Accelerated de novo formation of bone is a highly desirable aim of implants targeting musculoskeletal injuries. To date, this has primarily been addressed by biologic factors. However, there is an unmet need for robust, highly reproducible yet economic alternative strategies that strongly induce an osteogenic cell response. Here, we present a surface engineering method of translating bioactive nanopatterns from polymeric in vitro studies to clinically relevant material for orthopedics: three-dimensional, large area metal. We use a titanium-based sol-gel whereby metal implants can be engineered to induce osteoinduction both in vitro and in vivo. We show that controlled disordered nanotopographies presented as pillars with 15-25 nm height and...
The osteointegration of the orthopaedic implants could improve the biocompatibility and the life spa...
Purpose: Mechanisms governing the cellular interactions with well-defined nanotopography are not wel...
We have developed precision-engineered strontium eluting nanopatterned surfaces. Nanotopography has ...
Accelerated de novo formation of bone is a highly desirable aim of implants targeting musculoskeleta...
Despite technological advancements, further innovations in the field of orthopedics and bone regener...
Despite technological advancements, further innovations in the field of orthopedics and bone regener...
Aims. As shown in literature, the future strategies are based on the synergic combination of differe...
Titanium (Ti) is used as a load-bearing material in the production of orthopedic devices. The clinic...
A focus of orthopedic research is to improve osteointegration and outcomes of joint replacement. Mat...
Skeletal disorders requiring the regeneration or de novo production of bone present considerable rec...
Osteocytes function as the master orchestrator of bone remodeling activity in the telophase of osseo...
Due to the aging of the world’s population, the market for orthopedic implants is growing rapidly. E...
With increasingly higher performance requirements and health care costs associated with dental and o...
This work summarizes information about the interactions between osteoblasts and nanostructured mater...
ABSTRACT: Reattachment of tendon to bone has been a challenge in orthopedic surgery. The disparate m...
The osteointegration of the orthopaedic implants could improve the biocompatibility and the life spa...
Purpose: Mechanisms governing the cellular interactions with well-defined nanotopography are not wel...
We have developed precision-engineered strontium eluting nanopatterned surfaces. Nanotopography has ...
Accelerated de novo formation of bone is a highly desirable aim of implants targeting musculoskeleta...
Despite technological advancements, further innovations in the field of orthopedics and bone regener...
Despite technological advancements, further innovations in the field of orthopedics and bone regener...
Aims. As shown in literature, the future strategies are based on the synergic combination of differe...
Titanium (Ti) is used as a load-bearing material in the production of orthopedic devices. The clinic...
A focus of orthopedic research is to improve osteointegration and outcomes of joint replacement. Mat...
Skeletal disorders requiring the regeneration or de novo production of bone present considerable rec...
Osteocytes function as the master orchestrator of bone remodeling activity in the telophase of osseo...
Due to the aging of the world’s population, the market for orthopedic implants is growing rapidly. E...
With increasingly higher performance requirements and health care costs associated with dental and o...
This work summarizes information about the interactions between osteoblasts and nanostructured mater...
ABSTRACT: Reattachment of tendon to bone has been a challenge in orthopedic surgery. The disparate m...
The osteointegration of the orthopaedic implants could improve the biocompatibility and the life spa...
Purpose: Mechanisms governing the cellular interactions with well-defined nanotopography are not wel...
We have developed precision-engineered strontium eluting nanopatterned surfaces. Nanotopography has ...