The principal aim of this research was the development of a technique (based upon the effects of nanoscale topography) that facilitates the in vitro expansion of bone graft for subsequent implantation. Nanoscale topography increases the bioactivity of a material and stimulates specific responses at the molecular level (third generation biomaterial properties). Nanoscale topography thus confers these third generation properties upon biomaterials that are otherwise first generation (bioinert) or second generation (bioresorbable or bioactive) in nature. Two topographies (nanopits and nanoislands) were embossed into the clinically licensed bioresorbable polymer Polycaprolactone (PCL). A protocol was developed which enabled three dimension...
In tissue engineering, it is still rare today to see clinically transferable strategies for tissue-e...
Accelerated de novo formation of bone is a highly desirable aim of implants targeting musculoskeleta...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2014.Cata...
The principal aim of this research was the development of a technique (based upon the effects of nan...
BACKGROUND: Optimised nanotopography with controlled disorder (NSQ50) has been shown to stimulate os...
Throughout this body of work low amplitude high frequency (500 Hz – 5000 Hz) mechanical stimulation ...
BACKGROUND: Bone is the second most transplanted tissue and due to its complex structure, metabolic ...
The principal aim of this thesis was to investigate the ability of surface topography in inducing bo...
A focus of orthopedic research is to improve osteointegration and outcomes of joint replacement. Mat...
Background: Aseptic loosening remains the primary reason for failure of orthopaedic implants. Theref...
We aimed to assess osteogenesis in osteoprogenitor cells by nanopits and to assess optimal feature d...
Accelerating the integration of a joint replacement or the healing of a bone fracture, particularly ...
Aims. As shown in literature, the future strategies are based on the synergic combination of differe...
Biomaterials without exogenous cells or therapeutic agents often fail to achieve rapid endogenous bo...
This work aimed at studying the effects of dynamic culture conditions and biomimetic coating on bone...
In tissue engineering, it is still rare today to see clinically transferable strategies for tissue-e...
Accelerated de novo formation of bone is a highly desirable aim of implants targeting musculoskeleta...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2014.Cata...
The principal aim of this research was the development of a technique (based upon the effects of nan...
BACKGROUND: Optimised nanotopography with controlled disorder (NSQ50) has been shown to stimulate os...
Throughout this body of work low amplitude high frequency (500 Hz – 5000 Hz) mechanical stimulation ...
BACKGROUND: Bone is the second most transplanted tissue and due to its complex structure, metabolic ...
The principal aim of this thesis was to investigate the ability of surface topography in inducing bo...
A focus of orthopedic research is to improve osteointegration and outcomes of joint replacement. Mat...
Background: Aseptic loosening remains the primary reason for failure of orthopaedic implants. Theref...
We aimed to assess osteogenesis in osteoprogenitor cells by nanopits and to assess optimal feature d...
Accelerating the integration of a joint replacement or the healing of a bone fracture, particularly ...
Aims. As shown in literature, the future strategies are based on the synergic combination of differe...
Biomaterials without exogenous cells or therapeutic agents often fail to achieve rapid endogenous bo...
This work aimed at studying the effects of dynamic culture conditions and biomimetic coating on bone...
In tissue engineering, it is still rare today to see clinically transferable strategies for tissue-e...
Accelerated de novo formation of bone is a highly desirable aim of implants targeting musculoskeleta...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Chemical Engineering, 2014.Cata...