1The process of destroying all microbial life, including endospores, is called:
basics of microbial control
Easy
A.Sanitization
B.Disinfection
C.Sterilization
D.Antisepsis
Correct Answer: Sterilization
Explanation:
Sterilization removes or kills all forms of microbial life, including resistant bacterial endospores.
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2The use of chemical agents on living tissue to reduce microbes is known as:
basics of microbial control
Easy
A.Sterilization
B.Disinfection
C.Pasteurization
D.Antisepsis
Correct Answer: Antisepsis
Explanation:
Antisepsis refers to applying antimicrobial chemicals (antiseptics) to living tissue, such as skin, to reduce microbial numbers.
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3The term used for killing microorganisms is:
basics of microbial control
Easy
A.-cide
B.-stasis
C.-static
D.-sepsis
Correct Answer: -cide
Explanation:
The suffix -cide means to kill (e.g., bactericide), whereas -static means to inhibit growth.
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4A bacteriostatic agent is one that:
basics of microbial control
Easy
A.Kills all bacteria
B.Destroys viruses
C.Kills fungi only
D.Inhibits the growth of bacteria
Correct Answer: Inhibits the growth of bacteria
Explanation:
A bacteriostatic agent inhibits bacterial multiplication without necessarily killing them; growth may resume once it is removed.
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5Which factor generally increases the rate of microbial killing by an agent?
conditions influencing the effectiveness of antimicrobial agents
Easy
A.Higher temperature
B.Presence of biofilms
C.Presence of organic matter
D.Higher microbial load
Correct Answer: Higher temperature
Explanation:
Raising the temperature usually speeds chemical and physical killing of microbes, while organic matter, biofilms, and high loads reduce effectiveness.
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6The presence of organic matter such as blood or feces typically:
conditions influencing the effectiveness of antimicrobial agents
Easy
A.Has no effect on disinfectants
B.Reduces the effectiveness of a disinfectant
C.Increases the effectiveness of a disinfectant
D.Sterilizes the surface faster
Correct Answer: Reduces the effectiveness of a disinfectant
Explanation:
Organic matter can bind or neutralize disinfectants and shield microbes, lowering antimicrobial effectiveness.
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7Which microbial form is generally the most resistant to control methods?
conditions influencing the effectiveness of antimicrobial agents
Easy
A.Gram-positive cells
B.Vegetative bacteria
C.Enveloped viruses
D.Bacterial endospores
Correct Answer: Bacterial endospores
Explanation:
Endospores are highly resistant to heat, chemicals, and radiation, making them the hardest structures to destroy.
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8Longer exposure time of microbes to an antimicrobial agent usually results in:
conditions influencing the effectiveness of antimicrobial agents
Easy
A.Less microbial death
B.Greater microbial death
C.Faster microbial growth
D.No change in death rate
Correct Answer: Greater microbial death
Explanation:
The longer microbes are in contact with an agent, the more cells are killed, since killing occurs progressively over time.
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9An ideal antimicrobial agent should be:
characteristics of ideal antimicrobial agents
Easy
A.Rapidly inactivated
B.Effective only in dry form
C.Non-toxic to host tissues
D.Corrosive to all surfaces
Correct Answer: Non-toxic to host tissues
Explanation:
An ideal agent should destroy microbes while being safe (non-toxic) to human tissues and materials.
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10Which is a desirable property of an ideal disinfectant?
characteristics of ideal antimicrobial agents
Easy
A.Broad spectrum of activity
B.High cost
C.Slow action
D.Strong unpleasant odor
Correct Answer: Broad spectrum of activity
Explanation:
An ideal disinfectant should act against a wide range of microorganisms (broad spectrum) while being inexpensive and fast-acting.
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11The instrument that uses pressurized steam for sterilization is the:
physical and chemical agents for controlling microorganisms
Easy
A.Incubator
B.Autoclave
C.Centrifuge
D.Hot air oven
Correct Answer: Autoclave
Explanation:
An autoclave uses saturated steam under pressure (typically 121°C at 15 psi) to sterilize equipment and media.
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12Standard autoclave conditions for sterilization are approximately:
physical and chemical agents for controlling microorganisms
Easy
A. at 1 psi for 60 minutes
B. at 5 psi for 30 minutes
C. at 15 psi for 15 minutes
D. at 0 psi for 5 minutes
Correct Answer: at 15 psi for 15 minutes
Explanation:
The typical autoclave cycle operates at and 15 psi for about 15 minutes to ensure sterilization.
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13Pasteurization is mainly used to:
physical and chemical agents for controlling microorganisms
Easy
A.Preserve dried foods
B.Remove all spores from water
C.Reduce pathogens in milk and beverages
D.Sterilize surgical instruments
Correct Answer: Reduce pathogens in milk and beverages
Explanation:
Pasteurization uses mild heat to kill pathogens and reduce spoilage organisms in liquids like milk without sterilizing them.
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14Which type of radiation is commonly used to disinfect surfaces and air?
physical and chemical agents for controlling microorganisms
Easy
A.Visible light
B.Ultraviolet (UV) light
C.Radio waves
D.Infrared light
Correct Answer: Ultraviolet (UV) light
Explanation:
UV light damages microbial DNA by forming thymine dimers, and is used to disinfect air, surfaces, and water.
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15Which chemical agent is widely used as a skin antiseptic?
physical and chemical agents for controlling microorganisms
Easy
A.Ethanol (70%)
B.Distilled water
C.Sodium chloride
D.Glucose solution
Correct Answer: Ethanol (70%)
Explanation:
70% ethanol is an effective antiseptic that denatures proteins and dissolves membrane lipids of microbes.
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16Who discovered penicillin in 1928?
antibiotics and therapeutic agents: historical highlights
Easy
A.Robert Koch
B.Louis Pasteur
C.Joseph Lister
D.Alexander Fleming
Correct Answer: Alexander Fleming
Explanation:
Alexander Fleming discovered penicillin from the mold Penicillium notatum in 1928.
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17Penicillin is naturally produced by which type of organism?
antibiotics and therapeutic agents: historical highlights
Easy
A.Alga
B.Virus
C.Protozoan
D.Mold (fungus)
Correct Answer: Mold (fungus)
Explanation:
Penicillin is produced by molds of the genus Penicillium, a type of fungus.
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18The term selective toxicity means an antimicrobial drug:
characteristics of antimicrobial drugs and mechanism
Easy
A.Harms microbes but not the host
B.Has no effect on cells
C.Harms the host but not microbes
D.Kills only viruses
Correct Answer: Harms microbes but not the host
Explanation:
Selective toxicity is the ability of a drug to damage the pathogen while causing little or no harm to host cells.
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19Penicillin kills bacteria mainly by inhibiting the synthesis of the:
characteristics of antimicrobial drugs and mechanism
Easy
A.Cell wall
B.Ribosome
C.Nucleus
D.Plasma membrane
Correct Answer: Cell wall
Explanation:
Penicillin inhibits peptidoglycan cross-linking, weakening the bacterial cell wall and causing lysis.
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20A major cause of the rise in antibiotic resistance is:
antibiotics and therapeutic agents: development of resistance
Easy
A.Overuse and misuse of antibiotics
B.Avoiding antibiotics entirely
C.Using antibiotics only when prescribed
D.Completing the full course of treatment
Correct Answer: Overuse and misuse of antibiotics
Explanation:
Excessive and inappropriate use of antibiotics selects for resistant bacteria, accelerating the spread of resistance.
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21A hospital wants to completely eliminate all forms of microbial life, including bacterial endospores, from surgical instruments. Which term best describes this process?
basics of microbial control
Medium
A.Sterilization
B.Sanitization
C.Disinfection
D.Antisepsis
Correct Answer: Sterilization
Explanation:
Sterilization is the complete destruction or removal of all microbial life, including resistant endospores. Disinfection and antisepsis reduce microbial load but do not necessarily kill spores.
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22A chemical applied to living tissue to reduce the number of microorganisms is best classified as which of the following?
basics of microbial control
Medium
A.Sanitizer
B.Sterilant
C.Antiseptic
D.Disinfectant
Correct Answer: Antiseptic
Explanation:
An antiseptic is used on living tissue, whereas a disinfectant is applied to inanimate surfaces. Both aim to reduce microbial numbers, but the target distinguishes them.
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23If a disinfectant reduces a bacterial population by 90% every 5 minutes, what fraction of the original population remains after 15 minutes, assuming logarithmic death?
basics of microbial control
Medium
A.
B.
C.
D.
Correct Answer:
Explanation:
A 90% reduction leaves 10% () each interval. Over three 5-minute intervals: . Microbial death follows a logarithmic pattern.
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24Why does the presence of organic matter such as blood or feces reduce the effectiveness of many chemical disinfectants?
conditions influencing the effectiveness of antimicrobial agents
Medium
A.It raises the temperature and denatures the disinfectant
B.It binds to and inactivates the disinfectant, shielding microbes
C.It causes microbes to form endospores instantly
D.It lowers the pH below the disinfectant's active range
Correct Answer: It binds to and inactivates the disinfectant, shielding microbes
Explanation:
Organic material reacts with and neutralizes disinfectants, and it can physically coat microbes, protecting them. This is why surfaces are cleaned before disinfection.
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25A technician increases the temperature while using a chemical disinfectant. What is the most likely effect on antimicrobial activity?
conditions influencing the effectiveness of antimicrobial agents
Medium
A.Activity always decreases due to enzyme denaturation
B.Activity remains completely unchanged
C.Activity generally increases as reaction rates rise
D.Activity stops entirely above 30°C
Correct Answer: Activity generally increases as reaction rates rise
Explanation:
Higher temperatures typically speed up the chemical reactions involved in microbial killing, increasing a disinfectant's effectiveness within its stable range.
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26Which factor explains why a longer exposure time is often required to achieve sterilization when the initial microbial load is very high?
conditions influencing the effectiveness of antimicrobial agents
Medium
A.Crowded cells become physically impenetrable
B.More cells must be killed, and death occurs at a constant proportional rate
C.High loads chemically neutralize the agent instantly
D.Large populations lower the surrounding pH
Correct Answer: More cells must be killed, and death occurs at a constant proportional rate
Explanation:
Because microbial death is logarithmic (a constant fraction dies per unit time), a larger starting population requires more time to reduce survivors to zero.
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27Which property is LEAST desirable in an ideal chemical disinfectant intended for household use?
characteristics of ideal antimicrobial agents
Medium
A.Stability during storage
B.Solubility in water
C.Broad-spectrum activity
D.High toxicity to humans and animals
Correct Answer: High toxicity to humans and animals
Explanation:
An ideal disinfectant should be toxic to microbes but safe for humans and animals. Broad-spectrum activity, stability, and water solubility are all desirable traits.
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28An ideal antimicrobial chemotherapeutic drug should exhibit selective toxicity. What does this mean in practice?
characteristics of ideal antimicrobial agents
Medium
A.It harms the pathogen while sparing host cells
B.It targets only Gram-positive bacteria
C.It kills every microorganism it contacts
D.It acts only at very high concentrations
Correct Answer: It harms the pathogen while sparing host cells
Explanation:
Selective toxicity means the drug damages microbial targets (e.g., cell walls, unique enzymes) without harming the human host, which is central to safe chemotherapy.
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29Why is chemical stability considered an important characteristic of an ideal antimicrobial agent?
characteristics of ideal antimicrobial agents
Medium
A.It allows the agent to work only once
B.It ensures the agent remains active over time and storage
C.It reduces the agent's spectrum of activity
D.It makes the agent more toxic to the host
Correct Answer: It ensures the agent remains active over time and storage
Explanation:
A stable agent retains its potency during storage and use, providing reliable and consistent antimicrobial action rather than degrading before application.
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30An autoclave sterilizes at 121°C under 15 psi pressure. Why is pressurized steam more effective than boiling water at 100°C?
physical and chemical agents for controlling microorganisms
Medium
A.Steam contains disinfectant chemicals
B.Pressure removes all oxygen, suffocating microbes
Elevated pressure raises the boiling point, allowing steam to reach 121°C. This higher temperature denatures proteins and destroys heat-resistant endospores that survive 100°C boiling.
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31Ultraviolet (UV) light is used to control microbes on exposed surfaces. What is its primary limitation?
physical and chemical agents for controlling microorganisms
Medium
A.It requires high temperatures to function
B.It sterilizes only liquids, never surfaces
C.It has poor penetrating power and cannot reach shielded microbes
D.It only works on viruses, not bacteria
Correct Answer: It has poor penetrating power and cannot reach shielded microbes
Explanation:
UV light damages microbial DNA by forming thymine dimers, but it penetrates poorly and cannot reach microbes hidden under dust, in crevices, or in solid materials.
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32Filtration is chosen to sterilize a heat-sensitive antibiotic solution. What is the main mechanism by which it controls microorganisms?
physical and chemical agents for controlling microorganisms
Medium
A.Chemically lysing microbial membranes
B.Physically removing microbes as fluid passes through fine pores
C.Irradiating microbes trapped in the filter
D.Heating microbes as they pass through the filter
Correct Answer: Physically removing microbes as fluid passes through fine pores
Explanation:
Membrane filters with pores small enough (e.g., 0.22 µm) physically trap and remove microbes without heat, making filtration ideal for heat-labile solutions.
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33Which chemical agent controls microbes primarily by denaturing proteins and disrupting membranes, and is most effective at a 60–70% concentration in water?
physical and chemical agents for controlling microorganisms
Medium
A.Distilled water
B.Glycerol
C.Ethyl alcohol
D.Absolute (100%) alcohol
Correct Answer: Ethyl alcohol
Explanation:
Alcohols like ethanol denature proteins and dissolve lipids, but they need water to be effective. Around 60–70% works best; pure alcohol evaporates too quickly and coagulates surface proteins.
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34Alexander Fleming's 1928 observation that led to penicillin involved which key finding?
antibiotics and therapeutic agents: historical highlights
Medium
A.A dye selectively stained bacterial cell walls
B.A virus lysed a lawn of bacteria
C.A Penicillium mold inhibited bacterial growth on a plate
D.A bacterium produced a heat-stable toxin
Correct Answer: A Penicillium mold inhibited bacterial growth on a plate
Explanation:
Fleming noticed that a contaminating Penicillium notatum mold created a zone of inhibition around it on a Staphylococcus plate, leading to the discovery of penicillin.
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35Paul Ehrlich's concept of a "magic bullet" and his development of Salvarsan (arsphenamine) is historically significant because it was?
antibiotics and therapeutic agents: historical highlights
Medium
A.The first natural antibiotic from a mold
B.A vaccine against bacterial infection
C.An early synthetic chemotherapeutic agent targeting syphilis
D.A broad-spectrum antiviral compound
Correct Answer: An early synthetic chemotherapeutic agent targeting syphilis
Explanation:
Ehrlich's Salvarsan was one of the first synthetic chemotherapeutic drugs, designed to selectively target Treponema pallidum, the cause of syphilis, embodying his "magic bullet" idea.
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36The sulfa drugs (sulfonamides) introduced in the 1930s were important because they were?
antibiotics and therapeutic agents: historical highlights
Medium
A.Effective only against viral diseases
B.Naturally produced by Streptomyces species
C.The first antibiotics extracted from soil fungi
D.Among the first synthetic drugs to treat systemic bacterial infections
Correct Answer: Among the first synthetic drugs to treat systemic bacterial infections
Explanation:
Sulfonamides, derived from the dye Prontosil, were early synthetic antibacterials that treated systemic infections, marking a milestone before mass-produced penicillin.
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37Penicillin selectively harms bacteria with little toxicity to human cells because it targets?
characteristics of antimicrobial drugs and mechanism
Medium
A.Peptidoglycan synthesis in the bacterial cell wall
B.The host's mitochondrial DNA
C.The 80S ribosomes of the pathogen
D.Cholesterol in bacterial membranes
Correct Answer: Peptidoglycan synthesis in the bacterial cell wall
Explanation:
Penicillin inhibits enzymes that cross-link peptidoglycan. Since human cells lack peptidoglycan cell walls, the drug is selectively toxic to bacteria.
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38An antibiotic binds the bacterial 30S ribosomal subunit and blocks protein synthesis. Which mechanism of action does this represent?
characteristics of antimicrobial drugs and mechanism
Medium
A.Disruption of the plasma membrane
B.Inhibition of nucleic acid synthesis
C.Inhibition of cell wall synthesis
D.Inhibition of protein synthesis
Correct Answer: Inhibition of protein synthesis
Explanation:
Drugs such as aminoglycosides and tetracyclines bind the 30S subunit of the bacterial 70S ribosome, blocking translation. Human 80S ribosomes are structurally different, providing selectivity.
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39A drug is described as "bacteriostatic." What does this indicate about its action?
characteristics of antimicrobial drugs and mechanism
Medium
A.It lyses cells rapidly upon contact
B.It permanently sterilizes body tissues
C.It inhibits microbial growth without directly killing cells
D.It kills only actively dividing spores
Correct Answer: It inhibits microbial growth without directly killing cells
Explanation:
Bacteriostatic drugs stop microbial reproduction, allowing the host immune system to clear the infection. Bactericidal drugs, in contrast, actively kill the microbes.
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40A bacterial strain acquires resistance to penicillin by producing an enzyme that cleaves the drug's β-lactam ring. This enzyme is known as?
antibiotics and therapeutic agents: development of resistance
Medium
A.Peptidase
B.DNA gyrase
C.Reverse transcriptase
D.β-lactamase (penicillinase)
Correct Answer: β-lactamase (penicillinase)
Explanation:
β-lactamases (including penicillinases) hydrolyze the β-lactam ring of penicillins, inactivating the drug. This enzymatic destruction is a major resistance mechanism.
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41A suspension contains CFU/mL of a bacterial species with a decimal reduction time (-value) of minutes at a given temperature. Assuming first-order (logarithmic) death kinetics, how long must the treatment continue to reach a theoretical survivor level of CFU/mL?
basics of microbial control
Hard
A. minutes
B. minutes
C. minutes
D. minutes
Correct Answer: minutes
Explanation:
Going from to is a reduction of log cycles. Time minutes.
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42Two sterilization processes both achieve a -log reduction of Clostridium botulinum spores, but Process A uses higher temperature for shorter time and Process B uses lower temperature for longer time. If both yield the same value, which conclusion is most accurate?
basics of microbial control
Hard
A.Both are equally damaging to product quality since is identical
B.Both deliver equivalent lethality, but Process A better preserves heat-sensitive product quality
C.Process A is less reliable because spores need prolonged heat to die
D.Process B is more lethal because longer exposure guarantees more killing
Correct Answer: Both deliver equivalent lethality, but Process A better preserves heat-sensitive product quality
Explanation:
Equal means equal microbial lethality. Because chemical degradation of product has a lower -value than spore inactivation, the high-temperature-short-time process (A) causes less quality loss for the same lethality.
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43A hospital finds that a phenolic disinfectant that worked in the lab fails on ward floors soiled with blood and pus. Which factor most directly explains this reduced efficacy?
conditions influencing the effectiveness of antimicrobial agents
Hard
A.Presence of organic matter that binds or inactivates the agent
B.The floor material raising the pH beyond the active range
C.The floor lowering the agent's temperature coefficient
D.An increase in the agent's minimum inhibitory concentration intrinsically
Correct Answer: Presence of organic matter that binds or inactivates the agent
Explanation:
Organic material such as blood, pus, and feces neutralizes or physically shields microbes from many disinfectants, greatly reducing effectiveness even at concentrations that work on clean surfaces.
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44For most chemical disinfectants, increasing temperature by can roughly double the killing rate. If a disinfectant kills a population in minutes at and has a temperature coefficient () of , what is the approximate kill time at ?
conditions influencing the effectiveness of antimicrobial agents
Hard
A. minutes
B. minutes
C. minutes
D. minutes
Correct Answer: minutes
Explanation:
A rise of equals two increments, each doubling the rate ( times faster). Time minutes.
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45When evaluating whether a new surface disinfectant approaches the 'ideal' profile, which trade-off represents the most fundamental inherent conflict among desired properties?
characteristics of ideal antimicrobial agents
Hard
A.Low cost versus non-corrosiveness to metals
B.High broad-spectrum microbicidal potency versus low toxicity to human tissue
C.Rapid action versus water solubility
D.Chemical stability versus pleasant odor
Correct Answer: High broad-spectrum microbicidal potency versus low toxicity to human tissue
Explanation:
Agents potent enough to destroy diverse microbes often damage host tissue too, since many target structures are shared. Balancing strong antimicrobial activity against host safety is the central inherent tension in designing an ideal agent.
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46A disinfectant has excellent broad-spectrum activity but leaves a toxic residue and rapidly loses potency once diluted. According to the criteria for an ideal antimicrobial agent, which set of properties is deficient?
characteristics of ideal antimicrobial agents
Hard
A.Spectrum of activity and speed of action
B.Non-staining property and cost-effectiveness
C.Stability and low toxicity/residue
D.Solubility and penetrating power
Correct Answer: Stability and low toxicity/residue
Explanation:
An ideal agent should be stable (retaining activity over time/dilution) and leave no harmful residue. Rapid loss of potency reflects poor stability, while a toxic residue violates the low-toxicity criterion.
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47Why does moist heat (autoclaving at ) kill microbes far more efficiently than dry heat at the same temperature?
physical and chemical agents for controlling microorganisms
Hard
B.Water conducts heat efficiently and promotes rapid protein coagulation/denaturation
C.Dry heat only affects Gram-positive organisms
D.Steam lowers the microbial minimum inhibitory concentration
Correct Answer: Water conducts heat efficiently and promotes rapid protein coagulation/denaturation
Explanation:
Moist heat penetrates and transfers energy more effectively, and the water facilitates rapid denaturation and coagulation of proteins. Dry heat kills mainly by oxidation, requiring higher temperatures and longer times.
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48A researcher must sterilize a heat-labile enzyme solution and a batch of glass pipettes. Which pairing of methods is most appropriate?
physical and chemical agents for controlling microorganisms
Hard
A.Autoclaving for both the enzyme solution and pipettes
B.Pasteurization for the enzyme solution; ethylene oxide for the pipettes
C.Membrane filtration for the enzyme solution; dry-heat oven for the pipettes
D.UV irradiation for the enzyme solution; membrane filtration for the pipettes
Correct Answer: Membrane filtration for the enzyme solution; dry-heat oven for the pipettes
Explanation:
Heat-labile liquids are sterilized by membrane filtration () to avoid denaturing the enzyme, while dry glassware is efficiently sterilized by a dry-heat oven. Autoclaving would destroy the enzyme; pasteurization does not sterilize.
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49Ultraviolet radiation at is strongly germicidal. What limits its use as a general sterilizing agent despite this?
physical and chemical agents for controlling microorganisms
Hard
A.It requires temperatures above to be effective
B.It works only on viruses and not on bacteria
C.Poor penetrating power, so it disinfects only exposed surfaces and thin fluid films
D.It kills only endospores but not vegetative cells
Correct Answer: Poor penetrating power, so it disinfects only exposed surfaces and thin fluid films
Explanation:
UV is absorbed by DNA (peak ), forming thymine dimers, but it penetrates poorly and is blocked by glass, dust, and opaque material, so it only affects directly exposed surfaces and air.
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50Ethylene oxide gas is used to sterilize heat- and moisture-sensitive medical devices. Which combination best explains both its utility and its major operational hazard?
physical and chemical agents for controlling microorganisms
Hard
A.It oxidizes lipids only, and is corrosive to plastics
B.It alkylates proteins/nucleic acids and penetrates packaging, but is toxic, mutagenic, and explosive
C.It disrupts membranes selectively, but leaves no residue requiring aeration
D.It crosslinks water molecules, but is inactivated by humidity
Correct Answer: It alkylates proteins/nucleic acids and penetrates packaging, but is toxic, mutagenic, and explosive
Explanation:
Ethylene oxide sterilizes by alkylating nucleic acids and proteins and penetrates plastic wrapping, making it ideal for delicate devices. However, it is toxic, mutagenic, potentially explosive, and requires lengthy post-sterilization aeration to remove residues.
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51Paul Ehrlich's development of Salvarsan (arsphenamine) is historically significant primarily because it demonstrated which concept?
antibiotics and therapeutic agents: historical highlights
Hard
A.That antibiotics could be mass-produced by fermentation
B.That sulfonamides inhibit folic acid synthesis
C.That fungi naturally produce antibacterial compounds
D.Selective toxicity — a 'magic bullet' harming the pathogen more than the host
Correct Answer: Selective toxicity — a 'magic bullet' harming the pathogen more than the host
Explanation:
Ehrlich's Salvarsan (for syphilis) embodied his 'magic bullet' idea: a chemical selectively toxic to the pathogen while sparing the host, establishing the foundation of modern chemotherapy and selective toxicity.
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52Fleming observed penicillin in 1928, yet penicillin did not become a usable drug until the 1940s. Which pair of scientists is credited with the purification and demonstration of its therapeutic value that enabled clinical use?
antibiotics and therapeutic agents: historical highlights
Hard
A.Howard Florey and Ernst Chain
B.Selman Waksman and Albert Schatz
C.Gerhard Domagk and Paul Ehrlich
D.Robert Koch and Louis Pasteur
Correct Answer: Howard Florey and Ernst Chain
Explanation:
Florey and Chain purified penicillin and demonstrated its efficacy in vivo in the early 1940s, enabling mass production. Waksman/Schatz discovered streptomycin; Domagk discovered sulfonamides (Prontosil).
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53The discovery of streptomycin by Waksman and Schatz was historically distinct from penicillin because it primarily addressed which unmet need?
antibiotics and therapeutic agents: historical highlights
Hard
A.Treatment of tuberculosis and many Gram-negative infections
B.The first synthetic antimalarial drug
C.The first oral antifungal therapy
D.A cure for viral pneumonia
Correct Answer: Treatment of tuberculosis and many Gram-negative infections
Explanation:
Streptomycin, from Streptomyces griseus, was the first effective drug against Mycobacterium tuberculosis and was active against many Gram-negative bacteria that penicillin could not reach.
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54Penicillin and vancomycin both target the bacterial cell wall but by different mechanisms. Which statement correctly distinguishes them?
characteristics of antimicrobial drugs and mechanism
Hard
A.Both block peptidoglycan by inhibiting bactoprenol recycling
B.Both inhibit transpeptidase directly by binding its active site
D.Penicillin inhibits transpeptidase enzymes, while vancomycin binds the D-Ala-D-Ala peptide terminus of precursors
Correct Answer: Penicillin inhibits transpeptidase enzymes, while vancomycin binds the D-Ala-D-Ala peptide terminus of precursors
Explanation:
Penicillin (a -lactam) inactivates penicillin-binding proteins (transpeptidases). Vancomycin acts upstream by binding the terminal D-Ala-D-Ala of peptidoglycan precursors, sterically blocking crosslinking.
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55A drug selectively inhibits the bacterial ribosome without affecting the host ribosome. This is the clearest example of which principle underlying antimicrobial drug design?
characteristics of antimicrobial drugs and mechanism
Hard
A.Broad-spectrum activity independent of cell type
B.Bacteriostatic action through membrane disruption
C.Selective toxicity by targeting structures unique to the pathogen
D.Competitive inhibition of folic acid synthesis
Correct Answer: Selective toxicity by targeting structures unique to the pathogen
Explanation:
The bacterial ribosome differs structurally from the eukaryotic ribosome. Targeting this difference achieves selective toxicity—killing/inhibiting bacteria while sparing host cells.
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56Sulfonamides are effective against many bacteria but not against humans consuming the same nutrient sources. What is the mechanistic basis for this selectivity?
characteristics of antimicrobial drugs and mechanism
Hard
A.Sulfonamides chelate magnesium only in prokaryotes
B.Sulfonamides bind only the bacterial ribosome
C.Bacteria must synthesize folate de novo (blocked by sulfonamides); humans obtain folate from the diet
D.Humans lack the cell wall that sulfonamides degrade
Correct Answer: Bacteria must synthesize folate de novo (blocked by sulfonamides); humans obtain folate from the diet
Explanation:
Sulfonamides are structural analogs of PABA and competitively inhibit dihydropteroate synthase in folate synthesis. Bacteria must make folate themselves, while humans absorb dietary folate, so the drug harms only the bacteria.
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57For an antibiotic, the therapeutic index is defined as the ratio of the toxic dose to the therapeutic (effective) dose. If Drug X has and , while Drug Y has and , which drug is safer and what is its index?
characteristics of antimicrobial drugs and mechanism
Hard
A.Drug Y, index
B.Drug X, index
C.Drug X, index
D.Drug Y, index
Correct Answer: Drug X, index
Explanation:
Therapeutic index . Drug X ; Drug Y . A higher index means a wider safety margin, so Drug X is safer.
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58A strain of Staphylococcus aureus becomes resistant to methicillin. Which mechanism best explains MRSA resistance to -lactams generally?
antibiotics and therapeutic agents: development of resistance
Hard
A.Loss of porins preventing drug entry into the cytoplasm
B.Acquisition of an altered penicillin-binding protein (PBP2a) with low affinity for -lactams
C.Active efflux pumping methicillin out before it reaches the ribosome
D.Increased production of -lactamase that hydrolyzes methicillin's stable ring
Correct Answer: Acquisition of an altered penicillin-binding protein (PBP2a) with low affinity for -lactams
Explanation:
MRSA carries the mecA gene encoding PBP2a, an alternative transpeptidase with very low affinity for -lactams, so cell wall synthesis continues even in the drug's presence. Methicillin is designed to resist -lactamase, so hydrolysis is not the main route.
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59Why does using a single antibiotic to treat active tuberculosis frequently lead to treatment failure, whereas multidrug regimens succeed?
antibiotics and therapeutic agents: development of resistance
Hard
A.One drug induces the transfer of resistance plasmids between cells
B.Single drugs cannot penetrate the mycobacterial cell wall at all
C.Spontaneous resistance mutations to any one drug are common, but simultaneous resistance to several drugs is statistically rare
D.Combining drugs raises the temperature coefficient of killing
Correct Answer: Spontaneous resistance mutations to any one drug are common, but simultaneous resistance to several drugs is statistically rare
Explanation:
Because M. tuberculosis populations contain rare pre-existing mutants resistant to any single drug, monotherapy selects them out. The probability of a cell carrying independent resistance mutations to multiple drugs at once is the product of small probabilities—vanishingly small—so combination therapy prevents emergence.
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60R-plasmids can spread multidrug resistance rapidly through a bacterial population. Which feature of this mechanism makes it especially dangerous compared to chromosomal mutation?
antibiotics and therapeutic agents: development of resistance
Hard
A.It permanently increases the mutation rate of the recipient's chromosome
B.Horizontal transfer allows resistance genes to move between cells and even across species
C.It converts bacteriostatic drugs into bactericidal ones
D.It only transfers resistance to non-pathogenic environmental bacteria
Correct Answer: Horizontal transfer allows resistance genes to move between cells and even across species
Explanation:
R-plasmids carry multiple resistance genes and spread by conjugation, moving horizontally between unrelated cells and across species. This rapid, cross-species dissemination is far more dangerous than the slow, vertical inheritance of chromosomal mutations.
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