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Intravenous sodium bicarbonate is indicated in the treatment of metabolic acidosis, such as can occur in severe kidney disease, diabetic ketoacidosis [citation needed], circulatory insufficiency, extracorporeal circulation of blood, in hemolysis requiring alkalinization of the urine to avoid nephrotoxicity of blood pigments, and certain drug intoxications, such as by barbiturate overdose ...
Renal compensation is a mechanism by which the kidneys can regulate the plasma pH. It is slower than respiratory compensation, but has a greater ability to restore normal values. Kidneys maintain the acid-base balance through two mechanisms: (1) the secretion of H + ions into the urine (from the blood) and (2) the reabsorption of bicarbonate ...
Metabolic alkalosis is an acid-base disorder in which the pH of tissue is elevated beyond the normal range (7.35–7.45). This is the result of decreased hydrogen ion concentration, leading to increased bicarbonate (HCO − 3), or alternatively a direct result of increased bicarbonate concentrations.
Throughout treatment, blood glucose and potassium levels should be regularly checked. [1] Underlying causes for the DKA should be identified. [6] In those with severely low blood pH who are critically ill, sodium bicarbonate may be given; however, its use is of unclear benefit and typically not recommended. [1] [6] Rates of DKA vary around the ...
The mainstay of treatment is large quantities of intravenous fluids. [3] Other treatments may include dialysis or hemofiltration in more severe cases. [4] [10] Once urine output is established, sodium bicarbonate and mannitol are commonly used but they are poorly supported by the evidence. [3] [4] Outcomes are generally good if treated early. [3]
Milk-alkali syndrome is an illness that is characterized by hypercalcaemia, kidney damage, and metabolic alkalosis. [17] This syndrome was discovered in the early 1900s when people began experiencing adverse effects from Bertrand Sippy's gastric ulcer treatment consisting of milk and alkali.