We demonstrated the live monitoring of cellular respiration using an ion-sensitive field-effect transistor (ISFET), focusing on different types of living cells, namely cancer and normal cells. In particular, we realized the label-free, real-time, and noninvasive monitoring of microenvironmental pH behavior based on extracellular acidosis around cancer cells in the long term and in situ. The change in interfacial pH (ΔpHint), which was analyzed based on the change in interfacial potential (ΔVout) at the cell/gate nanogap interface gradually decreased for every cell-based ISFET. Moreover, the ΔpHint for cancer cells shifted by a factor of 5 to 6, which was larger than that for normal cells. This is because cancer cells cause dysbolism and are...
Significant research efforts have been dedicated to the integration of biological species with elect...
Biological studies of tissues and cells have enabled numerous discoveries, but these studies still b...
Monitoring the bioelectrochemical activity of living cells with sensor array-based microsystems repr...
Potentiometric pH measurements have long been used for the bioanalysis of biofluids, tissues, and ce...
The extracellular ionic microenvironment has a close relationship to biological activities such as b...
We present a novel method for the rapid measurement of pH fluxes at close proximity to the surface o...
abstract: The growth of the medical diagnostic industry in the past several decades has largely been...
In the last decade, nanoscale field-effect transistor biosensors have proven to be powerful, ultra-s...
Nanometric field-effect-transistor (FET) sensors are made on the tip of spear-shaped dual carbon nan...
Dynamic mapping of extracellular pH (pHe) at the single-cell level is critical for understanding the...
We have developed a way to measure cell surface pH by positioning a pH-sensitive fluorescent dye, se...
Dynamic mapping of extracellular pH (pHe) at the single-cell level is critical for understanding the...
In the last decade, fundamental advances in whole cell based sensors and microsystems have establish...
Precise and dynamic imaging of extracellular pH is one crucial yet challenging task for studying cel...
Monitoring the bioelectrochemical activity of living cells with sensor array-based microsystems repr...
Significant research efforts have been dedicated to the integration of biological species with elect...
Biological studies of tissues and cells have enabled numerous discoveries, but these studies still b...
Monitoring the bioelectrochemical activity of living cells with sensor array-based microsystems repr...
Potentiometric pH measurements have long been used for the bioanalysis of biofluids, tissues, and ce...
The extracellular ionic microenvironment has a close relationship to biological activities such as b...
We present a novel method for the rapid measurement of pH fluxes at close proximity to the surface o...
abstract: The growth of the medical diagnostic industry in the past several decades has largely been...
In the last decade, nanoscale field-effect transistor biosensors have proven to be powerful, ultra-s...
Nanometric field-effect-transistor (FET) sensors are made on the tip of spear-shaped dual carbon nan...
Dynamic mapping of extracellular pH (pHe) at the single-cell level is critical for understanding the...
We have developed a way to measure cell surface pH by positioning a pH-sensitive fluorescent dye, se...
Dynamic mapping of extracellular pH (pHe) at the single-cell level is critical for understanding the...
In the last decade, fundamental advances in whole cell based sensors and microsystems have establish...
Precise and dynamic imaging of extracellular pH is one crucial yet challenging task for studying cel...
Monitoring the bioelectrochemical activity of living cells with sensor array-based microsystems repr...
Significant research efforts have been dedicated to the integration of biological species with elect...
Biological studies of tissues and cells have enabled numerous discoveries, but these studies still b...
Monitoring the bioelectrochemical activity of living cells with sensor array-based microsystems repr...