gemifloxacin brands

6 registered brands containing gemifloxacin in Kenya.

gemifloxacin

PubChem CID 9571107

Molecular formula: C18H20FN5O4

The bactericidal action of gemifloxacin results from inhibition of the enzymes topoisomerase II (DNA gyrase) and topoisomerase IV, which are required for bacterial DNA replication, transcription, repair, and recombination. Like other fluoroquinolone anti-infective agents, gemifloxacin inhibits DNA synthesis in susceptible organisms via inhibition of type II DNA topoisomerases (DNA gyrase, topoisomerase IV). However, unlike many other fluoroquinolones, gemifloxacin targets both DNA gyrase and topoisomerase IV in susceptible S. pneumoniae. Although cross-resistance can occur between gemifloxacin and other fluoroquinolones, gemifloxacin may be active against some strains of S. pneumoniae resistant to ciprofloxacin and other fluoroquinolones. The fluroquinolone gemifloxacin was examined for its capacity to modulate secretion of cytokines by human monocytes stimulated with lipopolysaccharide (LPS). Monocytes from six male and two female healthy volunteers were stimulated with LPS, exposed to gemifloxacin and the amounts of secreted IL-1 alpha, IL-1 beta, IL-6, IL-10 and TNF-alpha measured at 3, 6 and 24 h. The results revealed that LPS alone increased secretion of each cytokine significantly. Treatment of the LPS-stimulated monocytes with gemifloxacin resulted in a significant inhibition (p < 0.01) of secretion of each of the cytokines from monocytes of the eight volunteers. Nuclear extracts of the human monocyte cell line, THP-1, were used in the electrophoretic mobility shift assay to determine whether gemifloxacin affects nuclear factor-kappa B (NF-kappa B) activation. In addition, RNA from THP-1 cells was used in Northern blots to determine whether inhibition of secretion of IL-1 beta and TNF-alpha by gemifloxacin occurred at the transcription or translation level. Whereas LPS induced a rapid increase in NF-kappa B activation, gemifloxacin alone did not. Gemifloxacin did not affect the kinetics or decrease the extent of activation. Northern blots indicated that the inhibitory activity of gemifloxacin occurred post-transcription. Thus, gemifloxacin may modulate the immune response by altering secretion of cytokines by human monocytes. Although the concentrations of gemifloxacin used were higher than those observed in the serum of human volunteers treated with the dose under clinical development, it should be taken into consideration that concentrations at tissue and intracellular levels may be considerably higher than serum concentrations. Fluoroquinolones prolong the QT interval by blocking voltage-gated potassium channels, especially the rapid component of the delayed rectifier potassium current I(Kr), expressed by HERG (the human ether-a-go-go-related gene). According to the available case reports and clinical studies, moxifloxacin carries the greatest risk of QT prolongation from all available quinolones in clinical practice and it should be used with caution in patients with predisposing factors for Torsades de pointes (TdP).

Source: PubChem (NCBI) ยท compound 9571107

Product Manufacturer Status Country
ACTIGEM 320 TABLETS
GEMIFLOXACIN 320MG
Surgilinks Registered Kenya
GEMFLOX
GEMIFLOXACIN TABLETS 320 MG
Krishna Chemists Registered Kenya
GEMIFLOX TABLET
320 MG
Madawa Pharmaceuticals Registered Kenya
GEMKIT
COMBIKIT OF (A) RABEPRAZOLE SODIUM TABLETS 20 MG (B) GEMIFLOXACIN TABLETS 320 MG (C) AMOXICILLIN TABLETS USP 1000 MG
Krishna Chemists Registered Kenya
GEMKIT
COMBIKIT OF (A) RABEPRAZOLE SODIUM TABLETS 20 MG (B) GEMIFLOXACIN TABLETS 320 MG (C) AMOXICILLIN TABLETS USP 1000 MG
Krishna Chemists Registered Kenya
LOX-G
GEMIFLOXACIN MESYLATE 320MG
Dawa Registered Kenya