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Tuesday, April 24, 2018

Prolonged exposure of low dose of antibiotics going to lead to resistance in pathogenic bacteria

It is said that their are millions of pathogenic bacteria in our environment however we managed to find out & identify just few of them. We Utilize antibiotics to treat that & kill microbes however what happens while we continuously expose pathogenic bacteria to antibiotics. Then that pathogenic bacteria going to reproduce & further progenies of the pathogenic bacteria going to too be resistant to the antibiotic. In the experiment that is done on pathogenic bacteria to see what influences are there on low standard exposure & high standard exposure gave results as follows |The pathogenic bacteria by prolonged low exposure of antibiotic developed resistance that was about 1000 times further than initial 1. According to WHO, the antibiotic resistance is 1 of the great menaces in coming time Extremely we necessity to rectify this crisis as recently as possible


Oxford scholars repeal "geneticalcatalyst" which helps pathogenic bacteria evolve drug resistance

As pathogenic bacteria increasingly evolve resistance to antibiotics, we can be cast back into "the dark ages of medicine" in the following few decades. To do Extremely , they studied the method different pathogenic bacteria evolve resistance at different averages, & Determine out to find the specific genes responsible. Put simply, species which tote the ampR gene evolve resistance at a higher average than species which lack this gene. ampR has this influence because it makes it easier for random mutations to promote the expression of antibiotic resistance genes." This pathogenic bacteria totes the ampR gene & has been shown to evolve resistance to ceftazidime quite quickly, however adding avibactam managed to wipe out the bugs "spectacularly well" before they can evolve resistance.

Oxford scientists cancel

investigators disclose geneticalcatalysts which accelerate evolution of antibiotic resistance in pathogenic bacteria

as mentioned in investigators at Oxford University have shown which it is possible to identify geneticalcatalysts which accelerate the evolution of antibiotic resistance in pathogenic bacteria - & which this knowledge can be used to design treatments to stifle the Growth of resistance. They found which individual species of Pseudomonas evolved antibiotic resistance at radically different averages. Put simply, species which tote the ampR gene evolve resistance at a higher average than species which lack this gene. ampR has this influence because it makes it easier for random mutations to promote the expression of antibiotic resistance genes.' 'Antibiotic resistance is a growing crisis which threatens to fundamentally undermine our health & welfare.




collected by :Lucy William

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