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IIT, AIIMS discover factors behind dangerous bacteria causing infections in hospitals. See details

The study, being performed in collaboration with Vellore Institute of Technology, uses genomics and molecular biology approaches to identify new genes responsible for the bacteria's potency.

The study, being performed in collaboration with Vellore Institute of Technology, uses genomics and molecular biology approaches to identify new genes responsible for the bacteria's potency. The research by the IIT and AIIMS Jodhpur has been published in the journal "Microbiology Spectrum," according to news agency PTI report.

It is important to note that Klebsiella pneumoniae is one of the pathogens on the World Health Organization’s priority list and is a significant cause of hospital-acquired diseases such as pneumonia, bloodstream infections, and infections among ICU patients and newborns.

According to officials, because of its high virulence and antibiotic resistance, the management and treatment of Klebsiella pneumoniae have challenged the medical and scientific community worldwide.

"One of the ways in which Klebsiella pneumoniae escapes the body's immune system, and antibiotics is by producing an extremely sticky and viscous protective covering (hypermucoviscosity) around itself," said Shankar Manoharan, Assistant Professor, Department of Bioscience and Bioengineering, IIT Jodhpur.

Hypermucoviscosity can be identified by the string test, in which a bacterial colony growing in laboratory media is touched using an applicator, which is then slowly lifted off the colony. If a sticky string of 5 mm or more extends from the colony to the applicator, the bacteria is hypermucoviscous and highly virulent, the report said.

"We are currently studying these mutants and disrupted genes to explain the potentially new mechanisms behind this unusual sticky and viscous covering of Klebsiella pneumoniae P-34. Such understanding will enable the development of methodologies to effectively control the spread of such strains and treat infections caused by them," Manoharan said. 

Meanwhile, in another development, with antibiotic-resistant bacteria on the rise, scientists have been searching for ways to shut down the Type IV secretion system (T4SS), a protein complex on the outer envelope of bacterial cells that helps them to exchange DNA with neighbouring bacteria and resist antibiotics, according to ANI report.

(With inputs from ANI, PTI)

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