Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Elucidating the effect of cations on Klebsiella pneumoniae biofilm and related genes

View through CrossRef
Abstract K. pneumoniae is a non-motile, encapsulated bacterium from the Enterobacteriaceae family. The illnesses related to this opportunistic pathogen are pneumonia, Urinary Tract Infection (UTI), pyogenic liver abscess, endophthalmitis, and meningitis. Among them, UTI is predominant due to its biofilm formation leading to the mortality of 150 million people worldwide. The function of monovalent and divalent ions on Klebsiella biofilm, aside from physiochemical variables, remains unclear. Hence the present study was performed to analyze the role of K + , Ca 2+ , Na + , Mg 2+ , NH + 4 in biofilm formation and its influence on biofilm-related genes. Among the tested cations, K + and Ca 2+ yielded strong biofilm in clinical and environment isolates in pH between 6.5 to 9.5. Increasing Ca 2+ ions concertation reduced the Klebsiella biofilm. When compared to the hypercalciuria condition (Ca 2+ level > 5 mM), 2.5 mM resulted in high biofilm mass. Cations concurrently enhanced the size of the capsule and cell density of Klebsiella but were not correlated with biofilm mass. Expression of the LPS gene ( WbaG ) either in planktonic or biofilm stage promoted biofilm formation in the presence of K + , Ca 2+ and Na + . Whereas, expression of fimbriae genes ( FimH and mrkD ) was co- regulation, and capsule genes ( RmpA and Wcab ) were absent. Stating, the primary component needed for the Klebsiella biofilm is not the capsule or fimbriae, rather LPS. Resulting as a potent target in the treatment of Klebsiella biofilm in UTI. To the best of our knowledge, this is the first kind of study on the effect of cation ions on biofilm and planktonic cells of Klebsiella spp. and demonstrating the role of LPS biosynthesis gene ( WbaG ) in biofilm development.
Title: Elucidating the effect of cations on Klebsiella pneumoniae biofilm and related genes
Description:
Abstract K.
pneumoniae is a non-motile, encapsulated bacterium from the Enterobacteriaceae family.
The illnesses related to this opportunistic pathogen are pneumonia, Urinary Tract Infection (UTI), pyogenic liver abscess, endophthalmitis, and meningitis.
Among them, UTI is predominant due to its biofilm formation leading to the mortality of 150 million people worldwide.
The function of monovalent and divalent ions on Klebsiella biofilm, aside from physiochemical variables, remains unclear.
Hence the present study was performed to analyze the role of K + , Ca 2+ , Na + , Mg 2+ , NH + 4 in biofilm formation and its influence on biofilm-related genes.
Among the tested cations, K + and Ca 2+ yielded strong biofilm in clinical and environment isolates in pH between 6.
5 to 9.
5.
Increasing Ca 2+ ions concertation reduced the Klebsiella biofilm.
When compared to the hypercalciuria condition (Ca 2+ level > 5 mM), 2.
5 mM resulted in high biofilm mass.
Cations concurrently enhanced the size of the capsule and cell density of Klebsiella but were not correlated with biofilm mass.
Expression of the LPS gene ( WbaG ) either in planktonic or biofilm stage promoted biofilm formation in the presence of K + , Ca 2+ and Na + .
Whereas, expression of fimbriae genes ( FimH and mrkD ) was co- regulation, and capsule genes ( RmpA and Wcab ) were absent.
Stating, the primary component needed for the Klebsiella biofilm is not the capsule or fimbriae, rather LPS.
Resulting as a potent target in the treatment of Klebsiella biofilm in UTI.
To the best of our knowledge, this is the first kind of study on the effect of cation ions on biofilm and planktonic cells of Klebsiella spp.
and demonstrating the role of LPS biosynthesis gene ( WbaG ) in biofilm development.

Related Results

Phenotypic and Molecular Characterization of the blaTEM Gene in Extended-Spectrum Beta-Lactamase-Producing Klebsiella pneumoniae
Phenotypic and Molecular Characterization of the blaTEM Gene in Extended-Spectrum Beta-Lactamase-Producing Klebsiella pneumoniae
Abstract Introduction There has been a notable rise in antibiotic resistance among enterobacteria. This issue is primarily attributed to the emergence of extended-spectrum beta-lac...
ANTIBACTERIAL ACTIVITY OF RED GINGER (Zingiber officinale var. rubrum) EXTRACTS AS GROWTH INHIBITORS OF Klebsiella pneumoniae
ANTIBACTERIAL ACTIVITY OF RED GINGER (Zingiber officinale var. rubrum) EXTRACTS AS GROWTH INHIBITORS OF Klebsiella pneumoniae
Pneumonia, a significant global health concern, is caused by Klebsiella pneumoniae infection. Antibiotic use is the primary treatment for K. pneumoniae infection; however, inapprop...
Counterclockwise rotation of the flagellum promotes biofilm initiation in Helicobacter pylori
Counterclockwise rotation of the flagellum promotes biofilm initiation in Helicobacter pylori
ABSTRACT Motility promotes biofilm initiation during the early steps of this process: microbial surface association and attachmen...
Optogenetic Modulation of a Productive Biofilm for Improved Biotransformation
Optogenetic Modulation of a Productive Biofilm for Improved Biotransformation
<p>Biofilm as a living catalysts has been exploited for the production of biofuels and bioelectricity in microbial fuel cells (MFCs) as well as in the synthesis of bu...
Evolution of Antimicrobial Resistance in Community vs. Hospital-Acquired Infections
Evolution of Antimicrobial Resistance in Community vs. Hospital-Acquired Infections
Abstract Introduction Hospitals are high-risk environments for infections. Despite the global recognition of these pathogens, few studies compare microorganisms from community-acqu...
Hyaluronidase Involvement in Streptococcus pneumoniae Biofilm Activity
Hyaluronidase Involvement in Streptococcus pneumoniae Biofilm Activity
Streptococcus pneumoniae causes numerous severe infections and results in a significant number of mortality cases due to various virulence factors, including its ability to form a ...
Emerging biofilm formation and disinfectant susceptibility of ESBL-producing Klebsiella pneumoniae
Emerging biofilm formation and disinfectant susceptibility of ESBL-producing Klebsiella pneumoniae
AbstractKlebsiella pneumoniae is an opportunistic pathogen responsible for various infections in humans and animals. It is known for its resistance to multiple antibiotics, particu...

Back to Top