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Interpretation

Anion Gap and Acid-Base Interpretation

Use the anion gap, delta ratio, and compensation rules to interpret metabolic acid-base disorders.

8 min read Clinical Chemistry
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Educational Interpretation Only

Educational Interpretation Only: This content is for educational purposes and explains common laboratory result patterns. It does not constitute medical advice or diagnosis. Always interpret laboratory results in the context of the patient's clinical condition and consult with a qualified healthcare professional.

Anion Gap and Acid-Base Interpretation

The anion gap (AG = Na - Cl - HCO3) separates metabolic acidoses that accumulate unmeasured anions from those that do not.

Gap classification

  • High anion gap acidosis: lactate, ketoacids, renal failure (urate/sulfate/phosphate), toxins (methanol, ethylene glycol, salicylate).
  • Normal (hyperchloremic) anion gap acidosis: GI bicarbonate loss (diarrhea), renal tubular acidosis, early renal disease, acetazolamide; urine anion gap distinguishes renal (positive) from GI (negative) ammonium handling.
  • Delta ratio: AG/24 - HCO3 — a ratio near 1-2 suggests a simple high-gap acidosis; a ratio under 1 suggests a coexisting hyperchloremic acidosis; over 2 suggests a coexisting alkalosis.

Respiration

Hypocapnia is the normal compensation for metabolic acidosis (expected pCO2 ~ 1.5 x HCO3 + 8). Failure to compensate suggests a mixed disorder.

Correction

Hypoalbuminemia lowers the gap (albumin is a negatively charged protein); add 2.5 to the gap for every 1 g/dL albumin below 4.0 g/dL.

Clinical Context

Acid-base interpretation requires simultaneous sodium, chloride, bicarbonate, and an assessment of the respiratory response. The anion gap and delta ratio localize the anion responsible for the acidosis.

Related Analytes

  • Sodium
  • Chloride
  • CO2
  • Albumin
  • Lactate
  • Osmolality