Biology · General Awareness

Vaccination and Immunity

997 Questions

This hub presents questions focused on vaccination and human immunity. It covers essential topics such as herd immunity, non-specific immunity, antigens, and historical vaccine developments. These concepts are crucial for general science sections in medical and civil service exams.

Herd immunity functionsNon-specific immunitySmallpox vaccinationInterferon proteinsAntigen propertiesImmunological amnesia

Vaccination and Immunity Questions

Multiple choice
  1. TAB vaccine for Typhoid, Salk vaccine for polio / poliomyelitis and Rabies vaccine are vaccines made from killed germs.

  2. Vaccines for Measles, Mumps, Typhoid and freeze dried vaccine for TB, BCG (Bacillus of Calmette-Guerin) are vaccines made from living weakened pathogens.

  3. Vaccine for small pox is a vaccine made from living and fully virulent pathogens.

  4. Measles, Mumps and Rubella (MMR) vaccines and OPV / Oral Polio vaccines are made by surface viruses.

  5. Vaccines for Tetanus and Diptheria are vaccines made from toxoids.

Reveal answer Fill a bubble to check yourself
D Correct answer
Explanation

Measles, Mumps and Rubella (MMR) vaccines and OPV / Oral Polio vaccines are made by attenuated viruses.

Multiple choice

The deadliness of the flu virus resides in the following except _______________.

Directions: Answer the question based on the following passage.

Worth a Pound of Cure - Catching the flu--the right way

A global influenza pandemic is closer than at any time in a generation. Klaus Stöhr, head of flu surveillance at the World Health Organization, made that uncharacteristically dramatic declaration back in November, before convening an emergency summit of vaccine manufacturers and national health agency officials. The reason was the escalating avian influenza crisis in 10 Asian countries, which poses a direct threat to human health.

Because the avian virus, known as H5N1, is lethal in chickens, identifying local outbreaks was easy. Stöhr was alarmed by evidence that the virus is also widespread in the region's domestic ducks, which show no symptoms. With asymptomatic ducks waddling through barnyards, backyards and kitchens shedding virus, hope of stamping out this largest avian flu outbreak in history has dimmed. And the likelihood of human exposure to the virus, which could spark a pandemic, has increased. "We know the recipe, and all the ingredients are there," Stöhr said.

Flu pandemics are caused by viruses with surface proteins unfamiliar to human immune systems. In the pandemic strains of 1957 and 1968, such proteins came from flu viruses that previously infected only birds. That was possible because flu is a promiscuous gene swapper. If an avian strain meets flu strain adapted to spreading among mammals, their progeny may possess the deadly combination of protein novelty and easy transmissibility between humans. The exchange can happen inside animal hosts susceptible to both avian and human flu strains, such as pigs. Or it might happen inside a farmer's child infected with this season's circulating human flu strain, whose healthy-looking pet duckling then gives her H5N1. In the past year more than 40 people in Thailand and Vietnam have already contracted the avian virus, and more than 30 of them have died from it.

Beginning on page 62 of this issue, Jeffery K. Taubenberger and his colleagues describe their resurrection, literally from the grave, of the virus that killed upward of 40 million people in 1918–1919. And they offer a chilling conclusion about its origin. Although certain genes in that virus may have come from a bird strain, the genes look as though they spent significant time evolving in yet another animal before the virus emerged among humans. This unknown source of the 1918 pandemic might even have been a type of bird or animal that we don't recognize as a flu carrier.

Systematic surveillance for influenza is currently limited to humans, chickens, swine and horses, with wild waterfowl and shore birds tested less regularly. But few of these samples are closely analyzed, and scientists do not know the dynamics or true scope of the influenza ecosystem. The National Institutes of Health just announced plans to sequence the genomes of existing flu samples. In addition, the Armed Forces Institute of Pathology, the Centers for Disease Control and Prevention, and several partners want to create a high-capacity laboratory network dedicated to expanding flu surveillance capability and molecular analysis of influenza viruses. Studying how they evolve and move through human and animal populations might identify new flu reservoirs and enable the emergence of new strains to be predicted.

Start-up costs would equal the price of the two million emergency H5N1 vaccine doses the Department of Health and Human Services ordered in September. The money would be well spent for an ounce of prevention against future flu pandemics.

  1. the virus has the ability to inherit mutations

  2. in the carrier organism, it may not have any manifestations

  3. they have a capability of producing new and more deadly stains

  4. its manifestation can be asymptomatic

  5. the genes have a tendency of undergoing metamorphosis

Reveal answer Fill a bubble to check yourself
C Correct answer
Explanation

(3) is the only choice that cannot be derived from anywhere in the passage. Rest all the choice can be identified in the passage.

Multiple choice

Which of the following adjective can be best attributed to the avian virus?

Directions: Answer the question based on the following passage.

Worth a Pound of Cure - Catching the flu--the right way

A global influenza pandemic is closer than at any time in a generation. Klaus Stöhr, head of flu surveillance at the World Health Organization, made that uncharacteristically dramatic declaration back in November, before convening an emergency summit of vaccine manufacturers and national health agency officials. The reason was the escalating avian influenza crisis in 10 Asian countries, which poses a direct threat to human health.

Because the avian virus, known as H5N1, is lethal in chickens, identifying local outbreaks was easy. Stöhr was alarmed by evidence that the virus is also widespread in the region's domestic ducks, which show no symptoms. With asymptomatic ducks waddling through barnyards, backyards and kitchens shedding virus, hope of stamping out this largest avian flu outbreak in history has dimmed. And the likelihood of human exposure to the virus, which could spark a pandemic, has increased. "We know the recipe, and all the ingredients are there," Stöhr said.

Flu pandemics are caused by viruses with surface proteins unfamiliar to human immune systems. In the pandemic strains of 1957 and 1968, such proteins came from flu viruses that previously infected only birds. That was possible because flu is a promiscuous gene swapper. If an avian strain meets flu strain adapted to spreading among mammals, their progeny may possess the deadly combination of protein novelty and easy transmissibility between humans. The exchange can happen inside animal hosts susceptible to both avian and human flu strains, such as pigs. Or it might happen inside a farmer's child infected with this season's circulating human flu strain, whose healthy-looking pet duckling then gives her H5N1. In the past year more than 40 people in Thailand and Vietnam have already contracted the avian virus, and more than 30 of them have died from it.

Beginning on page 62 of this issue, Jeffery K. Taubenberger and his colleagues describe their resurrection, literally from the grave, of the virus that killed upward of 40 million people in 1918–1919. And they offer a chilling conclusion about its origin. Although certain genes in that virus may have come from a bird strain, the genes look as though they spent significant time evolving in yet another animal before the virus emerged among humans. This unknown source of the 1918 pandemic might even have been a type of bird or animal that we don't recognize as a flu carrier.

Systematic surveillance for influenza is currently limited to humans, chickens, swine and horses, with wild waterfowl and shore birds tested less regularly. But few of these samples are closely analyzed, and scientists do not know the dynamics or true scope of the influenza ecosystem. The National Institutes of Health just announced plans to sequence the genomes of existing flu samples. In addition, the Armed Forces Institute of Pathology, the Centers for Disease Control and Prevention, and several partners want to create a high-capacity laboratory network dedicated to expanding flu surveillance capability and molecular analysis of influenza viruses. Studying how they evolve and move through human and animal populations might identify new flu reservoirs and enable the emergence of new strains to be predicted.

Start-up costs would equal the price of the two million emergency H5N1 vaccine doses the Department of Health and Human Services ordered in September. The money would be well spent for an ounce of prevention against future flu pandemics.

  1. Promiscuous

  2. Global

  3. lethal

  4. Circumscribed

  5. Pestiferous

Reveal answer Fill a bubble to check yourself
E Correct answer
Explanation

(5) is the right choice as the passage says that the flu virus is very dangerous.

Multiple choice
  1. Measles virus have two types of envelope spikes.

  2. Measles virus is a paramyxovirus.

  3. Single serotype

  4. Cellular receptor of measles virus is CD48 molecule.

  5. Virus RNA polymerase transcribes the negative-strand genome to mRNA.

Reveal answer Fill a bubble to check yourself
D Correct answer
Explanation

It is incorrect. Cellular receptor of measles virus is CD46 molecule. Adsoprtion to the cell surface is through Hemagglutinin.

Multiple choice
  1. Opsonize viruses

  2. Neutralise viruses

  3. Play a major role in recovery from viral infections

  4. Prevent viral entry into cells

  5. Protect against reinfection with virus

Reveal answer Fill a bubble to check yourself
C Correct answer
Explanation

Interferon inhibits the intracellular replication of viruses.

Multiple choice
  1. 100%

  2. 10%

  3. 50%

  4. 75%

  5. Herd immunity cannot be achieved against diphtheria

Reveal answer Fill a bubble to check yourself
D Correct answer
Explanation

Herd immunity can only be achieved in those diseases which depend on human transmission, such as diphtheria. Thus, in the case of tetanus, active immunization is of benefit to the individual, but not to the community, since it will not eliminate the organism which is found in the feces of domestic animals and persists in soil as highly resistant spores.

Multiple choice
  1. lack of glycosylation

  2. lack of conformation

  3. lack of carrier determinants

  4. HLA-related unresponsiveness

  5. inherently insufficient antigen concentration

Reveal answer Fill a bubble to check yourself
D Correct answer
Explanation

A major concern about subunit vaccines, especially when just short peptides are used, is the variation in ability to associate with the different polymorphic forms of MHC molecules present in an outbred population.

Multiple choice
  1. irreversible protection

  2. lack of antibody-mediated immune response

  3. type IV hypersensitivity reactions

  4. immunodeficiency

  5. serum sickness

Reveal answer Fill a bubble to check yourself
E Correct answer
Explanation

Horse globulins containing anti-tetanus and anti-diphtheria toxins have been extensively employed prophylactically, but have the drawback that serum sickness develops in response to foreign proteins, producing vasculitic skin rashes, swollen joints and transient albuminuria due to immune complex-mediated inflammatory reactions.

Multiple choice
  1. if the molecule is first linked to a carrier

  2. if the molecule maintains discontinuous epitopes

  3. if the peptide bonds are maintained

  4. if the molecule is glycosylated

  5. if disulfide bonds are maintained

Reveal answer Fill a bubble to check yourself
C Correct answer
Explanation

The peptide bonds hold the amino acids together and if these are not maintained, then the vaccine will simply consist of a mixture of amino acids; not much use as a specific vaccine.

Multiple choice
  1. patients treated with steroids

  2. pregnant women

  3. patients with leukemia

  4. patients treated with radiotherapy

  5. children under 8 years of age

Reveal answer Fill a bubble to check yourself
E Correct answer
Explanation

Live attenuated organisms can be safely administered to children under 8 years of age, so long as they are not immunodeficient. Attenuated vaccines for poliomyelitis (Sabin), measles and rubella have gained general acceptance and are routinely given to babies and infants.

Multiple choice
  1. together with the toxin

  2. without the addition of any other agent

  3. with complete Freund's adjuvant

  4. absorbed to aluminum hydroxide

  5. only as a therapeutic agent, not prophylactically

Reveal answer Fill a bubble to check yourself
D Correct answer
Explanation

Bacterial exotoxins can be detoxified by formaldehyde treatment which does not destroy the major immunogenic determinants. The toxoid is generally given after adsorption to aluminum hydroxide which acts as an adjuvant and produces higher antibody titers.

Multiple choice
  1. immunity is limited to the gut

  2. only secretory IgA is elicited

  3. it does not invade the mucosal lining of the gut

  4. it provokes both oral and systemic immunity

  5. the organism does not need to be attenuated

Reveal answer Fill a bubble to check yourself
D Correct answer
Explanation

Salmonella infects cells of the mononuclear phagocyte system throughout the body and thereby stimulates the production of cell-mediated immunity, in addition to both secretory and systemic antibody production. It can be made to express proteins from shigella, cholera, malarial sporozoites, etc and has potential as an orally administered vaccine.