Metabolic acidosis: Difference between revisions
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== | == Background == | ||
*Always determine whether there is a primary respiratory acidosis as well | |||
*PCO2 = (1.5 x [HCO3–] + 8) ± 2 | **PCO2 (expected) = (1.5 x [HCO3–] + 8) ± 2 | ||
*In acute setting PCO2 should fall by 1 mmHg for every 1 mEq fall in HCO3 | **In acute setting PCO2 should fall by 1 mmHg for every 1 mEq fall in HCO3 | ||
== DDX == | == DDX == | ||
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== Treatment == | == Treatment == | ||
#Treat source | |||
Treat source | #Correct any respiratory acidosis | ||
#Each bicarb 0.5mEq/kg causes 1 meq/L rise in HCO3 | |||
=== Bicarbonate Indications === | === Bicarbonate Indications === | ||
#Bicarb <4 | #Bicarb <4 | ||
#pH <7. | #pH <7.20 + Sx shock/myocardial irritability | ||
#Severe hyperchloremic acidemia | #Severe hyperchloremic acidemia | ||
##Lost bicarbonate would take days to replenish | |||
== Source == | == Source == | ||
Tintinalli | |||
[[Category:FEN]] | |||
Revision as of 02:44, 27 April 2011
Background
- Always determine whether there is a primary respiratory acidosis as well
- PCO2 (expected) = (1.5 x [HCO3–] + 8) ± 2
- In acute setting PCO2 should fall by 1 mmHg for every 1 mEq fall in HCO3
DDX
Gap
- Lactic acidosis
- Sepsis, shock, liver dz, CO, CN, metformin, methemoglobin
- Renal failure
- Uremia
- Ketoacidosis
- DKA, AKA, starvation
- Ingestions
- Inc osm gap
- Methanol, ethylene glycol
- Nl osm gap
- Salicylates
- Inc osm gap
Non-gap
- Hyperkalemia
- Resolving DKA
- Early uremic acidosis
- Early obstructive uropathy
- RTA Type IV
- Hypoaldo
- K-sparing diuretics
- Hypokalemia
- RTA Type I
- RTA Type II
- Acetazolamide
- Acute diarrhea
- (May be assoc with gap if hypoperfusion -> lactic acidosis)
Treatment
- Treat source
- Correct any respiratory acidosis
- Each bicarb 0.5mEq/kg causes 1 meq/L rise in HCO3
Bicarbonate Indications
- Bicarb <4
- pH <7.20 + Sx shock/myocardial irritability
- Severe hyperchloremic acidemia
- Lost bicarbonate would take days to replenish
Source
Tintinalli
