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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.
Background:
Aluminum contamination from intravenous solutions still represents an unsolved clinical and biochemical problem. Increased aluminum intake constitutes a risk factor for the development to metabolic bone disease, anemia, cholestasis, and neurocognitive alterations. Low-birth-weight preterm infants (LBWPIs) are one of the most exposed populations for aluminum toxicity.
Methods:
To determine the presence of aluminum in components employed in the preparation of parenteral nutrition (PN) admixtures in Mexico and compare with the maximal aluminum recommended intake from the Food and Drug Administration.
Results:
Cysteine, trace elements, levocarnitine, phosphate, and calcium salts tested positive for aluminum contamination. All components analyzed were contained in glass vials. Total aluminum intake for 2 sample PN admixtures were calculated in basis to cover nutrition requirements of 2 hypothetical LBWPIs. Aluminum contents, stratified in micrograms per kilogram of weight, exceeded maximal aluminum recommendations, particularly for the very LBWPIs. Substituting sodium phosphate for potassium phosphate salts reduced aluminum intake by 52.7%. Calcium gluconate was the leading aluminum contamination source and confers the greatest risk for aluminum overdose, even with the salt substitution of potassium phosphate by sodium phosphate salts. Adding cysteine and trace elements might increase aluminum content in PN admixtures.
Conclusion:
Cysteine, trace elements, phosphate, and gluconate salts are the main sources of aluminum in PN prepared in Mexico. Substituting sodium phosphate for potassium phosphate salts reduces aluminum intake but does not resolve aluminum contamination risk. Mineral salts contained in plastic vials should be explored as an additional measure to reduce aluminum contamination.
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