"Since the intervention is designed to reduce the number of days that a resident receives antibiotics for bacterial pneumonia, the rate of antibiotic days of therapy per 1,000 resident days is most likely to change if the intervention is effective. Because this effort is not trying to reduce antibiotic starts for bacterial pneumonia, neither the rate of antibiotic starts nor the proportion of antibiotics given for pneumonia may change as a result of the intervention. Although the rate of antibiotic use by class might change if one antibiotic class is most commonly used to treat bacterial pneumonia, this measure wouldn't be the best choice for evaluating the new guideline."
There are fewer antifungal, anti protozoan, and antihelminthic drugs compared to antibacterial drugs because these cells can be similar to human cells and therefore they can not achieve selective toxicity.
<h3>What is drug selective toxicity?</h3>
The expression 'drug selective toxicity' makes reference to the ability of a specific medication to discriminate between cells of different organisms (in this case human cells and other types of eukaryotic cells).
Drug selective toxicity is a fundamental issue during drug discovery and drug development.
In conclusion, there are fewer antifungal, anti protozoan, and antihelminthic drugs compared to antibacterial drugs because these cells can be similar to human cells and therefore they can not achieve selective toxicity.
Learn more about drug selectivity here:
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Answer:
D. They are airborne
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