The lux operon is a useful reporter for bioluminescence imaging due to its independence of exogenous luciferin supply, but its relatively low brightness hampers the imaging of single cells. This chapter describes a procedure for the imaging of individual Escherichia coli cells using an improved ilux operon. The enhanced brightness of ilux enables long-term bioluminescence imaging of single bacteria with high sensitivity without the requirement for an external luciferin
The ability to track microbes in real time in vivo is of enormous value for preclinical investigatio...
none8Bioluminescence in vivo imaging (BLI) is a powerful tool in preclinical research allowing the r...
There has been a rapid growth of bioluminescence imaging applications in small animal models in rece...
Bioluminescence imaging of single cells is often complicated by the requirement of exogenous lucifer...
Bioluminescence imaging of single cells is often complicated by the requirement of exogenous lucifer...
The bacterial bioluminescence system enables the generation of light by living cells without the req...
Abstract Using the lux operon (luxCDABE) of bacterial bioluminescence system as an autonomous lumino...
Bioluminescence-based imaging of living cells has become an important tool in biological and medical...
The bacterial luciferase (lux) gene cassette consists of five genes (luxCDABE) whose protein product...
Bioluminescent and fluorescent reporter systems have enabled the rapid and continued growth of the o...
The bacterial luciferase gene cassette (lux) is unique among bioluminescent bioreporter systems due ...
Expression of autonomous bioluminescence from human cells was previously reported to be impossible, ...
The ability to track microbes in real time in vivo is of enormous value for preclinical investigatio...
In vivo bioluminescence imaging has been used to monitor Staphylococcus aureus infections in preclin...
We now find ourselves utilizing luciferase - luciferin proteins, ATP, genes and the whole complex of...
The ability to track microbes in real time in vivo is of enormous value for preclinical investigatio...
none8Bioluminescence in vivo imaging (BLI) is a powerful tool in preclinical research allowing the r...
There has been a rapid growth of bioluminescence imaging applications in small animal models in rece...
Bioluminescence imaging of single cells is often complicated by the requirement of exogenous lucifer...
Bioluminescence imaging of single cells is often complicated by the requirement of exogenous lucifer...
The bacterial bioluminescence system enables the generation of light by living cells without the req...
Abstract Using the lux operon (luxCDABE) of bacterial bioluminescence system as an autonomous lumino...
Bioluminescence-based imaging of living cells has become an important tool in biological and medical...
The bacterial luciferase (lux) gene cassette consists of five genes (luxCDABE) whose protein product...
Bioluminescent and fluorescent reporter systems have enabled the rapid and continued growth of the o...
The bacterial luciferase gene cassette (lux) is unique among bioluminescent bioreporter systems due ...
Expression of autonomous bioluminescence from human cells was previously reported to be impossible, ...
The ability to track microbes in real time in vivo is of enormous value for preclinical investigatio...
In vivo bioluminescence imaging has been used to monitor Staphylococcus aureus infections in preclin...
We now find ourselves utilizing luciferase - luciferin proteins, ATP, genes and the whole complex of...
The ability to track microbes in real time in vivo is of enormous value for preclinical investigatio...
none8Bioluminescence in vivo imaging (BLI) is a powerful tool in preclinical research allowing the r...
There has been a rapid growth of bioluminescence imaging applications in small animal models in rece...