Defence against disease: exam questions

8 questions, 27 marks. Write your answers on paper, then open each mark scheme.

Question 1

Paper 1A style

What is the role of thrombin in blood clotting?

  1. It is released from platelets to start the clotting cascade
  2. It converts fibrinogen into fibrin
  3. It binds erythrocytes together directly
  4. It converts fibrin into fibrinogen
[1 mark]
Show mark scheme for question 1

Answer: B [1]

Question 2

Paper 1A style

Which of the following is a zoonosis transmitted to humans by the bite of a mosquito?

  1. Rabies
  2. Tuberculosis
  3. Japanese encephalitis
  4. AIDS
[1 mark]
Show mark scheme for question 2

Answer: C [1]

Question 3

Paper 1A style

Why are antibiotics not effective against viral infections?

  1. Viruses are too small to absorb antibiotics
  2. Viruses have no metabolism of their own for antibiotics to block
  3. Viruses have cell walls made of a different material from bacteria
  4. Antibiotics are broken down by the host's immune system
[1 mark]
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Answer: B [1]

Question 4

Paper 2A style

Outline how antibodies against a specific antigen are produced.

[4 marks]
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  • antigen (glycoprotein / protein) on surface of pathogen [1]
  • specific B-cell binds / interacts directly with the antigen [1]
  • helper T-cell activated by the same antigen [1]
  • contact with activated helper T-cell activates the B-cell [1]
  • activated B-cell divides by mitosis [1]
  • forms a clone of plasma cells [1]
  • plasma cells secrete the (same) specific antibody [1]
  • [max 4]

Question 5

Paper 1B style

The table shows weekly COVID-19 cases per 100 000 adults in one region, in vaccinated and unvaccinated adults. The data are for practice. (a) Calculate the percentage change in cases among unvaccinated adults from week 1 to week 8. [2] (b) Calculate the percentage difference between the case rates of unvaccinated and vaccinated adults in week 8. [2] (c) Suggest one reason, other than vaccination, why cases fell in both groups between week 4 and week 8. [1] (d) Evaluate the claim that these data prove that vaccination reduces infection. [2]

Weekly COVID-19 cases per 100 000 adults (practice data)
WeekUnvaccinated adultsVaccinated adults
1420150
4610190
828070
[7 marks]
Show mark scheme for question 5
  • (a) (280 − 420) ÷ 420 × 100 [1]
  • (a) = −33.3% / a decrease of 33% [1]
  • (b) mean of the two rates = (280 + 70) ÷ 2 = 175 [1]
  • (b) |280 − 70| ÷ 175 × 100 = 120% [1]
  • (b) Accept (280 − 70) ÷ 280 × 100 = 75% (lower in vaccinated adults) for [1] max only if unvaccinated adults are clearly stated as the reference value
  • (c) social distancing / lockdown / mask wearing / more people immune after infection / seasonal change / less testing OWTTE [1]
  • (d) supports: vaccinated adults had fewer cases than unvaccinated in every week [1]
  • (d) but correlation does not prove causation / data are from one region only [1]
  • (d) groups may differ in age / behaviour / testing rate / only three weeks shown / no statistical test [1]
  • [max 7]

Question 6

Paper 2A style

Explain why a person infected with HIV for several years is likely to develop opportunistic infections.

[3 marks]
Show mark scheme for question 6
  • HIV infects and kills (certain types of) lymphocytes / helper T-cells [1]
  • number of helper T-cells falls over time [1]
  • fewer B-cells activated, so fewer antibodies produced [1]
  • immune system cannot fight pathogens normally controlled / this is AIDS [1]
  • [max 3]

Question 7

Paper 2B style

Explain how strains of pathogenic bacteria resistant to several antibiotics evolve, and why careful use of antibiotics is needed.

[6 marks]
Show mark scheme for question 7
  • variation in the bacterial population [1]
  • resistance arises by random mutation / gene for resistance [1]
  • resistance genes can be transferred between bacteria on plasmids [1]
  • antibiotic kills susceptible bacteria [1]
  • resistant bacteria survive: natural selection [1]
  • resistant bacteria reproduce rapidly / binary fission, passing on resistance gene [1]
  • proportion of resistant bacteria in the population increases [1]
  • exposure to several antibiotics selects multiresistant strains [1]
  • careful use slows the emergence of multiresistant bacteria [1]
  • eg prescribe only for bacterial infections / not for viral infections [1]
  • eg complete the course / avoid routine use in livestock / hospital hygiene [1]
  • [max 6]

Question 8

Paper 2A style

Outline how vaccination of a large proportion of a population can prevent an epidemic.

[4 marks]
Show mark scheme for question 8
  • vaccine contains antigens / DNA or RNA coding for antigens [1]
  • stimulates a primary immune response without causing the disease [1]
  • memory cells produced / retained, giving immunity [1]
  • on infection, memory cells give a rapid secondary response, eliminating the pathogen [1]
  • if a sufficient percentage is immune, transmission is greatly impeded: herd immunity [1]
  • protects people who cannot be vaccinated / are not immune [1]
  • [max 4]