Limitations of systemic therapy and poorly soluble drugs are persistent problems in pharmaceutical science. A promising alternative to improving drug efficacy and bioavailability is local therapy. Mesoporous structures such as Titania nanotube arrays (TNT) prepared by self-ordering electrochemical process have attracted considerable attention for the development of new implants for local delivery of therapeutics. In this work, we present a drug delivery system based on surface coating on TNT for controlled and extended delivery of poorly water-soluble drugs. TNT layers of highly ordered and vertically aligned nanotubes (20 μm long with diameters of 100 nm) were prepared by the anodization of titanium foil. Indomethacin, an anti-inflammatory...
A number of bone pathologies, such as fracture, infection or cancer, require drug therapy. However, ...
Qun Wang,1,2,* Jian-Ying Huang,2,* Hua-Qiong Li,3,4 Allan Zi-Jian Zhao,4 Yi Wang,4 Ke-Qin Zhang,2,5 ...
A new approach to engineer a local drug delivery system with delayed release using nanostructured su...
Creating implants with drug-eluting properties to locally deliver drugs is an appealing approach to ...
Bacterial infection, extensive inflammation and poor osseointegration have been identified as the ma...
The attractiveness of sell-ordered electrochemical synthesis of nanopore and nanotube arrays is base...
The structural engineering of titania nanotubes (TNTs) using electrochemical anodization was perform...
The attractiveness of sell-ordered electrochemical synthesis of nanopore and nanotube arrays is base...
INTRODUCTION: Titania nanotube (TNTs) arrays engineered by simple and scalable electrochemical anodi...
Introduction: Titania nanotube (TNTs) arrays engineered by simple and scalable electrochemical anodi...
Titania nanotube (TNT) arrays fabricated by electrochemical anodization of titanium are currently on...
Titania nanotube (TNT) arrays fabricated by electrochemical anodization of titanium are currently on...
First published online 14 Nov 2013To address the limitations of systemic drug delivery, localized dr...
The aim of this study is to synthesize Titania nanotubes (TNTs) on the 3D-printed Ti-6Al-4V surface ...
Here, we report on the development of advanced biopolymer-coated drug-releasing implants based on ti...
A number of bone pathologies, such as fracture, infection or cancer, require drug therapy. However, ...
Qun Wang,1,2,* Jian-Ying Huang,2,* Hua-Qiong Li,3,4 Allan Zi-Jian Zhao,4 Yi Wang,4 Ke-Qin Zhang,2,5 ...
A new approach to engineer a local drug delivery system with delayed release using nanostructured su...
Creating implants with drug-eluting properties to locally deliver drugs is an appealing approach to ...
Bacterial infection, extensive inflammation and poor osseointegration have been identified as the ma...
The attractiveness of sell-ordered electrochemical synthesis of nanopore and nanotube arrays is base...
The structural engineering of titania nanotubes (TNTs) using electrochemical anodization was perform...
The attractiveness of sell-ordered electrochemical synthesis of nanopore and nanotube arrays is base...
INTRODUCTION: Titania nanotube (TNTs) arrays engineered by simple and scalable electrochemical anodi...
Introduction: Titania nanotube (TNTs) arrays engineered by simple and scalable electrochemical anodi...
Titania nanotube (TNT) arrays fabricated by electrochemical anodization of titanium are currently on...
Titania nanotube (TNT) arrays fabricated by electrochemical anodization of titanium are currently on...
First published online 14 Nov 2013To address the limitations of systemic drug delivery, localized dr...
The aim of this study is to synthesize Titania nanotubes (TNTs) on the 3D-printed Ti-6Al-4V surface ...
Here, we report on the development of advanced biopolymer-coated drug-releasing implants based on ti...
A number of bone pathologies, such as fracture, infection or cancer, require drug therapy. However, ...
Qun Wang,1,2,* Jian-Ying Huang,2,* Hua-Qiong Li,3,4 Allan Zi-Jian Zhao,4 Yi Wang,4 Ke-Qin Zhang,2,5 ...
A new approach to engineer a local drug delivery system with delayed release using nanostructured su...