Aluminum Contamination in Parenteral Nutrition Admixtures for Low-Birth-Weight Preterm Infants in Mexico

Victoria Lima-Rogel1, Silvia Romano-Moreno2, Esperanza de Jesús López-López2

  • 1Neonatology Unit, Hospital Central Dr Ignacio Morones Prieto and Faculty of Medicine, University of San Luis Potosí, México.

Insights

Aluminum contamination in intravenous solutions is a significant risk for preterm infants. Key components like cysteine, trace elements, and phosphate salts are major sources, exceeding safe intake levels.

Area of Science:

  • Clinical Chemistry
  • Pediatric Nutrition
  • Toxicology

Background:

  • Aluminum contamination in intravenous solutions poses a significant clinical and biochemical challenge.
  • Elevated aluminum intake is linked to metabolic bone disease, anemia, cholestasis, and neurocognitive issues.
  • Low-birth-weight preterm infants (LBWPIs) are particularly vulnerable to aluminum toxicity.

Purpose of the Study:

  • To quantify aluminum presence in parenteral nutrition (PN) components used in Mexico.
  • To compare measured aluminum levels against FDA recommended intake limits.
  • To identify primary sources of aluminum contamination in PN admixtures.

Main Methods:

  • Analysis of aluminum content in various PN components, including cysteine, trace elements, levocarnitine, phosphate, and calcium salts.
  • Calculation of total aluminum intake for hypothetical LBWPIs based on PN admixtures.
  • Comparison of calculated aluminum intake with FDA maximal recommended intake.

Main Results:

  • Cysteine, trace elements, phosphate, and calcium salts showed significant aluminum contamination.
  • Calculated aluminum intake for LBWPIs exceeded FDA recommendations, especially for very low birth weight infants.
  • Substituting sodium phosphate for potassium phosphate reduced aluminum intake by 52.7%, but calcium gluconate remained a primary source.

Conclusions:

  • Cysteine, trace elements, phosphate, and gluconate salts are principal aluminum sources in Mexican PN preparations.
  • While phosphate salt substitution lowers aluminum intake, it doesn't eliminate contamination risks.
  • Investigating mineral salts in plastic vials is recommended to further mitigate aluminum exposure.
Abstract

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