Unit 1: Fundamentals of the immune system - Practice Quiz

BTS511 — Immunology 60 Questions
0 Correct 0 Wrong 60 Left
0/60

1 Which type of immunity is present from birth and provides a rapid, non-specific first line of defense?

types of immunity Easy
A. Adaptive immunity
B. Passive immunity
C. Humoral immunity
D. Innate immunity

2 Immunity acquired through vaccination is an example of which type of immunity?

types of immunity Easy
A. Artificial passive immunity
B. Natural active immunity
C. Artificial active immunity
D. Natural passive immunity

3 The transfer of antibodies from mother to fetus through the placenta is an example of:

types of immunity Easy
A. Innate immunity
B. Natural passive immunity
C. Natural active immunity
D. Artificial active immunity

4 All blood cells of the immune system originate from which type of cell?

differentiation of stem cells Easy
A. Hematopoietic stem cells
B. Mesenchymal stem cells
C. Epithelial stem cells
D. Neural stem cells

5 The two main progenitor lineages derived from hematopoietic stem cells are the:

differentiation of stem cells Easy
A. Myeloid and lymphoid lineages
B. Lymphoid and mesenchymal lineages
C. Epithelial and myeloid lineages
D. Erythroid and neural lineages

6 Which cells develop from the common lymphoid progenitor?

differentiation of stem cells Easy
A. T cells and B cells
B. Platelets and red blood cells
C. Neutrophils and monocytes
D. Eosinophils and basophils

7 Which white blood cell is the most abundant and acts as a primary phagocyte in acute infection?

cells of the immune system Easy
A. Basophil
B. Lymphocyte
C. Eosinophil
D. Neutrophil

8 Which cell is primarily responsible for producing antibodies?

cells of the immune system Easy
A. Natural killer cell
B. Plasma cell
C. Neutrophil
D. Macrophage

9 Which immune cell can kill virus-infected and tumor cells without prior sensitization?

cells of the immune system Easy
A. Plasma cell
B. Natural killer cell
C. Mast cell
D. B cell

10 Large phagocytic cells that also act as antigen-presenting cells are called:

cells of the immune system Easy
A. Platelets
B. Erythrocytes
C. Eosinophils
D. Macrophages

11 In humans, T lymphocytes mature in which primary lymphoid organ?

primary lymphoid organs Easy
A. Spleen
B. Tonsil
C. Lymph node
D. Thymus

12 In humans, B lymphocytes mature in which primary lymphoid organ?

primary lymphoid organs Easy
A. Thymus
B. Bone marrow
C. Spleen
D. Peyer's patches

13 What is the main function of primary lymphoid organs?

primary lymphoid organs Easy
A. Storage of red blood cells
B. Trapping of antigens for response
C. Production and maturation of lymphocytes
D. Filtration of blood only

14 The clear fluid that circulates through the lymphatic vessels is called:

lymphatic system Easy
A. Plasma
B. Bile
C. Lymph
D. Serum

15 Which of the following is a major function of the lymphatic system?

lymphatic system Easy
A. Draining excess tissue fluid back to blood
B. Regulating body temperature only
C. Pumping oxygenated blood to organs
D. Producing digestive enzymes

16 Structures along lymphatic vessels that filter lymph and house immune cells are called:

lymphatic system Easy
A. Alveoli
B. Nephrons
C. Lymph nodes
D. Villi

17 Which organ filters the blood and is the largest secondary lymphoid organ?

secondary lymphoid organs Easy
A. Bone marrow
B. Liver
C. Spleen
D. Thymus

18 What is the primary role of secondary lymphoid organs?

secondary lymphoid organs Easy
A. Sites of hormone secretion
B. Sites where lymphocytes are first produced
C. Sites where lymphocytes encounter antigens
D. Sites of red blood cell breakdown only

19 Which of the following is an example of a secondary lymphoid organ?

secondary lymphoid organs Easy
A. Pancreas
B. Tonsils
C. Bone marrow
D. Thymus

20 The humoral immune response is primarily mediated by which molecules?

humoral response Easy
A. Antibodies
B. Hormones
C. Enzymes
D. Neurotransmitters

21 A child receives an injection of tetanus antitoxin (preformed antibodies) after stepping on a rusty nail. This is an example of which type of immunity?

types of immunity Medium
A. Artificially acquired passive immunity
B. Naturally acquired active immunity
C. Naturally acquired passive immunity
D. Artificially acquired active immunity

22 Which feature best distinguishes adaptive immunity from innate immunity?

types of immunity Medium
A. Recognition of conserved microbial patterns
B. Rapid response within minutes of infection
C. Reliance on physical and chemical barriers
D. Immunological memory and antigen specificity

23 Hematopoietic stem cells give rise to two main progenitor lineages. Which cell type is derived from the common myeloid progenitor?

differentiation of stem cells Medium
A. B lymphocyte
B. Natural killer cell
C. T lymphocyte
D. Neutrophil

24 A researcher isolates a progenitor cell that can develop into B cells, T cells, and NK cells but not into red blood cells. This cell is most likely a:

differentiation of stem cells Medium
A. Common lymphoid progenitor
B. Hematopoietic stem cell
C. Common myeloid progenitor
D. Megakaryocyte progenitor

25 Which cell is considered the most effective professional antigen-presenting cell for activating naive T cells?

cells of the immune system Medium
A. Eosinophil
B. Mast cell
C. Dendritic cell
D. Neutrophil

26 A patient's blood smear shows granulocytes with bilobed nuclei and large red-orange granules that increase during a parasitic worm infection. These cells are:

cells of the immune system Medium
A. Eosinophils
B. Basophils
C. Neutrophils
D. Monocytes

27 Which statement correctly matches an immune cell to its primary function?

cells of the immune system Medium
A. Plasma cells directly engulf bacteria by phagocytosis
B. Cytotoxic T cells kill virus-infected host cells
C. Helper T cells lyse tumor cells directly
D. NK cells produce large amounts of antibody

28 In the thymus, developing T cells undergo positive and negative selection. What is the main purpose of negative selection?

primary lymphoid organs Medium
A. Generating antibody diversity through recombination
B. Promoting proliferation of mature effector T cells
C. Eliminating T cells that strongly react to self-antigens
D. Selecting T cells that can bind self-MHC molecules

29 Where do B lymphocytes complete their maturation in humans?

primary lymphoid organs Medium
A. Lymph nodes
B. Spleen
C. Thymus
D. Bone marrow

30 A child born with a congenitally absent thymus (DiGeorge syndrome) would most likely have a severe deficiency in which cell population?

primary lymphoid organs Medium
A. Blood erythrocytes
B. Circulating B lymphocytes
C. Bone marrow stem cells
D. Mature T lymphocytes

31 Excess interstitial fluid that is collected by lymphatic vessels is called:

lymphatic system Medium
A. Plasma
B. Chyle
C. Serum
D. Lymph

32 Into which structure does the thoracic duct ultimately drain its collected lymph?

lymphatic system Medium
A. Junction of the left subclavian and internal jugular veins
B. Hepatic portal vein
C. Cisterna chyli directly into the aorta
D. Right atrium of the heart

33 Which of the following is a key function of the lymphatic system besides fluid balance?

lymphatic system Medium
A. Secretion of digestive enzymes
B. Regulation of blood pH via bicarbonate
C. Production of red blood cells
D. Absorption of dietary fats from the intestine

34 The spleen filters blood and mounts immune responses. Which region of the spleen is primarily responsible for immune (lymphocyte) functions?

secondary lymphoid organs Medium
A. Red pulp
B. White pulp
C. Marginal sinus only
D. Trabecular veins

35 A pathogen enters through a cut on the hand. Antigen-presenting cells are most likely to activate lymphocytes in which secondary lymphoid organ?

secondary lymphoid organs Medium
A. Thymus
B. Bone marrow
C. Spleen
D. Draining axillary lymph node

36 Peyer's patches and tonsils are examples of which type of lymphoid tissue?

secondary lymphoid organs Medium
A. Primary lymphoid organs
B. Bone marrow niches
C. Encapsulated lymph nodes
D. Mucosa-associated lymphoid tissue (MALT)

37 During a secondary humoral response, which antibody isotype predominates and why?

humoral response Medium
A. IgD, because it is the main serum antibody
B. IgE, because it drives allergic protection
C. IgG, due to memory B cells and class switching
D. IgM, because it is the first antibody made

38 Which cell is the final differentiated effector cell that secretes large quantities of antibody?

humoral response Medium
A. Plasma cell
B. Follicular dendritic cell
C. Memory B cell
D. Naive B cell

39 The process by which the constant region of an antibody heavy chain changes (e.g., from IgM to IgA) without altering antigen specificity is called:

humoral response Medium
A. Somatic hypermutation
B. Class (isotype) switching
C. Clonal deletion
D. Positive selection

40 Neutralization is one effector function of antibodies. It works primarily by:

humoral response Medium
A. Binding pathogens or toxins to block their entry or activity
B. Producing pore-forming perforin
C. Directly digesting the pathogen's cell wall
D. Triggering fever through the hypothalamus

41 A newborn is protected against measles for the first few months of life due to maternal IgG transferred across the placenta. If the same infant later receives a live attenuated measles vaccine at 12 months, which combination correctly classifies these two events?

types of immunity Hard
A. Artificially acquired active immunity followed by naturally acquired passive immunity
B. Artificially acquired passive immunity followed by naturally acquired active immunity
C. Naturally acquired active immunity followed by artificially acquired passive immunity
D. Naturally acquired passive immunity followed by artificially acquired active immunity

42 Why does passive immunity, such as administration of antivenom, provide immediate protection but no long-term memory, whereas active immunity is delayed but durable?

types of immunity Hard
A. Passive immunity relies solely on innate phagocytes which cannot form immunological memory of any kind
B. Passive immunity activates memory B cells that rapidly die after antigen clearance leaving no reserve
C. Passive immunity induces tolerance in the recipient's T cells, blocking subsequent memory formation entirely
D. Passive immunity supplies preformed effector molecules without engaging memory lymphocyte clonal expansion

43 A patient with a mutation abolishing the transcription factor GATA-1 would most severely impair the development of which lineage from the common myeloid progenitor?

differentiation of stem cells Hard
A. Erythrocytes and megakaryocytes
B. T lymphocytes and NK cells
C. Basophils and mast cells only
D. Neutrophils and monocytes

44 Both dendritic cells and lymphocytes can arise from more than one progenitor. Which statement about hematopoietic lineage commitment is correct?

differentiation of stem cells Hard
A. Megakaryocytes and lymphocytes share a bipotent progenitor downstream of the myeloid branch
B. Plasmacytoid dendritic cells can derive from both lymphoid and myeloid progenitors, reflecting developmental plasticity
C. All dendritic cell subsets derive strictly from the common lymphoid progenitor
D. Natural killer cells arise exclusively from the common myeloid progenitor alongside granulocytes

45 A blood smear shows a granulocyte with a bilobed nucleus and large reddish-orange granules that stain with eosin. Elevated numbers of this cell are most characteristic of which condition?

cells of the immune system Hard
A. Chronic viral hepatitis
B. Type I hypersensitivity mediated solely by IgM
C. Acute bacterial pneumonia
D. Helminth (parasitic worm) infection

46 Natural killer cells kill virus-infected cells that have downregulated MHC class I. Which principle best explains this targeting behavior?

cells of the immune system Hard
A. NK cells only kill cells that display high levels of self peptide-MHC I complexes
B. Loss of inhibitory signaling ('missing self') tips the NK cell balance toward activation
C. Increased MHC I expression directly triggers NK cytotoxicity via activating receptors
D. NK cells require antigen presentation on MHC II to recognize infected targets

47 Which cell type serves as the most potent professional antigen-presenting cell for activating naïve T cells, and why?

cells of the immune system Hard
A. Dendritic cells, because they constitutively express high MHC II and costimulatory molecules and migrate to lymph nodes
B. Mast cells, because they release histamine that upregulates T cell receptors
C. Neutrophils, because they are the most abundant circulating leukocyte and rapidly reach infection sites
D. Erythrocytes, because they circulate through all tissues and carry surface antigens

48 A child with DiGeorge syndrome has thymic aplasia. Which laboratory finding would you most expect?

primary lymphoid organs Hard
A. Elevated mature T cells with defective antibody class switching
B. Markedly reduced circulating T cells with relatively normal B cell numbers
C. Normal T and B cells but complete absence of complement proteins
D. Absent B cells but normal T cell counts and normal immunoglobulin levels

49 During thymic selection, a developing thymocyte whose TCR binds self-peptide–MHC with intermediate affinity is allowed to survive. What is this process called and where does it predominantly occur?

primary lymphoid organs Hard
A. Negative selection in the thymic medulla
B. Clonal deletion in the bone marrow
C. Positive selection in the thymic cortex
D. Receptor editing in the thymic cortex

50 Why does B cell development in the bone marrow include a 'receptor editing' checkpoint, and what does it accomplish?

primary lymphoid organs Hard
A. It allows self-reactive immature B cells to rearrange light-chain genes and generate a non-autoreactive receptor before deletion
B. It removes all B cells expressing IgM to enforce isotype switching to IgG
C. It enhances the affinity of B cell receptors through somatic hypermutation prior to antigen exposure
D. It commits pro-B cells to the plasma cell fate immediately after heavy-chain rearrangement

51 Fluid filtered from capillaries that is not reabsorbed becomes lymph. Approximately how does the lymphatic system return this fluid to the circulation?

lymphatic system Hard
A. Lymph drains into the venous system via the thoracic duct and right lymphatic duct at the subclavian veins
B. Lymph is filtered by the kidney and excreted as urine before returning to plasma
C. Lymph enters the heart's right atrium directly through dedicated lymphatic vessels
D. Lymph is pumped directly back into arterial capillaries by lymph node contractions

52 Lymph flow lacks a central pump yet moves unidirectionally. Which combination of mechanisms primarily drives lymph propulsion?

lymphatic system Hard
A. Ciliary beating along the inner lining of lymphatic collecting ducts
B. Skeletal muscle contraction, respiratory pressure changes, and one-way valves within lymphatic vessels
C. Cardiac systolic pressure transmitted directly into lymphatic capillaries
D. Osmotic gradients created by high protein concentration in the venous blood

53 A patient who underwent splenectomy is at increased risk of overwhelming infection by encapsulated bacteria such as Streptococcus pneumoniae. What splenic function best explains this vulnerability?

secondary lymphoid organs Hard
A. Loss of the thymus-dependent zone required for all T cell maturation
B. Complete inability to produce any immunoglobulins after spleen removal
C. Failure of bone marrow to produce neutrophils after splenectomy
D. Loss of marginal zone filtration and opsonin-independent clearance of blood-borne encapsulated organisms

54 In a lymph node, where do germinal centers form and what is the functional significance of this location?

secondary lymphoid organs Hard
A. In the cortex within B cell follicles, where affinity maturation and class switching occur
B. In the paracortex, which is the primary site of plasma cell antibody secretion
C. In the medulla, where naïve T cells are first primed by antigen
D. In the subcapsular sinus, where lymph first enters and antibodies are directly filtered

55 MALT (mucosa-associated lymphoid tissue) differs from lymph nodes in a key structural feature. Which statement is correct?

secondary lymphoid organs Hard
A. MALT contains only T cells and cannot support antibody production
B. MALT often lacks a discrete capsule and samples antigen directly from mucosal surfaces via M cells
C. MALT is fully encapsulated and receives antigen exclusively through afferent lymphatics
D. MALT is a primary lymphoid organ where lymphocytes complete their initial maturation

56 During a secondary immune response to a T-dependent antigen, why is the antibody produced of higher affinity and predominantly IgG rather than IgM?

humoral response Hard
A. Memory B cells that underwent somatic hypermutation and class switching in prior germinal center reactions are rapidly reactivated
B. Naïve B cells switch directly to IgG upon first antigen contact without any T cell help
C. IgM-producing plasma cells convert their secreted antibody into IgG in the serum
D. Complement proteins chemically modify IgM into IgG during the secondary exposure

57 A polysaccharide vaccine given alone to a 6-month-old infant produces a weak, short-lived antibody response with no memory. Conjugating the polysaccharide to a protein carrier dramatically improves it. What is the immunological basis?

humoral response Hard
A. The conjugate bypasses B cells entirely and stimulates plasma cells directly
B. The protein carrier recruits T helper cells, converting a T-independent response into a T-dependent one with memory and class switching
C. The protein carrier acts as an adjuvant that only stimulates innate NK cell responses
D. The protein carrier directly cross-links B cell receptors more efficiently than polysaccharide alone

58 Which antibody isotype is most effective at agglutination and is the first secreted in a primary response, owing to its pentameric structure with ten antigen-binding sites?

humoral response Hard
A. IgE
B. IgM
C. IgG
D. IgA

59 A macrophage phagocytoses a bacterium coated with C3b and IgG. This coating enhances uptake through which combined mechanism?

cells of the immune system Hard
A. Antibody-dependent cellular cytotoxicity mediated solely by macrophage perforin release
B. Opsonization, where C3b binds complement receptors and IgG-Fc binds Fcγ receptors on the macrophage
C. Direct antigen presentation on MHC I to activate cytotoxic T cells during engulfment
D. Neutralization, where IgG blocks bacterial toxins and C3b lyses the cell membrane

60 Which scenario best illustrates the distinction between innate and adaptive immunity in terms of specificity and memory?

types of immunity Hard
A. Both innate and adaptive immunity require weeks to activate on first exposure to a pathogen
B. Innate immunity forms lasting memory, whereas adaptive immunity provides only immediate non-specific defense
C. Adaptive immunity acts within minutes and lacks specificity, while innate immunity is slow and antigen-specific
D. A skin barrier and phagocytes respond identically to any pathogen, while T and B cells respond to specific epitopes and form memory