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NR507 Week 1 Final Exam eDapt Guide – Understanding Hypersensitivity Types

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Prepare for the NR507 Week 1 Final Exam with this focused eDapt study guide covering the fundamentals of hypersensitivity reactions. Designed to support advanced pathophysiology review, this resource helps students understand the mechanisms, classifications, clinical manifestations, and underlying immune processes associated with different types of hypersensitivity. Key review areas include Type I, Type II, Type III, and Type IV hypersensitivity reactions, along with the immune mechanisms involved in each classification. The guide can help reinforce the roles of antibodies, immune cells, inflammatory mediators, antigen exposure, and tissue responses while connecting pathophysiologic mechanisms to representative clinical conditions. Use this NR507 Week 1 eDapt Guide for independent study, classroom review, quiz preparation, or final-exam revision. Practice-focused review can help strengthen recall, distinguish between hypersensitivity classifications, and improve understanding of how immune responses contribute to disease processes and patient manifestations. For the most effective preparation, combine this resource with your assigned NR507 textbook, eDapt activities, lecture materials, course objectives, and instructor guidance. This study guide provides an organized way to review hypersensitivity concepts and build a stronger foundation in advanced pathophysiology.

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NR507 week 1 edapt guide


Advanced Pathophysiology (Chamberlain University)




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Week 1:Edapt Notes
1.

-Immediate hypersensitivity is mediated by IgE antibodies, which resulting an allergy, anaphylaxis, or
atopic disease. The NP should expect the client to have a type 1 hypersensitivity to recent medication
use, which can include these immediate reactions as clinical manifestations: urticaria, wheezing,
vomiting, and diaphoresis.



2. _____ are the primary effector cells and are responsible for initiating and mediating _____
hypersensitivity reactions.



- Mast cells, type 1

characterized by the rapid release of proinflammatory mediators like histamines, leukotrienes, and
cytokines in response to allergen exposure, mast cells are the primary effector cells responsible for
initiating and mediating type 1 hypersensitivity reactions.



3. ____ hypersensitivity reactions involve the formation of _______ that can deposit in tissues, leading
to complement activation, inflammation, and tissue destruction.

-Type 3, immune complexes

- Type 3 hypersensitivity reactions involve the formation of immune complexes that can deposit in
tissues, leading to complement activation and inflammation. This process can cause tissue damage and is
associated with systemic lupus erythematosus (SLE) and serum sickness. Type 1 reactions are mediated
by IgE antibodies, and type 2 are mediated by IgG or IgM antibodies. Type 4 reactions are activated by T-
helper cells.




Type 1 = Mediated by IgE antibodies




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Anaphylactic Reaction

1. Antigen
2. B-cell
3. Plasma cell
4. IgE
5. Mast cell
6. Histamine
A type 1 reaction is mediated by IgE antibodies.




Type 2 = mediated by IgG or IgM antibodies

1. Anti-A antibodies in type B blood mix with type A blood
2. Antibodies attach to surface antigen of type A RBC
3. Complement activated; type A RBC cell wall attacked
4. Lysis of type A RBC
5. Phagocytosis
A type 2 cytotoxic reaction is mediated by IgG or IgM antibodies.




Type 3 = mediated by immune complexes




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1. Antibodies bind to antigens
2. Immune complexes form
3. Complexes deposit in blood vessels or tissues
4. Activation of complement
5. Inflammatory response at the site of deposit
6. Release of lysosomal enzymes and chemical mediators
7. Tissue damage
A type 3 reaction is mediated by immune complexes .




Type 4 = mediated by cellular response.

1. Macrophage presents antigen
2. Sensitization of T lymphocyte
3. Release of lymphokines
4. Inflammation and lysis of antigen-bearing cells in the tissue
5. Tissue destruction
A type 4 delayed reaction is mediated by cellular response.




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