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Acetazolamide

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Intro to Pharmacology

Definition

Acetazolamide is a carbonic anhydrase inhibitor primarily used as a diuretic, impacting renal function by reducing bicarbonate reabsorption in the proximal tubule of the kidneys. This leads to increased excretion of bicarbonate, sodium, and water, making it effective in conditions like glaucoma, altitude sickness, and edema related to certain types of heart failure. Its ability to alter acid-base balance is a significant feature in various therapeutic settings.

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5 Must Know Facts For Your Next Test

  1. Acetazolamide is commonly prescribed for treating glaucoma by reducing intraocular pressure through its diuretic effect.
  2. It can help prevent or treat altitude sickness by promoting bicarbonate loss, which helps to correct respiratory alkalosis associated with high altitude.
  3. Due to its mechanism of action, acetazolamide can cause metabolic acidosis as it increases bicarbonate loss from the kidneys.
  4. The drug is also utilized for managing certain types of edema related to heart failure and other conditions where fluid retention occurs.
  5. Patients using acetazolamide may experience side effects such as tingling in the extremities, dizziness, or gastrointestinal disturbances.

Review Questions

  • How does acetazolamide's mechanism of action affect renal function and electrolyte balance?
    • Acetazolamide works by inhibiting carbonic anhydrase in the proximal tubule of the nephron, leading to decreased reabsorption of bicarbonate. This inhibition causes an increase in bicarbonate, sodium, and water excretion, which impacts overall fluid balance and electrolyte levels. By promoting diuresis, acetazolamide effectively helps manage conditions such as edema and hypertension.
  • What are the clinical applications of acetazolamide beyond its use as a diuretic?
    • In addition to its diuretic properties, acetazolamide is used clinically for various conditions such as glaucoma, where it lowers intraocular pressure. It is also effective in preventing altitude sickness by correcting respiratory alkalosis caused by high altitudes. Furthermore, acetazolamide may be utilized for specific types of metabolic acidosis and for treating certain forms of epilepsy due to its ability to influence acid-base balance.
  • Evaluate the potential risks and benefits of using acetazolamide in patients with renal impairment.
    • Using acetazolamide in patients with renal impairment carries both risks and benefits. On one hand, it may exacerbate metabolic acidosis due to reduced renal function, leading to further complications. However, the drug can be beneficial in managing fluid overload or hypertension even in these patients. Careful monitoring of electrolyte levels and kidney function is essential to minimize adverse effects while maximizing therapeutic benefits.

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