Reactive oxygen species (ROS) are key pathological signals expressed in inflammatory diseases such as cancer, ischemic conditions and atherosclerosis. An ideal drug delivery system should not only be responsive to these signals but also should not elicit an unfavourable host response. This study presents an innovative platform for drug delivery where a natural/synthetic composite system composed of collagen type I and a synthesized polythioether, ensures a dual stimuli-responsive behaviour. Collagen type I is an extracellular matrix constituent protein, responsive to matrix metalloproteinases (MMP) cleavage per se. Polythioethers are stable synthetic polymers characterized by the presence of sulphur, which undergoes a ROS-responsive swellin...
Reactive oxygen species (ROS) are byproducts of cellular metabolism; they play a significant role as...
Due to the high oxidative stress of the tumor microenvironment, more and more researchers have been ...
Polymerized high internal phase emulsions (polyHIPEs) are highly porous constructs currently under i...
Abstract Reactive oxygen species (ROS) are key pathological signals expressed in inflammatory diseas...
Reactive oxygen species (ROS) are key pathological signals expressed in inflammatory diseases such a...
Given the increasing evidence indicates that many pathological conditions are associated with elevat...
In this thesis, bioorthogonal chemistry was explored as a means of developing stimuli-responsive nan...
A broad-spectrum reactive oxygen species (ROS)-scavenging hybrid material (CASCADE) was developed by...
Reactive oxygen species (ROS) play crucial roles in biological metabolism and intercellular signalin...
Redox-responsive nanocarriers using disulfides or thiols have received considerable attention owing ...
Recently, attention in chronic inflammation has been increasing since it is closely related to vario...
The introduction of tissue engineering therapies for the repair of bone defects has been limited by ...
Polymeric materials are excellent candidates for use as biomaterials. They are often employed as dru...
Doctor of PhilosophyDepartment of Chemical EngineeringJennifer AnthonyRyan HansenSynthetic polymeric...
Abstract: Reactive oxygen species (ROS)-sensitive drug delivery systems (DDS) specifically respondin...
Reactive oxygen species (ROS) are byproducts of cellular metabolism; they play a significant role as...
Due to the high oxidative stress of the tumor microenvironment, more and more researchers have been ...
Polymerized high internal phase emulsions (polyHIPEs) are highly porous constructs currently under i...
Abstract Reactive oxygen species (ROS) are key pathological signals expressed in inflammatory diseas...
Reactive oxygen species (ROS) are key pathological signals expressed in inflammatory diseases such a...
Given the increasing evidence indicates that many pathological conditions are associated with elevat...
In this thesis, bioorthogonal chemistry was explored as a means of developing stimuli-responsive nan...
A broad-spectrum reactive oxygen species (ROS)-scavenging hybrid material (CASCADE) was developed by...
Reactive oxygen species (ROS) play crucial roles in biological metabolism and intercellular signalin...
Redox-responsive nanocarriers using disulfides or thiols have received considerable attention owing ...
Recently, attention in chronic inflammation has been increasing since it is closely related to vario...
The introduction of tissue engineering therapies for the repair of bone defects has been limited by ...
Polymeric materials are excellent candidates for use as biomaterials. They are often employed as dru...
Doctor of PhilosophyDepartment of Chemical EngineeringJennifer AnthonyRyan HansenSynthetic polymeric...
Abstract: Reactive oxygen species (ROS)-sensitive drug delivery systems (DDS) specifically respondin...
Reactive oxygen species (ROS) are byproducts of cellular metabolism; they play a significant role as...
Due to the high oxidative stress of the tumor microenvironment, more and more researchers have been ...
Polymerized high internal phase emulsions (polyHIPEs) are highly porous constructs currently under i...