Cartilage defects, which are caused by a variety of reasons such as traumatic injuries, osteoarthritis, or osteoporosis, represent common and severe clinical problems. Each year, over 6 million people visit hospitals in the U.S. for various knee, wrist, and ankle problems. As modern medicine advances, new and novel methodologies have been explored and developed in order to solve and improve current medical problems. One of the areas of investigation that has thus far proven to be very promising is tissue engineering [1, 2]. Since cartilage matrix is nanocomposite, the goal of the current work is to use nanomaterials and nanofabrication methods to create novel biologically inspired tissue engineered cartilage scaffolds for facilitating human...
Polymer substrates obtained from poly(lactic acid) (PLA) nanofibres modified with carbon nanotubes (...
Cartilage defects are a persistent issue in orthopedic tissue engineering where acute and chronic ti...
"Cartilage tissue engineering has become one of the most attractive solutions to tackling osteoarthr...
Cartilage defects, which are caused by a variety of reasons such as traumatic injuries, osteoarthrit...
Cartilage tissue is a nanostructured tissue which is notoriously hard to regenerate due to its extre...
Cartilage tissue is a nanostructured tissue which is notoriously hard to regenerate due to its extre...
Cartilage defects, which are caused by a variety of reasons such as traumatic injuries, osteoarthrit...
Tissue engineering is an innovative interdisciplinary field in which bioengineers and life scientist...
Tissue engineering is an innovative interdisciplinary field in which bioengineers and life scientist...
Tissue engineering is an innovative interdisciplinary field in which bioengineers and life scientist...
Tissue engineering is an innovative interdisciplinary field in which bioengineers and life scientist...
Tissue engineering is an innovative interdisciplinary field in which bioengineers and life scientist...
The discovery of induced pluripotent stem cells (iPSCs) rendered the reprogramming of terminally dif...
Electrospinning is a simple and universal way to produce fibres from a variety of materials having d...
Xiaomin He,1,* Bei Feng,1,2,* Chuanpei Huang,1 Hao Wang,1 Yang Ge,1 Renjie Hu,1 Meng ...
Polymer substrates obtained from poly(lactic acid) (PLA) nanofibres modified with carbon nanotubes (...
Cartilage defects are a persistent issue in orthopedic tissue engineering where acute and chronic ti...
"Cartilage tissue engineering has become one of the most attractive solutions to tackling osteoarthr...
Cartilage defects, which are caused by a variety of reasons such as traumatic injuries, osteoarthrit...
Cartilage tissue is a nanostructured tissue which is notoriously hard to regenerate due to its extre...
Cartilage tissue is a nanostructured tissue which is notoriously hard to regenerate due to its extre...
Cartilage defects, which are caused by a variety of reasons such as traumatic injuries, osteoarthrit...
Tissue engineering is an innovative interdisciplinary field in which bioengineers and life scientist...
Tissue engineering is an innovative interdisciplinary field in which bioengineers and life scientist...
Tissue engineering is an innovative interdisciplinary field in which bioengineers and life scientist...
Tissue engineering is an innovative interdisciplinary field in which bioengineers and life scientist...
Tissue engineering is an innovative interdisciplinary field in which bioengineers and life scientist...
The discovery of induced pluripotent stem cells (iPSCs) rendered the reprogramming of terminally dif...
Electrospinning is a simple and universal way to produce fibres from a variety of materials having d...
Xiaomin He,1,* Bei Feng,1,2,* Chuanpei Huang,1 Hao Wang,1 Yang Ge,1 Renjie Hu,1 Meng ...
Polymer substrates obtained from poly(lactic acid) (PLA) nanofibres modified with carbon nanotubes (...
Cartilage defects are a persistent issue in orthopedic tissue engineering where acute and chronic ti...
"Cartilage tissue engineering has become one of the most attractive solutions to tackling osteoarthr...