Nanometric field-effect-transistor (FET) sensors are made on the tip of spear-shaped dual carbon nanoelectrodes derived from carbon deposition inside double-barrel nanopipettes. The easy fabrication route allows deposition of semiconductors or conducting polymers to comprise the transistor channel. A channel from electrodeposited poly pyrrole (PPy) exhibits high sensitivity toward pH changes. This property is exploited by immobilizing hexokinase on PPy nano-FETs to give rise to a selective ATP biosensor. Extracellular pH and ATP gradients are key biochemical constituents in the microenvironment of living cells; we monitor their real-time changes in relation to cancer cells and cardiomyocytes. The highly localized detection is possible becau...
<p>The ability to make electrical measurements inside cells has led to many important advances in el...
There has been a significant drive to deliver nanotechnological solutions to biosensing, yet there r...
Single cell analysis is required to decipher a myriad of cellular processes; however, it is very cha...
There has been a significant drive to deliver nanotechnological solutions to biosensing, yet there r...
The measurement of key molecules in individual cells with minimal disruption to the biological milie...
Dynamic mapping of extracellular pH (pHe) at the single-cell level is critical for understanding the...
Nanopores have been proved to be promising analytical platforms for label-free single-molecule biose...
2015-06-19Researchers have been developing Point‐Of‐Care Testing (POCT) devices over the past decade...
Examining the behavior of a single cell within its natural environment is valuable for understanding...
Dynamic mapping of extracellular pH (pHe) at the single-cell level is critical for understanding the...
In the last decade, nanoscale field-effect transistor biosensors have proven to be powerful, ultra-s...
The ability to make electrical measurements inside cells has led to many important advances in elect...
ABSTRACT: Transistor-based nanoelectronic sensors are capable of label-free real-time chemical and b...
Nanocarbon-based field-effect transistor (NC-FET) biosensors are at the forefront of future diagnost...
Complex biological processes occur in the nanoscale (1-100 nm) regime. ‘DNA’ which is just 2 nm in d...
<p>The ability to make electrical measurements inside cells has led to many important advances in el...
There has been a significant drive to deliver nanotechnological solutions to biosensing, yet there r...
Single cell analysis is required to decipher a myriad of cellular processes; however, it is very cha...
There has been a significant drive to deliver nanotechnological solutions to biosensing, yet there r...
The measurement of key molecules in individual cells with minimal disruption to the biological milie...
Dynamic mapping of extracellular pH (pHe) at the single-cell level is critical for understanding the...
Nanopores have been proved to be promising analytical platforms for label-free single-molecule biose...
2015-06-19Researchers have been developing Point‐Of‐Care Testing (POCT) devices over the past decade...
Examining the behavior of a single cell within its natural environment is valuable for understanding...
Dynamic mapping of extracellular pH (pHe) at the single-cell level is critical for understanding the...
In the last decade, nanoscale field-effect transistor biosensors have proven to be powerful, ultra-s...
The ability to make electrical measurements inside cells has led to many important advances in elect...
ABSTRACT: Transistor-based nanoelectronic sensors are capable of label-free real-time chemical and b...
Nanocarbon-based field-effect transistor (NC-FET) biosensors are at the forefront of future diagnost...
Complex biological processes occur in the nanoscale (1-100 nm) regime. ‘DNA’ which is just 2 nm in d...
<p>The ability to make electrical measurements inside cells has led to many important advances in el...
There has been a significant drive to deliver nanotechnological solutions to biosensing, yet there r...
Single cell analysis is required to decipher a myriad of cellular processes; however, it is very cha...