Autoimmune Disorders Quiz
The question sheet
Reveal any answer as you study-
Which hypersensitivity reactions are involved in the mechanisms of autoimmune diseases?
- Type II, III, and IV
- Type I only
- Type I and II
- Type I, II, and III
Reveal answer
Answer: Type II, III, and IV
Source evidence
PDF page 844: In 1970, artist Walt Kelly developed a poster promoting Earth Day, featuring a character from Pogo, his daily newspaper comic strip. In the poster, Pogo looks out across a litter-strewn forest and says wryly, “We have met the enemy and he is us.” Pogo was not talking about the human immune system, but he very well could have been. Although the immune system protects the body by attacking invading “enemies” (pathogens), in some cases, the immune system can mistakenly identify the body’s own cells as the enemy, resulting in autoimmune disease. Autoimmune diseases are those in which the body is attacked by its own specific adaptive immune response. In normal, healthy states, the immune system induces tolerance, which is a lack of an anti-self immune response. However, with autoimmunity, there is a loss of immune tolerance, and the mechanisms responsible for autoimmune diseases include type II, III, and IV hypersensitivity reactions. Autoimmune diseases can have a variety of mixed symptoms that flare up and disappear, making diagnosis difficult. The causes of autoimmune disease are a combination of the individual's genetic makeup and the effect of environmental influences, such as sunlight, infections, medications, and environmental chemicals. However, the
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According to the evidence, autoimmune disease causes are a combination of genetics and what else?
- Vaccination history
- Environmental influences
- Age alone
- Blood type
Reveal answer
Answer: Environmental influences
Source evidence
PDF page 844: In 1970, artist Walt Kelly developed a poster promoting Earth Day, featuring a character from Pogo, his daily newspaper comic strip. In the poster, Pogo looks out across a litter-strewn forest and says wryly, “We have met the enemy and he is us.” Pogo was not talking about the human immune system, but he very well could have been. Although the immune system protects the body by attacking invading “enemies” (pathogens), in some cases, the immune system can mistakenly identify the body’s own cells as the enemy, resulting in autoimmune disease. Autoimmune diseases are those in which the body is attacked by its own specific adaptive immune response. In normal, healthy states, the immune system induces tolerance, which is a lack of an anti-self immune response. However, with autoimmunity, there is a loss of immune tolerance, and the mechanisms responsible for autoimmune diseases include type II, III, and IV hypersensitivity reactions. Autoimmune diseases can have a variety of mixed symptoms that flare up and disappear, making diagnosis difficult. The causes of autoimmune disease are a combination of the individual's genetic makeup and the effect of environmental influences, such as sunlight, infections, medications, and environmental chemicals. However, the
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Which cells are said to play an essential role in maintaining tolerance and preventing autoimmune responses?
- Regulatory T and B cells
- Red blood cells
- Platelets
- Epithelial cells
Reveal answer
Answer: Regulatory T and B cells
Source evidence
PDF page 845: vagueness of this list reflects our poor understanding of the etiology of these diseases. Except in a very few specific diseases, the initiation event(s) of most autoimmune states has not been fully characterized. There are several possible causes for the origin of autoimmune diseases and autoimmunity is likely due to several factors. Evidence now suggests that regulatory T and B cells play an essential role in the maintenance of tolerance and prevention of autoimmune responses. The regulatory T cells are especially important for inhibiting autoreactive T cells that are not eliminated during thymic selection and escape the thymus (see T Lymphocytes and Cellular Immunity). In addition, antigen mimicry between pathogen antigens and our own self antigens can lead to crossreactivity and autoimmunity. Hidden self-antigens may become exposed because of trauma, drug interactions, or disease states, and trigger an autoimmune response. All of these factors could contribute to autoimmunity. Ultimately, damage to tissues and organs in the autoimmune disease state comes as a result of inflammatory responses that are inappropriate; therefore, treatment often includes immunosuppressive drugs and corticosteroids.
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What can lead to cross-reactivity and autoimmunity when pathogen and self antigens resemble each other?
- Phagocytosis
- Fermentation
- Antigen mimicry
- Vaccination
Reveal answer
Answer: Antigen mimicry
Source evidence
PDF page 845: vagueness of this list reflects our poor understanding of the etiology of these diseases. Except in a very few specific diseases, the initiation event(s) of most autoimmune states has not been fully characterized. There are several possible causes for the origin of autoimmune diseases and autoimmunity is likely due to several factors. Evidence now suggests that regulatory T and B cells play an essential role in the maintenance of tolerance and prevention of autoimmune responses. The regulatory T cells are especially important for inhibiting autoreactive T cells that are not eliminated during thymic selection and escape the thymus (see T Lymphocytes and Cellular Immunity). In addition, antigen mimicry between pathogen antigens and our own self antigens can lead to crossreactivity and autoimmunity. Hidden self-antigens may become exposed because of trauma, drug interactions, or disease states, and trigger an autoimmune response. All of these factors could contribute to autoimmunity. Ultimately, damage to tissues and organs in the autoimmune disease state comes as a result of inflammatory responses that are inappropriate; therefore, treatment often includes immunosuppressive drugs and corticosteroids.
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Which is an example of an organ-specific autoimmune disease?
- Graves disease
- Systemic lupus erythematosus
- Rheumatoid arthritis
- Multiple sclerosis
Reveal answer
Answer: Graves disease
Source evidence
PDF page 845: Some autoimmune diseases are considered organ specific, meaning that the immune system targets specific organs or tissues. Examples of organ-specific autoimmune diseases include celiac disease, Graves disease, Hashimoto thyroiditis, type I diabetes mellitus, and Addison disease.
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What is the treatment for celiac disease?
- Thyroid hormone replacement
- Complete removal of gluten from the diet
- Insulin injections
- Corticosteroid creams
Reveal answer
Answer: Complete removal of gluten from the diet
Source evidence
PDF page 845: though they do not all display symptoms. This early recognition allows for more careful monitoring and prevention of severe disease. Celiac disease is treated with complete removal of gluten-containing foods from the diet, which results in improved symptoms and reduced risk of complications. Other theoretical approaches include breeding grains that do not contain the immunologically reactive components or developing dietary supplements that contain enzymes that break down
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Graves disease is the most common cause of what in the United States?
- Hyperthyroidism
- Diabetes
- Anemia
- Hypothyroidism
Reveal answer
Answer: Hyperthyroidism
Source evidence
PDF page 845: Disorders of the Thyroid Graves disease is the most common cause of hyperthyroidism in the United States. Symptoms of Graves disease result from the production of thyroid-stimulating immunoglobulin (TSI) also called TSH-receptor antibody. TSI targets and binds to the receptor for thyroid stimulating hormone (TSH), which is naturally produced by the pituitary gland. TSI may cause conflicting symptoms because it may stimulate the thyroid to make too much thyroid hormone or block thyroid hormone production entirely, making diagnosis more difficult. Signs and symptoms of Graves disease include heat intolerance, rapid and irregular heartbeat, weight loss, goiter (a swollen thyroid gland, protruding under the skin of the throat [Figure 19.13]) and exophthalmia (bulging eyes) often referred to as Graves
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The most common cause of hypothyroidism in the United States is:
- Type 1 diabetes
- Graves disease
- Addison disease
- Hashimoto thyroiditis
Reveal answer
Answer: Hashimoto thyroiditis
Source evidence
PDF page 846: ophthalmopathy (Figure 19.14). The most common cause of hypothyroidism in the United States is Hashimoto thyroiditis, also called chronic lymphocytic thyroiditis. Patients with Hashimoto thyroiditis often develop a spectrum of different diseases because they are more likely to develop additional autoimmune diseases such as Addison disease (discussed later in this section), type 1 diabetes, rheumatoid arthritis, and celiac disease. Hashimoto thyroiditis is a TH1 cell-mediated disease that occurs when the thyroid gland is attacked by cytotoxic lymphocytes, macrophages, and autoantibodies. This autoimmune response leads to numerous symptoms that include goiter (Figure 19.13), cold intolerance, muscle weakness, painful and stiff joints, depression, and memory loss.
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The destruction of β cells in type 1 diabetes causes a lack of what?
- Thyroid hormone
- Insulin production
- Acetylcholine
- Glucocorticoids
Reveal answer
Answer: Insulin production
Source evidence
PDF page 846: Type 1 Diabetes Juvenile diabetes, or type 1 diabetes mellitus, is usually diagnosed in children and young adults. It is a T-celldependent autoimmune disease characterized by the selective destruction of the β cells of the islets of Langerhans in the pancreas by CD4 TH1-mediated CD8 T cells, anti-β-cell antibodies, and macrophage activity. There is also evidence that viral infections can have either a potentiating or inhibitory role in the development of type 1 diabetes (T1D) mellitus. The destruction of the β cells causes a lack of insulin production by the pancreas. In T1D, β- cell destruction may take place over several years, but symptoms of hyperglycemia, extreme increase in thirst and urination, weight loss, and extreme fatigue usually have a sudden onset, and diagnosis usually does not occur until most β cells have already been destroyed.
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Addison disease is caused by destruction of which glands?
- Thyroid gland
- Adrenal glands
- Pituitary gland
- Pancreas
Reveal answer
Answer: Adrenal glands
Source evidence
PDF page 847: Autoimmune Addison Disease Destruction of the adrenal glands (the glands lying above the kidneys that produce glucocorticoids, mineralocorticoids, and sex steroids) is the cause of Addison disease, also called primary adrenal insufficiency (PAI). Today, up to 80% of Addison disease cases are diagnosed as autoimmune Addison disease (AAD), which is caused by an autoimmune response to adrenal tissues disrupting adrenal function. Disruption of adrenal function causes impaired metabolic processes that require normal steroid hormone levels, causing signs and symptoms throughout the body. There is evidence that both humoral and CD4 TH1-driven CD8 T-cell–mediated immune mechanisms are directed at the adrenal cortex in AAD. There is also evidence that the autoimmune response is associated with autoimmune destruction of other endocrine glands as well, such as the pancreas and thyroid, conditions collectively referred to as autoimmune polyendocrine syndromes (APS). In up to 80% of patients with AAD, antibodies are produced to three enzymes involved in steroid synthesis: 21-hydroxylase (21-OH), 17α-hydroxylase, and cholesterol
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Which is an example of a systemic autoimmune disease?
- Type 1 diabetes
- Systemic lupus erythematosus
- Graves disease
- Celiac disease
Reveal answer
Answer: Systemic lupus erythematosus
Source evidence
PDF page 848: more generalized, targeting multiple organs or tissues throughout the body. Examples of systemic autoimmune diseases include multiple sclerosis, myasthenia gravis, psoriasis, rheumatoid arthritis, and systemic lupus erythematosus.
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Multiple sclerosis affects which body system?
- Central nervous system
- Digestive system
- Urinary system
- Endocrine system
Reveal answer
Answer: Central nervous system
Source evidence
PDF page 848: Multiple Sclerosis Multiple sclerosis (MS) is an autoimmune central nervous system disease that affects the brain and spinal cord. Lesions in multiple locations within the central nervous system are a hallmark of multiple sclerosis and are caused by infiltration of immune cells across the blood-brain barrier. The immune cells include T cells that promote inflammation, demyelination, and neuron degeneration, all of which disrupt neuronal signaling. Symptoms of MS include visual disturbances; muscle weakness; difficulty with coordination and balance; sensations such as numbness, prickling, or “pins and needles”; and cognitive and memory problems.
Microbiology
Microbiology by OpenStax, used under CC BY 4.0. Changes made by Stratacademy.
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