Lesson 3.2.4.3
3.2.4.3 Vaccines, HIV and monoclonal antibodies Quiz: AQA Biology, Unit 2
20 questions
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Lesson 3.2.4.3, Vaccines, HIV and monoclonal antibodies: 20 multiple choice questions for the AQA Biology (7402), Unit 2: Cells, written with Revision Ninja.
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The 20 questions
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What is herd immunity?
- Immunity of an individual animal that is transferred to its offspring through the placenta.
- Protection of a population, including unvaccinated people, when enough people are immune that the pathogen cannot spread easily.
- The process by which phagocytes engulf and digest a pathogen in a lymph node.
- The total number of antibodies produced by a single B cell during a primary response.
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Which description best matches active immunity?
- Immunity received from antibodies that are transferred from another person or animal.
- Immunity produced by the individual's own immune system after exposure to an antigen or vaccine.
- Immunity produced by antibiotics that kill bacteria without any immune response.
- Immunity produced by drinking breast milk that contains antibodies from the mother.
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Which description best matches passive immunity?
- Immunity produced only when memory cells are stimulated by a vaccine containing antigens.
- Immunity produced by the person's own B cells after contact with a pathogen.
- Immunity acquired by receiving antibodies made by another person or animal, with no memory cells formed.
- Immunity produced by the cytotoxic T cells that destroy infected body cells.
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HIV replicates inside which cells, leading to the symptoms of AIDS?
- Red blood cells
- Liver cells
- Helper T cells
- Neurones in the brain
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Why are antibiotics ineffective against viruses such as HIV?
- Viruses lack the cell structures that antibiotics target, because they are non-living and replicate inside host cells.
- Viruses divide by binary fission, which antibiotics cannot stop.
- Viruses have a cell wall made of peptidoglycan, which antibiotics cannot penetrate.
- Viruses are eukaryotes, and antibiotics act only on prokaryotic ribosomes.
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Which mechanism lets HIV cause the symptoms of AIDS?
- It destroys plasma cells, stopping antibody production from B cells only.
- It destroys red blood cells, reducing oxygen transport around the body.
- It destroys helper T cells, weakening the immune response to other infections.
- It destroys phagocytes in the blood plasma, leaving no immune response at all.
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Monoclonal antibodies can be used to target medication to specific cell types. How is this done?
- The drug is dissolved in the blood plasma, where it enters all cells at the same rate.
- The drug is stored in red blood cells, which release it into any cell they pass.
- The drug is converted into an antibody inside the target cell, where it is then released.
- A therapeutic drug is attached to an antibody that binds to a specific antigen on the target cells.
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Which use of monoclonal antibodies is described for medical diagnosis?
- Destroying all bacteria in a patient's blood by releasing lysozymes.
- Detecting a specific antigen or substance in a patient sample using antibody binding.
- Producing red blood cells in large numbers from stem cells in the bone marrow.
- Removing all helper T cells from the body to stop an autoimmune response.
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What is the principle of the ELISA test?
- Antibodies are broken down by lysozymes, and the amount of product shows the bacteria present.
- An antibody binds a specific antigen, and a linked marker shows whether the antigen is present.
- Antigens are dissolved in lipid solvent, and the membrane is examined under a microscope.
- Antigens are digested by helper T cells, and the number of cells remaining is counted.
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Which statement about vaccines is consistent with the concept of herd immunity?
- Vaccines spread between people in the air so that all unvaccinated individuals become immune.
- Vaccinating a large proportion of a population can protect unvaccinated individuals by reducing pathogen spread.
- Vaccinating a small proportion of a population always protects all unvaccinated individuals completely.
- Vaccines work only in individuals who have never had any contact with a pathogen.
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Which difference between active and passive immunity is correct?
- Passive immunity produces memory cells and lasts longer, while active immunity gives immediate protection with no memory.
- Both active and passive immunity produce memory cells, and both are permanent for the whole of a person's life.
- Active immunity produces memory cells and lasts longer, while passive immunity gives immediate protection with no memory cells.
- Active immunity is produced by drinking breast milk, while passive immunity follows vaccination with antigens.
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Which ethical issue is commonly associated with the use of vaccines?
- Balancing individual choice against the protection of the wider population, including the risks of side effects.
- Whether vaccines should contain living red blood cells to increase oxygen supply.
- Whether vaccines should be used to replace all antibiotics in the treatment of infections.
- Whether vaccines should be sold only to people over 80 years of age regardless of risk.
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A new monoclonal antibody therapy is tested in a clinical trial with a small sample of patients. Which evaluation is most appropriate?
- The trial may not represent the wider population, so results should be interpreted with caution.
- The trial shows the drug works for all patients, because all antibodies have the same binding site.
- The trial results are certain, because any small sample always shows the true effect for all patients.
- The trial is invalid, because monoclonal antibodies cannot be tested on any group of patients.
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A researcher uses a monoclonal antibody to detect a pathogen in a sample. Which result would indicate the pathogen is present?
- The antibody dissolves in the sample and leaves no signal or colour change at all.
- The antibody is digested by lysozymes, so the signal is lost from the sample.
- The antibody kills the pathogen and removes it from the sample before any signal is produced.
- The antibody binds to the pathogen antigen and produces a detectable signal.
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Why does the loss of helper T cells in HIV infection have a wide effect on immunity?
- Helper T cells stimulate cytotoxic T cells, B cells and phagocytes, so their loss affects several responses.
- Helper T cells form the cell membrane of every infected cell, so their loss exposes the cytoplasm.
- Helper T cells produce red blood cells, so their loss reduces oxygen transport to all organs.
- Helper T cells carry antibodies, so their loss only reduces antibody movement in the blood.
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Which statement about monoclonal antibodies is correct?
- They are identical antibodies produced from a single clone of cells, each binding the same antigen.
- They are produced by helper T cells, which bind the antigen and release it into the blood.
- They are produced by red blood cells, which take up antigens from the plasma and release them.
- They are a mixture of antibodies from many different B cells, each binding a different antigen.
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A child is given a vaccine and then develops antibodies and memory cells of her own. Which type of immunity has she gained?
- Innate immunity, from phagocytes in the skin that engulf any pathogen that touches them.
- Passive immunity, from antibodies given by injection from a donor who was already immune.
- Active immunity, produced by her own immune system after exposure to the vaccine antigen.
- Passive immunity, from antibodies that crossed the placenta before she was born to her mother.
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A drug is attached to an antibody that binds an antigen found only on one cell type. What advantage does this give?
- The drug is delivered equally to every cell in the body, increasing its effect on all tissues.
- The drug is delivered mainly to cells carrying that antigen, reducing effects on other cells.
- The antigen is destroyed by the drug, so the drug is no longer needed to treat the condition.
- The antibody removes the drug from the bloodstream before it can reach any of the target cells.
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Which factor would make a monoclonal antibody diagnostic test more reliable?
- Using a sample that has been heated until all of its antigens are denatured and lost.
- Using an antibody with high specificity for the target antigen.
- Using an antibody that binds many different antigens to increase the number of signals.
- Using a sample containing a large mixture of unrelated antibodies to produce more colour.
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Why does HIV infection make a person more susceptible to other infections such as tuberculosis?
- HIV destroys all bacteria in the blood, which lets other viruses enter the body unchecked.
- Loss of helper T cells means the immune system cannot mount an effective response to many pathogens.
- HIV makes red blood cells produce antigens, which block the activity of all immune cells.
- HIV causes antibiotics to lose their effect, so every infection becomes resistant to treatment.
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