The pathogenic Escherichia coli strain E. coli K1 is a primary causative agent of neonatal meningitis. Understanding how these bacteria cross the blood-brain barrier is vital to develop therapeutics. Here, we describe the use of live-cell imaging techniques to study E. coli K1 interactions with cellular markers following infection of human brain microvascular endothelial cells, a model system of the blood-brain barrier. We also discuss optimization of endothelial cell transfection conditions using nonviral transfection technique, bacterial labeling techniques, and in vitro assays to screen for fluorescent bacteria that retain their ability to invade host cells
Bacterial bioluminescence has been shown to be an accurate real-time reporter of bacterial internali...
Blood Brain Barrier (BBB) is a protective barrier against possible neurotoxic molecules, such as pro...
The key aspect of neonatal meningitis is related to the ability of pathogens to invade the blood-bra...
Escherichia coli K1 is a major gram-negative organism causing neonatal meningitis. E. coli K1 bindin...
Escherichia coli K1 is a major gram-negative organism causing neonatal meningitis. E. coli K1 bindin...
Escherichia coli isolates that cause meningitis in newborns are able to invade the circulation and s...
Pathophysiology of Escherichia coli sepsis is complex involving circulating bacterial products, cyto...
Eukaryotic cells utilize multiple endocytic pathways for specific uptake of ligands or molecules, an...
Escherichia coli (E. coli) Kl is one of the commonest Gram negative bacteria causing neonatal bacte...
[[abstract]]Escherichia coli K1 is the most common Gram-negative organism causing neonatal meningiti...
ABSTRACT. Microbial penetration of the blood-brain barrier (BBB) into the central nervous system is ...
Understanding the pathogenesis of bacterial infections is critical for combatting them. For some inf...
Abstract Background Bacterial meningitis remains a big threat to the integrity of the central nervou...
A major contributing factor to high mortality and morbidity associated with bacterial meningitis is ...
AbstractInvasion of brain microvascular endothelial cells is a prerequisite for successful crossing ...
Bacterial bioluminescence has been shown to be an accurate real-time reporter of bacterial internali...
Blood Brain Barrier (BBB) is a protective barrier against possible neurotoxic molecules, such as pro...
The key aspect of neonatal meningitis is related to the ability of pathogens to invade the blood-bra...
Escherichia coli K1 is a major gram-negative organism causing neonatal meningitis. E. coli K1 bindin...
Escherichia coli K1 is a major gram-negative organism causing neonatal meningitis. E. coli K1 bindin...
Escherichia coli isolates that cause meningitis in newborns are able to invade the circulation and s...
Pathophysiology of Escherichia coli sepsis is complex involving circulating bacterial products, cyto...
Eukaryotic cells utilize multiple endocytic pathways for specific uptake of ligands or molecules, an...
Escherichia coli (E. coli) Kl is one of the commonest Gram negative bacteria causing neonatal bacte...
[[abstract]]Escherichia coli K1 is the most common Gram-negative organism causing neonatal meningiti...
ABSTRACT. Microbial penetration of the blood-brain barrier (BBB) into the central nervous system is ...
Understanding the pathogenesis of bacterial infections is critical for combatting them. For some inf...
Abstract Background Bacterial meningitis remains a big threat to the integrity of the central nervou...
A major contributing factor to high mortality and morbidity associated with bacterial meningitis is ...
AbstractInvasion of brain microvascular endothelial cells is a prerequisite for successful crossing ...
Bacterial bioluminescence has been shown to be an accurate real-time reporter of bacterial internali...
Blood Brain Barrier (BBB) is a protective barrier against possible neurotoxic molecules, such as pro...
The key aspect of neonatal meningitis is related to the ability of pathogens to invade the blood-bra...