Gallium (Ga) compounds, as the source of Ga ions (Ga3+), have been historically used as anti-inflammatories. Currently, the widely accepted mechanisms of the anti-inflammatory effects for Ga3+are rationalized on the basis of their similarities to ferric ions (Fe3+), which permits Ga3+to bind with Fe-binding proteins and subsequently disturbs the Fe homeostasis in the immune cells. Here in contrast to the classic views, our study presents the mechanisms of Ga as anti-inflammatory by delivering Ga nanodroplets (GNDs) into lipopolysaccharide-induced macrophages and exploring the processes. The GNDs show a selective inhibition of nitric oxide (NO) production without affecting the accumulation of pro-inflammatory mediators. This is explained by ...
New treatments and novel drugs are required to counter the growing problem of drug-resistant strains...
Resistant bacterial infection remains a severe public health threat, and conventional antibiotic dru...
The incorporation of gallium into bioactive materials has been reported to enhance osteogenesis, to ...
Gallium (Ga) compounds, as the source of Ga ions (Ga3+), have been historically used as anti-inflamm...
[[abstract]]Gallium is commonly used in the semiconductor industry and medical field. Biologically, ...
Gallium is commonly used in the semiconductor industry and medical field. Biologically, gallium is a...
Gallium-based drugs have been repurposed as antibacterial therapeutic candidates and have shown sign...
There are only few drugs available to treat fungal infections, and the lack of new antifungals, alon...
Since they were first discovered, antibiotics have been used to fight bacterial infections and save ...
https://kent-islandora.s3.us-east-2.amazonaws.com/ugresearch/2017/phys_chem_lc/4/thumbnail.jpgAntibi...
AbstractApoptosis and NETosis of neutrophils are two major mechanisms of programmed cell death that ...
ESKAPE bacteria are a major cause of multidrug-resistant infections, and new drugs are urgently need...
ESKAPE bacteria are a major cause of multidrug-resistant infections, and new drugs are urgently need...
Ga(III) can mimic Fe(III) in the biological system due to its similarities in charge and ionic radiu...
Multidrug-resistant Acinetobacter baumannii poses a tremendous challenge to traditional antibiotic t...
New treatments and novel drugs are required to counter the growing problem of drug-resistant strains...
Resistant bacterial infection remains a severe public health threat, and conventional antibiotic dru...
The incorporation of gallium into bioactive materials has been reported to enhance osteogenesis, to ...
Gallium (Ga) compounds, as the source of Ga ions (Ga3+), have been historically used as anti-inflamm...
[[abstract]]Gallium is commonly used in the semiconductor industry and medical field. Biologically, ...
Gallium is commonly used in the semiconductor industry and medical field. Biologically, gallium is a...
Gallium-based drugs have been repurposed as antibacterial therapeutic candidates and have shown sign...
There are only few drugs available to treat fungal infections, and the lack of new antifungals, alon...
Since they were first discovered, antibiotics have been used to fight bacterial infections and save ...
https://kent-islandora.s3.us-east-2.amazonaws.com/ugresearch/2017/phys_chem_lc/4/thumbnail.jpgAntibi...
AbstractApoptosis and NETosis of neutrophils are two major mechanisms of programmed cell death that ...
ESKAPE bacteria are a major cause of multidrug-resistant infections, and new drugs are urgently need...
ESKAPE bacteria are a major cause of multidrug-resistant infections, and new drugs are urgently need...
Ga(III) can mimic Fe(III) in the biological system due to its similarities in charge and ionic radiu...
Multidrug-resistant Acinetobacter baumannii poses a tremendous challenge to traditional antibiotic t...
New treatments and novel drugs are required to counter the growing problem of drug-resistant strains...
Resistant bacterial infection remains a severe public health threat, and conventional antibiotic dru...
The incorporation of gallium into bioactive materials has been reported to enhance osteogenesis, to ...