This thesis project is focused on the development of a high-tech platform capable to assess the level of oxidative stress (OS) in selected cell cultures and the effect of supplementation of functional food in the levels of OS. To do so, we will study and exploit different analytical techniques combined in a microfluidic system using a bottom-up strategy. Firstly, we will design and develop the sensing systems able to detect oxidative stress biomarkers and functional food components. Further, all the developed technology will be couple in a new integrated microfluidic platform able to quantify OS status and response to functional food supplementation of selected cell cultures. Doing so, we expect to pave the way to the study of oxidative str...
This overview describes the optimal implementation and utilization of different, newly conceived nan...
With intrinsic benefits of electrochemistry and unprecedented progress in instrumentation, microelec...
Extracellular communication relies on signaling molecules for cellular survival, division, different...
In this work, different electrochemical sensors based on nanomaterials aimed to assess cell oxidativ...
Integration of electrochemical detection (ED) in cell culture is an advantageous strategy to detect ...
This Doctoral Thesis has been formed in two well-defined areas within the field of design and develo...
Reactive Oxygen Species (ROS) are reduced forms of oxygen such as superoxide anion, hydroxyl radical...
Research on the cure and early detection of diseases such as diabetes, Alzheimer\u27s, and Parkinson...
Since an unbalanced excess of reactive oxygen/nitrogen species (ROS/RNS) causes various diseases, de...
The objective of this thesis is to develop a robust, flexible and versatile nano-structuredplatform ...
Electrochemical detection methods are highly attractive for the monitoring of glucose, cholesterol, ...
PhD ThesisReactive oxygen species (ROS) including superoxide (O2̄), nitric oxide (NO•) and hydrogen ...
Reactive Oxygen Species (ROS) are reduced forms of oxygen such as superoxide anion, hydroxyl radical...
Reactive oxygen species are implicates in a variety of diseases and disorders including: Alzheimers ...
Dissertation (Ph.D.)--University of Kansas, Chemistry, 1997.Oxidase-based biosensors for continuous ...
This overview describes the optimal implementation and utilization of different, newly conceived nan...
With intrinsic benefits of electrochemistry and unprecedented progress in instrumentation, microelec...
Extracellular communication relies on signaling molecules for cellular survival, division, different...
In this work, different electrochemical sensors based on nanomaterials aimed to assess cell oxidativ...
Integration of electrochemical detection (ED) in cell culture is an advantageous strategy to detect ...
This Doctoral Thesis has been formed in two well-defined areas within the field of design and develo...
Reactive Oxygen Species (ROS) are reduced forms of oxygen such as superoxide anion, hydroxyl radical...
Research on the cure and early detection of diseases such as diabetes, Alzheimer\u27s, and Parkinson...
Since an unbalanced excess of reactive oxygen/nitrogen species (ROS/RNS) causes various diseases, de...
The objective of this thesis is to develop a robust, flexible and versatile nano-structuredplatform ...
Electrochemical detection methods are highly attractive for the monitoring of glucose, cholesterol, ...
PhD ThesisReactive oxygen species (ROS) including superoxide (O2̄), nitric oxide (NO•) and hydrogen ...
Reactive Oxygen Species (ROS) are reduced forms of oxygen such as superoxide anion, hydroxyl radical...
Reactive oxygen species are implicates in a variety of diseases and disorders including: Alzheimers ...
Dissertation (Ph.D.)--University of Kansas, Chemistry, 1997.Oxidase-based biosensors for continuous ...
This overview describes the optimal implementation and utilization of different, newly conceived nan...
With intrinsic benefits of electrochemistry and unprecedented progress in instrumentation, microelec...
Extracellular communication relies on signaling molecules for cellular survival, division, different...