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Nanotechnology: current concepts in orthopaedic surgery and future directions
M P Sullivan1, K J McHale, J Parvizi
1Hospital of the University of Pennsylvania, Department of Orthopaedic Surgery, 2 Silverstein, 3400 Spruce St, Philadelphia, USA.
The Bone & Joint Journal
|May 3, 2014
Summary
Nanotechnology, manipulating materials at the nanoscale, offers unique properties for orthopaedic implants. These nanophase materials enhance bone integration and reduce bacterial adhesion, promising future medical advancements.
Area of Science:
- Materials Science
- Biomedical Engineering
- Nanotechnology
Background:
- Nanotechnology involves manipulating materials with grain sizes under 100 nm.
- At this scale, quantum mechanics govern material properties like conductivity and reactivity.
- A key feature is the increased surface area to volume ratio, enhancing cellular interactions.
Purpose of the Study:
- To explore the potential applications of nanotechnology in orthopaedic surgery.
- To investigate how nanophase materials can improve implant-host bone interactions.
- To review the use of nanophase materials in various orthopaedic treatments.
Main Methods:
- Review of basic science and translational research on nanophase materials.
- Analysis of nanophase material properties relevant to biological systems.
- Examination of specific applications such as osseointegration, antibacterial coatings, tumor reconstruction, wound healing, nerve repair, and anti-inflammatory effects.
Main Results:
- Nanophase materials improve osseointegration by matching native bone architecture.
- Nanophase coatings reduce bacterial adhesion on prostheses.
- Specific nanophase materials show promise in tumor reconstruction (selenium), wound management (silver), nerve injury (silver), and tendon inflammation (gold).
Conclusions:
- Nanotechnology presents significant potential for advancing orthopaedic surgery and treatments.
- Further research into health risks associated with nanophase devices is crucial before clinical approval.
- Nanophase materials offer improved implant performance and novel therapeutic applications.

