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Openstax Microbiology - Chapter 14 Antimicrobial Drugs Latest Update 2025 Questions Answered Correctly

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Openstax Microbiology - Chapter 14 Antimicrobial Drugs Latest Update 2025 Questions Answered Correctly chemotherapy - Answers the use of drugs to treat a disease anitmicrobial drugs - Answers interfere with growth of microbes within a host antibiotic - Answers a substance produced by a microbe that, in small amounts, inhibits another microbe selective toxicity - Answers killing harmful microbes without damaging the host actinomycetes - Answers source of more than half of all natural antibiotics all of your streptomycetes spectrum of antimicrobial activity - Answers easier to fins or develop drugs against prokaryotic cells with cell walls harder when pathogen is a eukaryotic cell viral infections hardest to treat bactericidal - Answers kill microbes bacteriostatic - Answers inhibit microbe narrow spectrum - Answers specific bacteria broad spectrum - Answers acts against both gram positive and negative while waiting for polymicrobic infections and prophylactic prevention when narrow spectrum has failed broad spectrum risks - Answers superinfection superinfection - Answers opportunistic pathogen following treatment with broad spectrum dosage - Answers amount medicine given during certain time interval optimum dosage will minimize risk of side effects dosage factors - Answers weight liver and kidney history halflife dose dependence(higher dose) time dependence(longer time) route of administration - Answers method used to introduce a drug into the body orally(GI tract and blood stream) tropical(skin) parenteral route (injection) intravenous drug - Answers concentration peaks quickly and gradually decreases oral or intramuscular drug - Answers takes longer to reach peak synergism - Answers when two together is greater than either alone, one alone is bacteriostatic, together they are bactericidal antagonism - Answers two drugs together is less than either alone, they cancel each other out penicillin - Answers Bacteria Cell wall target binds to the transpeptidase enzyme and prevents it from cross-linking the amino acid side chains in the cell wall 50 chemically related antibiotics B-lactams with common core structure yet different chemical side chains natural pencillins - Answers extracted from cultures of the penicillium (G and V) semisynthetic penicillins - Answers Part of the penicillin is produced naturally by the mold and part is added synthetically ampicillin and amoxicillin B-lactams - Answers Bacteria cell wall target cephalosporins monobactam carbapenems cephalosporins - Answers increased resistance to enzymatic inactivation by B-lactamases 1st (narrow against gram positive) 2nd (extended spectrum includes gram negative)

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Openstax Microbiology - Chapter 14 Antimicrobial Drugs Latest Update 2025 Questions Answered
Correctly

chemotherapy - Answers the use of drugs to treat a disease

anitmicrobial drugs - Answers interfere with growth of microbes within a host

antibiotic - Answers a substance produced by a microbe that, in small amounts, inhibits another microbe

selective toxicity - Answers killing harmful microbes without damaging the host

actinomycetes - Answers source of more than half of all natural antibiotics

all of your streptomycetes

spectrum of antimicrobial activity - Answers easier to fins or develop drugs against prokaryotic cells with
cell walls

harder when pathogen is a eukaryotic cell

viral infections hardest to treat

bactericidal - Answers kill microbes

bacteriostatic - Answers inhibit microbe

narrow spectrum - Answers specific bacteria

broad spectrum - Answers acts against both gram positive and negative

while waiting

for polymicrobic infections and prophylactic prevention

when narrow spectrum has failed

broad spectrum risks - Answers superinfection

superinfection - Answers opportunistic pathogen following treatment with broad spectrum

dosage - Answers amount medicine given during certain time interval

optimum dosage will minimize risk of side effects

dosage factors - Answers weight

liver and kidney history

halflife

, dose dependence(higher dose)

time dependence(longer time)

route of administration - Answers method used to introduce a drug into the body

orally(GI tract and blood stream)

tropical(skin)

parenteral route (injection)

intravenous drug - Answers concentration peaks quickly and gradually decreases

oral or intramuscular drug - Answers takes longer to reach peak

synergism - Answers when two together is greater than either alone, one alone is bacteriostatic,
together they are bactericidal

antagonism - Answers two drugs together is less than either alone, they cancel each other out

penicillin - Answers Bacteria Cell wall target

binds to the transpeptidase enzyme and prevents it from cross-linking the amino acid side chains in the
cell wall

50 chemically related antibiotics

B-lactams with common core structure yet different chemical side chains

natural pencillins - Answers extracted from cultures of the penicillium (G and V)

semisynthetic penicillins - Answers Part of the penicillin is produced naturally by the mold and part is
added synthetically

ampicillin and amoxicillin

B-lactams - Answers Bacteria cell wall target

cephalosporins

monobactam

carbapenems

cephalosporins - Answers increased resistance to enzymatic inactivation by B-lactamases

1st (narrow against gram positive)

2nd (extended spectrum includes gram negative)

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