The colonisation of biomaterial surfaces by pathogenic bacteria is a significant issue of concern, particularly in light of the rapid rise of antibiotic resistance. Current strategies are proving ineffective as multi-drug resistant pathogenic bacteria emerge. Recently, it was discovered that surfaces with nanoscale features are capable of physically rupturing bacteria and hence displaying mechano-bactericidal activity. In this study, we investigated the interactions between methicillin- and gentamicin-susceptible and -resistant Staphylococcus aureus strains and nanostructured titanium surfaces, fabricated using a hydrothermal etching process. The nanostructured titanium surfaces proved to be equally effective and highly bactericidal against...
Titanium and its alloys remain the most popular choice as a medical implant material because of its ...
Bacterial colonization on solid surfaces creates enormous problems across various industries causing...
Bacterial colonization on solid surfaces creates enormous problems across various industries causing...
The demand for medical implants globally has increased significantly due to an aging population amon...
Bacterial infection of in-dwelling medical devices is a growing problem that cannot be treated by tr...
Several properties of bio-inspired surfaces like chemical composition, surface topography, surface h...
Titanium is frequently used for dental implants, percutaneous pins and screws or orthopedic joint pr...
Titanium-based implants are ubiquitous in the healthcare industries and often suffer from bacterial ...
Titanium-based implants are ubiquitous in the healthcare industries and often suffer from bacterial ...
Titanium is often applied in implant surgery, but frequently implicated in infections associated wit...
Titanium is often applied in implant surgery, but frequently implicated in infections associated wit...
Titanium is often applied in implant surgery, but frequently implicated in infections associated wit...
Titanium is often applied in implant surgery, but frequently implicated in infections associated wit...
Additive manufacturing (3D printing) has enabled fabrication of geometrically complex and fully inte...
Titanium is often applied in implant surgery, but frequently implicated in infections associated wit...
Titanium and its alloys remain the most popular choice as a medical implant material because of its ...
Bacterial colonization on solid surfaces creates enormous problems across various industries causing...
Bacterial colonization on solid surfaces creates enormous problems across various industries causing...
The demand for medical implants globally has increased significantly due to an aging population amon...
Bacterial infection of in-dwelling medical devices is a growing problem that cannot be treated by tr...
Several properties of bio-inspired surfaces like chemical composition, surface topography, surface h...
Titanium is frequently used for dental implants, percutaneous pins and screws or orthopedic joint pr...
Titanium-based implants are ubiquitous in the healthcare industries and often suffer from bacterial ...
Titanium-based implants are ubiquitous in the healthcare industries and often suffer from bacterial ...
Titanium is often applied in implant surgery, but frequently implicated in infections associated wit...
Titanium is often applied in implant surgery, but frequently implicated in infections associated wit...
Titanium is often applied in implant surgery, but frequently implicated in infections associated wit...
Titanium is often applied in implant surgery, but frequently implicated in infections associated wit...
Additive manufacturing (3D printing) has enabled fabrication of geometrically complex and fully inte...
Titanium is often applied in implant surgery, but frequently implicated in infections associated wit...
Titanium and its alloys remain the most popular choice as a medical implant material because of its ...
Bacterial colonization on solid surfaces creates enormous problems across various industries causing...
Bacterial colonization on solid surfaces creates enormous problems across various industries causing...