European Journal of Clinical Nutrition 2012-08-14

Aluminium in parenteral nutrition: a systematic review.

Magnus Rueping, Estíbaliz Merino, Michael Bolte

文献索引:Eur. J. Clin. Nutr. 67(3) , 230-8, (2013)

全文:HTML全文

摘要

Aluminium (Al) toxicity problem in parenteral nutrition solutions (PNS) is decades old and is still unresolved. The aim of this review is to gather updated information about this matter, regarding legislation, manifestations, diagnostics and treatment, patient population at risk and the actions to be taken to limit its accumulation. A structured search using MeSH vocabulary and Title/Abstract searches was conducted in PubMed (http://www.pubmed.gov) up to November 2012. Al is ubiquitous, facilitating its potential for exposure. Nevertheless, humans have several mechanisms to prevent significant absorption and to aid its elimination; therefore, the vast majority of the population is not at risk for Al toxicity. However, when protective gastrointestinal mechanisms are bypassed (for example, parenteral fluids), renal function is impaired (for example, adult patients with renal compromise and neonates) or exposure is high (for example, long-term PNS), Al is prone to accumulate in the body, including manifestations such as impaired neurological development, Alzheimer's disease, metabolic bone disease, dyslipemia and even genotoxic activity. A high Al content in PNS is largely the result of three parenteral nutrient additives: calcium gluconate, inorganic phosphates and cysteine hydrochloride. Despite the legislative efforts, some factors make difficult to comply with the rule and, therefore, to limit the Al toxicity. Unfortunately, manufacturers have not universally changed their processes to obtain a lower Al content of parenteral drug products (PDP). In addition, the imprecise information provided by PDP labels and the high lot-to-lot variation make the prediction of Al content rather inaccurate.


相关化合物

  • 牛磺酸
  • α-酮戊二酸单钾盐

相关文献:

Development of High-purity Certified Reference Materials for 17 Proteinogenic Amino Acids by Traceable Titration Methods.

2015-01-01

[Anal. Sci. 31 , 805-14, (2015)]

Physiologic force-frequency response in engineered heart muscle by electromechanical stimulation.

2015-08-01

[Biomaterials 60 , 82-91, (2015)]

Sulfur amino acid metabolism in Zucker diabetic fatty rats.

2015-08-01

[Biochem. Pharmacol. 96 , 256-66, (2015)]

HMDB: a knowledgebase for the human metabolome.

2009-01-01

[Nucleic Acids Res. 37(Database issue) , D603-10, (2009)]

Prediction of skeletal muscle and fat mass in patients with advanced cancer using a metabolomic approach.

2012-01-01

[J. Nutr. 142(1) , 14-21, (2012)]

更多文献...