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NUR 631/NUR631 Exam 2 V2 | Advanced Physiology and Pathophysiology Q&A with Rationale | Grand Canyon University

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NUR 631/NUR631 Exam 2 V2 | Advanced Physiology and Pathophysiology Q&A with Rationale | Grand Canyon University

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NUR 631/NUR631 Exam 2 V2 | Advanced
Physiology and Pathophysiology Q&A with
Rationale | Grand Canyon University
1. A patient presents with persistent hypertension and hypokalemia. Lab results show

elevated aldosterone and low renin levels. Which condition is most likely?

A. Conn Syndrome


B. Addison’s Disease


C. Cushing’s Disease


D. Pheochromocytoma


Answer: A


Rationale: Conn Syndrome, also known as primary hyperaldosteronism, is characterized

by excessive aldosterone production regardless of renin levels. This leads to increased

sodium reabsorption and potassium excretion in the kidneys. The suppressed renin levels

occur as a compensatory response to the fluid volume expansion and hypertension.


2. Which mechanism is primary in the development of Type 1 Diabetes Mellitus?

A. Insulin resistance in peripheral tissues


B. Down-regulation of insulin receptors


C. Excessive glucagon secretion from alpha cells


D. Autoimmune destruction of pancreatic beta cells

,Answer: D


Rationale: Type 1 Diabetes is primarily caused by a T-cell mediated autoimmune attack on

the insulin-producing beta cells of the pancreas. This destruction results in an absolute

insulin deficiency, requiring exogenous insulin administration. It is often associated with

specific HLA genotypes and autoantibodies such as GAD65.


3. Which part of the nephron is responsible for the majority of water and solute

reabsorption?

A. Proximal convoluted tubule


B. Loop of Henle


C. Distal convoluted tubule


D. Collecting duct


Answer: A


Rationale: The proximal convoluted tubule is the site where approximately 65 to 70

percent of filtered sodium and water are reabsorbed. It also handles the reabsorption of

glucose, amino acids, and bicarbonate. The extensive microvilli on the luminal surface of

these cells provide a large surface area for this intensive transport activity.


4. In the presence of Antidiuretic Hormone (ADH), what change occurs in the collecting duct?

A. Sodium channels are closed


B. Calcium reabsorption is inhibited

, C. Permeability to urea is decreased


D. Aquaporin-2 channels are inserted into the apical membrane


Answer: D


Rationale: ADH binds to V2 receptors on the basolateral membrane of collecting duct cells,

initiating a second messenger cascade. This cascade results in the translocation of

aquaporin-2 water channels to the apical membrane. This significantly increases the

permeability of the duct to water, allowing for the concentration of urine.


5. A patient’s ABG results show: pH 7.25, PaCO2 55 mmHg, and HCO3 26 mEq/L. This

indicates:

A. Metabolic Acidosis


B. Respiratory Alkalosis


C. Metabolic Alkalosis


D. Respiratory Acidosis


Answer: D


Rationale: A pH below 7.35 indicates acidosis, while a PaCO2 above 45 mmHg indicates a

respiratory cause. Since the bicarbonate level is within or near the normal range, it

suggests that compensation has not yet occurred or is incomplete. This pattern is classic for

acute respiratory failure or hypoventilation.

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