This work aims to design a synthetic construct that mimics the natural bone extracellular matrix through innovative approaches based on simultaneous type I collagen electrospinning and nanophased hydroxyapatite (nanoHA) electrospraying using non-denaturating conditions and non-toxic reagents. The morphological results, assessed using scanning electron microscopy and atomic force microscopy (AFM), showed a mesh of collagen nanofibers embedded with crystals of HA with fiber diameters within the nanometer range (30 nm), thus significantly lower than those reported in the literature, over 200 nm. The mechanical properties, assessed by nanoindentation using AFM, exhibited elastic moduli between 0.3 and 2 GPa. Fourier transformed infrared spectro...
Processing scaffolds that mimic the extracellular matrix (ECM) of natural bone in structure and chem...
Processing scaffolds that mimic the extracellular matrix (ECM) of natural bone in structure and chem...
Mimicking the structural organization and biologic function of natural extracellular matrix has been...
This work aims to design a synthetic construct that mimics the natural bone extracellular matrix thr...
This work aims to design a synthetic construct that mimics the natural bone extracellular matrix thr...
This work aims to design a synthetic construct that mimics the natural bone extracellular matrix thr...
This work aims to design a synthetic construct that mimics the natural bone extracellular matrix thr...
This work aims to design a synthetic construct that mimics the natural bone extracellular matrix thr...
This work aims to design a synthetic construct that mimics the natural bone extracellular matrix thr...
This work aims to design a synthetic construct that mimics the natural bone extracellular matrix thr...
This work aims to design a synthetic construct that mimics the natural bone extracellular matrix thr...
Abstract: Currently, the application of nanotechnology in bone tissue regeneration is a challenge fo...
Yuanyuan Zhou,1,2 Hongchang Yao,1 Jianshe Wang,1 Dalu Wang,1 Qian Liu,1 Zhongjun Li11College of Chem...
Electrospinning of fibrous scaffolds containing nano-hydroxyapatite (nHAp) embedded in a matrix of f...
The use of biomaterials and scaffolds to boost bone regeneration is increasingly gaining interest as...
Processing scaffolds that mimic the extracellular matrix (ECM) of natural bone in structure and chem...
Processing scaffolds that mimic the extracellular matrix (ECM) of natural bone in structure and chem...
Mimicking the structural organization and biologic function of natural extracellular matrix has been...
This work aims to design a synthetic construct that mimics the natural bone extracellular matrix thr...
This work aims to design a synthetic construct that mimics the natural bone extracellular matrix thr...
This work aims to design a synthetic construct that mimics the natural bone extracellular matrix thr...
This work aims to design a synthetic construct that mimics the natural bone extracellular matrix thr...
This work aims to design a synthetic construct that mimics the natural bone extracellular matrix thr...
This work aims to design a synthetic construct that mimics the natural bone extracellular matrix thr...
This work aims to design a synthetic construct that mimics the natural bone extracellular matrix thr...
This work aims to design a synthetic construct that mimics the natural bone extracellular matrix thr...
Abstract: Currently, the application of nanotechnology in bone tissue regeneration is a challenge fo...
Yuanyuan Zhou,1,2 Hongchang Yao,1 Jianshe Wang,1 Dalu Wang,1 Qian Liu,1 Zhongjun Li11College of Chem...
Electrospinning of fibrous scaffolds containing nano-hydroxyapatite (nHAp) embedded in a matrix of f...
The use of biomaterials and scaffolds to boost bone regeneration is increasingly gaining interest as...
Processing scaffolds that mimic the extracellular matrix (ECM) of natural bone in structure and chem...
Processing scaffolds that mimic the extracellular matrix (ECM) of natural bone in structure and chem...
Mimicking the structural organization and biologic function of natural extracellular matrix has been...