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Updated: May 4, 2026

A Model of Chronic Nutrient Infusion in the Rat
Published on: August 14, 2013
Elemental balances during intravenous hyperalimentation of underweight adult subjects
Insights
Intravenous hyperalimentation requires specific nutrient balances for effective weight gain in underweight adults. Deficiencies in nitrogen, phosphorus, sodium, or potassium impair the repletion of protoplasm and extracellular fluid, impacting overall body composition.
Area of Science:
- Clinical Nutrition
- Metabolic Research
- Parenteral Nutrition
Background:
- Underweight adults often require nutritional support to restore body mass.
- Intravenous hyperalimentation (IVH) is a method for delivering nutrients directly into the bloodstream.
- The composition of IVH solutions critically influences patient outcomes.
Purpose of the Study:
- To investigate the impact of elemental composition in IVH on body weight gain and composition in underweight adults.
- To determine the specific roles of nitrogen (N), phosphorus (P), potassium (K), and sodium (Na) in nutrient retention during IVH.
Main Methods:
- Eleven underweight adults received IVH with a "complete formula" for six days.
- Nutrient intake, body weight changes, and elemental balances (N, P, K, Na, Cl, Ca, Mg) were meticulously monitored.
- Standard equations were applied to elemental balances to estimate the composition of weight gain.
Main Results:
- Patients gained an average of 9.0 g/kg ideal body weight per day with a complete formula, showing positive elemental balances.
- Withdrawal of N, P, Na, or K significantly impaired or abolished the retention of other essential elements.
- Weight gain occurred even with negative elemental balances when certain nutrients were lacking, but this gain was primarily adipose tissue.
Conclusions:
- The quality of weight gained during IVH is directly dependent on the elemental composition of the infusate.
- Repletion of protoplasm and extracellular fluid is hindered by deficiencies in N, P, Na, or K.
- Bone mineral repletion requires Na and P, but can proceed without N, K, or Cl.
Abstract:
Intravenous hyperalimentation was done in 11 underweight adults whose body weight (body wt) was less than 85 percent of ideal. For the first 6 days, "complete formula" was infused furnishing per kilogram ideal body wt per day: 15 g glucose, 0.40 g N, 0.018 g P, 2.4 meq K, 3.0 meq Na, 2.3 meq C1, 0.5 meq Mg, 0.45 meq Ca, and 50 ml H20. Patients gained weight at an average rate of 9.0 g/kg ideal body wt/day and showed average balances/kilogram ideal body wt/day as follows: plus 0.14 g N; plus 0.012 g P; plus 0.43 meq K; plus 0.49 meq Na; plus 0.37 meq Cl; and plus 0.085 meq Ca. Application of standard equations to the elemental balances indicated weight gain consisted of 35-50 percent protoplasm, 35-50 percent extracellular fluid, 5-25 percent adipose tissus, and less than 1 percent bone. Withdrawas of N, P, Na, or K impaired or abolished retention of other elements. Removal of N halted retention P, K, Na and C1; withdrawal of K stopped retention of N and P; and removal of Na or P interrupted retention of all other elements. Weight gain continued at a rate of 1.4-3.1 g/kg ideal body wt/day despite zero or negative elemental balances of N, K, P, and sometimes Na and C1. Calculations showed that weight gain during infusion of fluids lacking N, P, K, or Na consisted largely of adipose tissue, with little or no contribution by protoplasm or extracellular fluid. Data show that repletion of protoplasm and extracellular fluid of wasted adults by intravenous hyperalimentation is retarded or abolished if N, P, Na, or K is lacking. Repletion of bone mineral does not occur in absence of Na or P but proceeds in absence of N, P, K, or Na. Thus, quality of weight gained by underfed adult patients during hyperalimentation depends on elemental composition of the infusate.
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