Active immunity - Answers when body produces its own immune response and memory cells (long
lasting, slower)
Passive immunity - Answers when antibodies are received from another source (short term, fast, no
memory)
Variolation - Answers early method of immunization using live smallpox virus from infected
individuals to induce a mild infection and immunity
How does variolation differ from smallpox vaccination? - Answers variolation uses the actual
smallpox virus and is risky, while vaccination uses a safer related virus (cowpox) to provide immunity
without causing severe disease
Who discovered the smallpox vaccine? - Answers Edward Jenner
Attenuated vaccine - Answers vaccine composed of a weakened form of the pathogen that is unable
to cause disease
Example of a combination attenuated vaccine - Answers MMR vaccine (measles, mumps, rubella)
rVSV-ZEBOV Ebola vaccine - Answers recombinant vaccine that uses vesicular stomatitis virus
engineered to express an Ebola virus protein, triggering an immune response without causing Ebola
Toxoid vaccine - Answers vaccine made from an inactivated toxin that stimulates immunity against
the toxin rather than the pathogen itself
Example of toxoid vaccine - Answers tetanus
Inactivated polio vaccine (IPO) - Answers injected, contains killed virus, and is very safe but provides
less gut immunity
Oral polio vaccine (OPV) - Answers taken orally, contains live attenuated virus, and provides strong
intestinal immunity
When wild poliovirus is circulating, which vaccine is preferred? - Answers OPV, because it provides
strong intestinal immunity and helps stop transmission
What is a risk of the oral polio vaccine (OPV)? - Answers it can rarely mutate back to a virulent form
and cause vaccine-derived polio
Why can't immunocompromised individuals receive attenuated vaccines? - Answers their immune
systems may not control even the weakened pathogen, leading to disease
Can pregnant women receive attenuated vaccines? - Answers no, because of potential risk to the
fetus
Why are boosters necessary for subunit vaccines? - Answers subunit vaccines produce a weaker
immune response, so boosters are needed to maintain immunity and memory
Why are adjuvants sometimes necessary in vaccines? - Answers they enhance the immune response,
making the vaccine more effective
Why does the conjugate Hib vaccine work better than a polysaccharide-only vaccine? - Answers
conjugation to a protein allows T-cell involvement, leading to stronger and longer-lasting immunity,
especially in children
How does an RNA vaccine work? - Answers it delivers mRNA into cells, which then produce a viral
protein that triggers an immune response and memory formation
What are advantages of RNA vaccines? - Answers rapid development, no live virus needed, strong
immune response, and safe for immunocompromised individuals
What types of COVID-19 vaccines have been developed? - Answers mRNA vaccines, viral vector
(adenovirus-based) vaccines, protein subunit vaccines, and inactivated virus vaccines
How do clinical trial phases differ? - Answers phase 1 tests safety (small group), phase 2 tests
effectiveness and dosing (hundreds), phase 3 tests large-scale efficacy and safety (thousands)
Why are preclinical trials necessary? - Answers to test safety and immune response in cells and
animals before human trials
How do RNA COVID-19 vaccines stimulate immunity? - Answers mRNA enters cells, cells produce viral
proteins, immune system responds, and memory cells form
How do adenovirus-based COVID-19 vaccines stimulate immunity? - Answers a modified virus
delivers DNA for a viral protein into cells, which produce the protein and trigger an immune response
with memory
How are antibiotics administered to livestock like chickens and turkeys? - Answers they are
commonly given through feed or drinking water, and less commonly by injection
, How can antibiotics given to people, pets, or livestock circulate in the environment? - Answers
through waste (urine/feces), runoff into water systems, contamination of soil, improper disposal of
medications, and spread via food products
How can antibiotic resistance spread within a healthcare system? - Answers through contaminated
surfaces, medical equipment, healthcare workers, and patient-to-patient transmission
How can antibiotic resistance spread between people? - Answers through direct contact, respiratory
droplets, poor hygiene, and shared environments
How can antibiotic resistance spread between bacteria? - Answers through horizontal gene transfer
(conjugation, transformation, transduction), often via plasmids
How did the Veterinary Feed Directive (2017) change antibiotic use in livestock in the US? - Answers it
required veterinary oversight and eliminated the use of medically important antibiotics for growth
promotion
Does reducing antibiotic usage always reduce antibiotic resistance? Why or why not? - Answers no,
because resistance genes can persist in bacteria, spread through horizontal gene transfer, and be
maintained even without antibiotic pressure
What is a non-medically important antibiotic? - Answers an antibiotic not used in human medicine
What is a medically important antibiotic? - Answers an antibiotic used to treat human infections
What is a critically important antibiotic? - Answers a medically important antibiotic that is essential
for treating serious or life-threatening human infections
Why did virginiamycin use decline while bambermycin increased in turkey production (2013-2017)? -
Answers virginiamycin is medically important to humans, so its use was restricted; bambermycin is
not medically important, so it became a substitute
What is co-selection involving bacterial plasmids? - Answers when one selective pressure (like
disinfectant) selects for plasmids carrying multiple resistance genes, maintaining resistance to both
disinfectants and antibiotics
When one selective pressure (like disinfectant) selects for plasmids carrying multiple resistance genes,
maintaining resistance to both disinfectants and antibiotics. - Answers because resistance genes for
disinfectants and antibiotics can be linked on the same plasmid, so selecting for one also selects for
the other
What does APEC stand for? - Answers Avian Pathogenic Escherichia coli
What does ExPEC stand for? - Answers Extraintestinal Pathogenic Escherichia coli
What does FUTI stand for? - Answers Foodborne Urinary Tract Infection
What are COPs? - Answers coliforms of poultry origin (E. coli strains originating from poultry)
How can a foodborne E. coli cause a UTI? - Answers by being ingested, colonizing the gut, then
spreading to the urinary tract (often via the fecal-urethral route)
What is the evidence that some UTIs are caused by E. coli from food? - Answers genetic similarities
between E. coli strains from retail meat and human UTI infections suggest a shared source
How do recent Salmonella Reading strains differ from older strains? - Answers newer strains often
have increased virulence and antibiotic resistance, making them more likely to cause serious disease
in humans
Acute infection - Answers comes on rapidly, with severe but short-lived effects
Chronic infection - Answers develops slowly and lasts for months or years
Colonization - Answers establishment and growth of a microorganism on a surface
Endotoxin - Answers a toxin that is present inside a bacterial cell and is released when the cell
disintegrates
Exotoxin - Answers toxic protein produced by a microorganism (simply called toxin)
Immunocompromised - Answers having an impaired immune system
Infection - Answers invasion by a pathogen on or within the body
Infectious disease - Answers infection that prevent body from functioning normally
Latent infection - Answers infection in which the infectious agent is present but not causing
symptoms
Microbiome - Answers the microorganisms in a particular environment
Normal microbiota - Answers group of microorganisms that routinely colonize the body of a healthy
individual
Opportunistic pathogen - Answers disease in immunocompromised individuals (ex. wound)
Primary pathogen - Answers disease in healthy individuals