Lesson 3.2.4.2
3.2.4.2 The immune response: T and B lymphocytes Quiz: AQA Biology, Unit 2
20 questions
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Lesson 3.2.4.2, The immune response: T and B lymphocytes: 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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Which cells present antigens to helper T cells in the cellular response?
- Neurones, which transmit impulses along axons to the spinal cord.
- Red blood cells, which carry oxygen and display antibodies on their surface.
- Platelets, which release clotting factors that bind antigens in the blood.
- Antigen-presenting cells, which display antigen fragments on their surface.
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What is the role of helper T cells (TH cells) in the immune response?
- They kill infected cells by releasing lysozymes into the cytoplasm.
- They stimulate cytotoxic T cells, B cells and phagocytes to respond to a foreign antigen.
- They engulf and digest pathogens by phagocytosis in the lymph nodes.
- They produce antibodies directly and release them into the blood plasma.
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What is the role of cytotoxic T cells (TC cells) in the immune response?
- They produce antibodies that bind to free antigens in the blood plasma.
- They kill infected or abnormal body cells that display foreign antigens.
- They stimulate B cells to divide and produce memory cells.
- They engulf pathogens by phagocytosis and digest them with lysozymes.
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What happens to a B cell when it binds to a foreign antigen with the help of a helper T cell?
- It divides by mitosis to form many identical plasma and memory cells, which is clonal selection.
- It divides by meiosis to produce haploid gametes that fight the pathogen.
- It engulfs the antigen and digests it using lysozymes within the B cell.
- It becomes a helper T cell that releases antibodies into the blood plasma.
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Which cells release large quantities of antibody into the blood and other body fluids?
- Plasma cells, which are derived from B lymphocytes.
- Helper T cells, which release cytokines to stimulate phagocytes.
- Memory cells, which divide to form more cytotoxic T cells.
- Phagocytes, which release lysozymes into the bloodstream.
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Which statement describes the structure of an antibody?
- A Y-shaped protein made of four polypeptide chains, with two binding sites for an antigen.
- A globular protein made of one polypeptide chain with a single binding site.
- A circular DNA molecule that carries genetic information for antibody production.
- A lipid molecule with a hydrophilic head and two hydrophobic fatty acid tails.
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How does an antigen-antibody complex lead to the destruction of a bacterium?
- The antibody converts the bacterium into a harmless carbohydrate by hydrolysis.
- The antibody causes the bacterium to divide by mitosis until it is destroyed.
- The antibody binds to the bacterium, causing agglutination or allowing phagocytosis.
- The antibody passes into the bacterium and kills it using enzymes in its cytoplasm.
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What is the difference between the primary and secondary immune responses?
- The primary response is faster, because no antigen recognition is needed for antibodies to be made.
- The secondary response does not involve B cells, because only the primary response uses lymphocytes.
- The secondary response is faster and larger, because memory cells from the first exposure are already present.
- The secondary response is slower and smaller, because memory cells are destroyed after the first exposure.
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Which cells are described as producing a rapid secondary immune response on re-exposure to an antigen?
- Phagocytes, which are formed only from red blood cells in the bone marrow.
- Antigens, which are stored in the blood to cause a response later.
- Lysozymes, which are secreted by all cells in the body continuously.
- Memory cells, which are formed during the primary response.
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Which statement describes the role of antigen-presenting cells in the cellular response?
- They kill infected cells directly by releasing perforin into the cell cytoplasm.
- They display antigen fragments on their surface so that helper T cells can recognise them.
- They produce memory cells that divide by meiosis to form plasma cells.
- They secrete antibodies that bind to antigens and neutralise them in the blood.
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Which feature of B cells allows them to respond to a particular antigen?
- Each B cell contains plasmids that code for antibodies against all antigens.
- Each B cell produces every type of antibody at the same time all the time.
- Each B cell has a surface receptor specific to one antigen shape.
- Each B cell carries a cellulose cell wall that can recognise any antigen.
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A person has a high number of memory cells against a pathogen. What will happen if the pathogen re-enters the body?
- A slow, small antibody response will occur, similar in speed to the first infection.
- No response will occur because memory cells are only active in the primary response.
- Only phagocytes will respond, because memory cells cannot make antibodies at all.
- A rapid, large antibody response will be produced, usually before symptoms develop.
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Which statement best describes the sequence in an immune response to a foreign antigen?
- Phagocytosis of the antigen, then production of memory cells, then no further immune responses.
- Plasma cell production, then helper T cell formation, then destruction of memory cells by antibodies.
- Antigen presentation, helper T cell activation, B cell clonal selection, then plasma and memory cell production.
- B cell clonal selection, then helper T cell activation, then antigen presentation to phagocytes.
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A patient has a shortage of helper T cells. Which immune functions would be most directly reduced?
- Transport of oxygen by haemoglobin in red blood cells.
- Activation of cytotoxic T cells, B cells and phagocytes against foreign antigens.
- Production of red blood cells from stem cells in the bone marrow.
- Absorption of glucose across the membranes of cells in the ileum.
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A B cell is stimulated to produce plasma cells. What is the main function of these plasma cells?
- To remember antigens so that a secondary response can begin later.
- To present antigen fragments to helper T cells on their outer membrane.
- To engulf and digest pathogens using lysozymes within their cytoplasm.
- To secrete large quantities of specific antibodies into the blood and body fluids.
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Why are antibodies described as acting on antigens rather than directly killing all pathogens?
- Antibodies enter pathogens and break their DNA down into individual nucleotides.
- Antibodies dissolve the phospholipid membranes of pathogens and release their contents.
- Antibodies convert pathogens into harmless glycogen by hydrolysis of their proteins.
- Antibodies bind to specific antigens, which then leads to agglutination or phagocytosis of the pathogen.
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Which evidence would best support the claim that memory cells improve the speed of the immune response?
- The concentration of antibody is the same on the second exposure as on the first.
- The concentration of antibody falls to zero within a day of the second exposure.
- The concentration of antibody rises only after the pathogen has been destroyed.
- The concentration of antibody rises faster on the second exposure to the same pathogen than on the first.
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What do memory cells develop from once a B cell has been selected by a matching antigen?
- Division of existing plasma cells into helper T cells once the antigen has been destroyed.
- Meiosis of antigen-presenting cells, producing haploid lymphocytes that carry the antigen.
- Conversion of phagocytes into antibodies that bind the antigen permanently in the blood.
- Clonal division of the selected B cell, producing long-lived cells that remember the antigen.
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Which statement about helper T cells and B cells is correct?
- Helper T cells and B cells produce antibodies at equal rates throughout every immune response.
- Helper T cells kill B cells that have bound an antigen, which limits the production of antibodies.
- B cells release chemical signals that stimulate helper T cells to kill infected body cells directly.
- Helper T cells release chemical signals that stimulate B cells to divide and differentiate.
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A pathogen is coated with antibodies, and many pathogens are clumped together as a result. What is this process called?
- Agglutination
- Mitosis of the antigen-bearing cell into two identical cells
- Hydrolysis of the antigen into glucose and amino acids
- Osmosis of water into the pathogen through its membrane
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