Doctors Revision

Diuretics: Pharmacology, Classes, Uses, Adverse Effects & Nursing Considerations

Core Pharmacology

Diuretics: remove sodium and water safely—treat congestion without causing collapse

Diuretics increase renal sodium excretion (natriuresis); water follows sodium, producing diuresis. They rapidly relieve oedema and pulmonary congestion, but they do not replace disease-modifying heart-failure therapy. Correct class selection, fluid assessment and electrolyte monitoring are what make them safe.

1. The renal map: where each class acts

Nephron site Drug class Target Key effect
Proximal tubule Carbonic anhydrase inhibitor Carbonic anhydrase Bicarbonate-rich urine; weak diuresis
Thick ascending limb Loop diuretic Na-K-2Cl cotransporter (NKCC2) Most powerful natriuresis; calcium and magnesium loss
Early distal tubule Thiazide/thiazide-like Na-Cl cotransporter (NCC) Moderate diuresis; calcium retention
Collecting duct Potassium-sparing Aldosterone receptor or ENaC Mild diuresis; potassium retention
Whole nephron Osmotic Filtered osmoles Water loss; expands extracellular fluid first

Core principle: where sodium goes, water follows. A diuretic is therefore mainly a sodium-management drug, not simply a “urine-making” drug.

2. Classification and quick selection

Loop diuretics

Furosemide, bumetanide, torsemide. Best for acute pulmonary oedema, significant heart-failure congestion, severe oedema, and low eGFR states.

Thiazides

Hydrochlorothiazide, chlorthalidone, indapamide. Important for hypertension; add-on to loops for resistant oedema.

Mineralocorticoid receptor antagonists

Spironolactone, eplerenone. Potassium-sparing and disease-modifying in eligible HFrEF—not merely “weak diuretics.”

Other potassium-sparing

Amiloride and triamterene block ENaC; useful with potassium-wasting drugs and selected specific conditions.

3. Loop diuretics: furosemide is the acute-congestion workhorse

Mechanism: blockade of NKCC2 in the thick ascending limb prevents sodium, potassium and chloride reabsorption. Loops are “high-ceiling”: larger doses can create greater natriuresis, but safety limits remain.

Common use Typical adult approach* Expected problems Bedside priority
Acute pulmonary oedema/acute HF congestion Furosemide 20–40 mg IV in diuretic-naïve adults; dose/route must be individualised Hypotension, AKI/azotaemia, low K/Mg/Na, alkalosis, gout, ototoxicity Monitor response early: breathlessness, urine output, weight, BP, renal function and electrolytes
Chronic oedema Oral furosemide, bumetanide or torsemide; lowest dose that maintains euvolaemia Over-diuresis, adherence problems, interactions Teach daily weights, sick-day review and when to seek help

*Educational examples only; use local protocols, product information and prescriber review. Excessive furosemide can cause profound water/electrolyte depletion. Rapid IV administration, high doses and renal impairment increase the risk of tinnitus/hearing injury.

Important: a rise in creatinine during effective decongestion requires clinical interpretation. Look at BP, perfusion, congestion, urine output and trend—do not reflexively stop a lifesaving decongestion plan or ignore hypotension/true volume depletion.

4. Thiazide and thiazide-like diuretics

Mechanism: inhibit NCC in the early distal convoluted tubule. They lower blood pressure initially through sodium/water loss and later through reduced peripheral resistance. Examples are hydrochlorothiazide, chlorthalidone and indapamide.

  • Best uses: hypertension, mild oedema, nephrogenic diabetes insipidus, prevention of calcium renal stones in hypercalciuria, and add-on “sequential nephron blockade” when loop response is poor.
  • Adverse effects: hypokalaemia, hyponatraemia, hypomagnesaemia, dehydration, hyperuricaemia/gout, hyperglycaemia, photosensitivity and erectile dysfunction.
  • Calcium: thiazides reduce urinary calcium, unlike loops. This helps distinguish the classes.
  • Safety: severe hyponatraemia can present with confusion, seizure or collapse—check sodium urgently in an unwell patient.

5. Potassium-sparing diuretics: do not overlook hyperkalaemia

Subgroup Examples Mechanism Major caution
Aldosterone antagonist (MRA) Spironolactone, eplerenone Blocks mineralocorticoid receptor Hyperkalaemia, renal impairment; spironolactone can cause gynaecomastia
ENaC blocker Amiloride, triamterene Blocks epithelial sodium channel Hyperkalaemia; avoid unsafe combinations

MRAs improve outcomes in appropriately selected HFrEF patients. Before starting or increasing, check potassium and renal function; repeat testing after initiation and dose changes. Combining an MRA with ACE inhibitor/ARB/ARNI or potassium supplements may be appropriate only with deliberate monitoring—not by accident.

6. Less common but examinable classes

  • Acetazolamide: carbonic anhydrase inhibitor; causes bicarbonate loss and metabolic acidosis. Uses include glaucoma, acute mountain sickness, selected metabolic alkalosis and adjunctive decongestion. Can cause paraesthesia, renal stones and sulfonamide-related reactions.
  • Mannitol: osmotic diuretic used to reduce raised intracranial/intraocular pressure in selected patients. It initially expands intravascular volume and may worsen pulmonary oedema; avoid in anuria, severe dehydration or uncontrolled HF/pulmonary congestion.
  • Vaptans: vasopressin antagonists produce aquaresis (water loss more than sodium loss); specialist use in selected hyponatraemia settings.

7. Diuretics in heart failure: a safe practical sequence

  1. Confirm congestion: dyspnoea, orthopnoea, raised JVP, oedema, crackles, weight gain, hepatomegaly or pulmonary oedema.
  2. Check perfusion and BP. Cold/hypotensive patients may have cardiogenic shock and need urgent escalation—not just escalating diuretic doses.
  3. Give loop diuretic for fluid overload, reassess urine output and symptoms, and monitor fluid balance/weight.
  4. If response is inadequate, review dose, adherence, absorption, renal function, salt intake, NSAIDs and diagnosis. Sequential nephron blockade may be prescribed by an experienced clinician, with closer electrolyte checks.
  5. Once euvolaemic, use the lowest maintenance loop dose and optimise disease-modifying HFrEF therapy where indicated.

Diuretics mainly improve symptoms and prevent congestion-related admission; they do not by themselves reverse the underlying cardiomyopathy.

8. Nursing monitoring and patient education

Monitor Why it matters Escalate urgently if
BP, pulse, postural symptoms Over-diuresis causes hypotension/falls Syncope, shock, symptomatic hypotension
Input/output, daily weight, oedema, lungs Measures decongestion better than one urine measurement Worsening breathlessness/pulmonary oedema or very low urine output
Na, K, Mg, creatinine/eGFR, bicarbonate Detects electrolyte and renal injury Severe K/Na disturbance, arrhythmia, confusion or seizure
Hearing (high-dose/rapid IV loop) Early ototoxicity detection Tinnitus or sudden hearing change
  • Give oral doses early in the day when possible; explain nocturia if a late dose is unavoidable.
  • Daily weight is more useful than guessing fluid retention. Agree a local action plan for rapid gain, worsening oedema or breathlessness.
  • Avoid self-medicating with NSAIDs: they can blunt diuretic effect and worsen renal function.
  • Do not advise potassium supplements or salt substitutes containing potassium without prescriber direction.

9. High-yield comparisons and cases

Loop vs thiazide

Loop: strongest, loses calcium, preferred for major HF congestion. Thiazide: excellent antihypertensive, retains calcium, more likely to cause hyponatraemia.

Case: spironolactone

HFrEF patient on ACE inhibitor develops weakness and K 6.2 mmol/L. Answer: urgent assessment for hyperkalaemia/ECG changes; withhold relevant drugs as directed and treat using local emergency protocol.

Case: furosemide

After IV furosemide a patient becomes dizzy, hypotensive and dry with low K. Answer: suspect over-diuresis; assess perfusion, hold/reduce under prescriber direction and correct fluid/electrolytes.

References

  • Supplied class reference: Diuretics (SlideShare).
  • 2022 AHA/ACC/HFSA Heart Failure Guideline; 2021 ESC Heart Failure Guideline.
  • DailyMed: furosemide and hydrochlorothiazide prescribing information.

Educational resource; use local protocols and patient-specific prescribing review.

Leave a Comment

Your email address will not be published. Required fields are marked *

Scroll to Top