning is a promising and versatile technique that is used to fabricate polymeric nanofibro...
Nanofibrous materials produced by electrospinning processes have attracted considerable interest in ...
One of the major limitations in scaffold-based bone tissue engineering has been the inability to inc...
Biomimetic nanocomposite scaffolds were fabricated by electrospinning poly(l-lactic acid) and a blen...
An ideal engineered scaffold should support the regeneration of natural extracellular matrix; for bo...
Bone is a complex and a highly specialised form of connective tissue defining the structure and shap...
Surface mineralization is an effective method to produce calcium phosphate apatite coating on the su...
Yuanyuan Zhou,1,2 Hongchang Yao,1 Jianshe Wang,1 Dalu Wang,1 Qian Liu,1 Zhongjun Li11College of Chem...
Current strategies for skeletal regeneration involve the use of autogenous and allogenic bone grafts...
Guoqiang Zhou,1–3 Sudan Liu,1 Yanyan Ma,1 Wenshi Xu,1 Wei Meng,1 Xue Lin,1 Wenying Wang,1,3 Sh...
In this work, we fabricated polymeric fibrous scaffolds for bone tissue engineering using primary hu...
A straightforward, fast and versatile technique to fabricate mineralized nanofibrous polymer scaffol...