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NR283 Pathophysiology Complete Exam Study Guide — Cell Damage, Fluids & Electrolytes, Immunity, Infection & Cancer | Chamberlain Nursing

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Struggling to keep up with NR283 Pathophysiology at Chamberlain? This comprehensive exam study guide covers every major concept tested in NR283 — organized in a clean flashcard-style Q&A format so you can study smarter, not longer. What's inside this guide: Cell damage stages — reversible vs. irreversible, ischemia, hypoxia, necrosis Fluid compartments (ICF/ECF), osmosis, hydrostatic vs. osmotic pressure Electrolyte imbalances — hyponatremia, hypernatremia, hypokalemia, hypocalcemia with causes & symptoms Acid-base balance — normal pH, respiratory acidosis/alkalosis, compensatory mechanisms Edema, dehydration — causes, signs, and clinical significance ADH, Aldosterone, ANP — roles in fluid regulation explained clearly Inflammation steps, local vs. systemic effects, types of healing Infection chain of transmission, stages of disease, nosocomial infections Immune system — B vs. T lymphocytes, Ig classes (IgA, IgE, IgG), immunity types Hypersensitivity types I–IV (anaphylaxis, tissue-specific, immune complex, cell-mediated) Cancer warning signs, risk factors, benign vs. malignant, invasion vs. metastasis Burns — classification, rule of 9s, systemic effects

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NR283 Pathophysiology Complete Exam Study Guide — Cell Damage,
Fluids & Electrolytes, Immunity, Infection & Cancer | Chamberlain
Nursing
Hypertrophy Increase in cell size - results in enlarged tissue mass




Causes of hypertrophy Additional work by the tissue
Excessive hormonal stimulation



Examples of hypertrophy Enlarged heart resulting from increased demands
Effect of consistent exercise on skeletal muscle, leading to an enlarged
muscle mass


Atrophy Decrease in cell size - results in reduced tissue mass




Causes of atrophy Reduced use of the tissue
Insufficient nutrition
Decreased neurologic or hormonal
stimulation Aging


Example of atrophy Shrinkage of skeletal muscle that occurs when a limb is immobilized in
a cast for several weeks



Hyperplasia Increase in number of cells - results in enlarged tissue mass




Cause of hyperplasia Compensatory mechanism to meet increased demand or pathologic
when there is hormonal imbalance
a



In some cases and can occur Hyperplasia and hypertrophy
simultaneously, as in the uterine enlargement
that occurs during pregnancy


Metaplasia Mature cell type that is replaced by a different mature cell
type Adaptive mechanism that provides more resistance
tissue


Example of metaplasia Smoker cells




Dysplasia Abnormal growth or development of a tissue or
organ Cells vary in size and shape within a tissue
Large nuclei are frequently
present Rate of mitosis is
increased

Causes of dysplasia Chronic irritation
Infection
Precancerous
change

Neoplasia "New growth" or tumor

, Most common cause of cell damage Ischemia




Hypoxia Deficiency in amount of oxygen in the tissues




Causes of cell damage - Ischemia

- Hypoxia

- Physical damage (excessive heat or cold; radiation exposure)

- Mechanical damage (pressure of tearing tissue)

- Chemical toxins

- Microorganisms

- Abnormal metabolites

- Nutritional deficits

- Imbalance of fluids or electrolytes

Stages of cell damage Reversible and irreversible




Reversible cell damage Alteration of metabolic reaction, temporary loss of function




Irreversible cell damage Cell dies




Necrosis Group of cells die




Fluid compartments Intercellular fluid (ICF)

compartment Extracellular fluid

(ECF) compartment


Extracellular fluid compartments Intravascular fluid (IVF) or

blood/plasma Interstital fluid (ISF)

or intercellular fluid


Control of Fluid Balance - the thirst mechanism in the hypothalmus

- Antidiuretic Hormone (ADH)

-Aldosterone

- Atrial Natriuretic Peptide (ANP)

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