PFAT5 and the evolution of lipid admixture stability Journal Article


Author: Klang, M. G.
Article Title: PFAT5 and the evolution of lipid admixture stability
Abstract: PFAT5 is defined by United States Pharmacopeia Chapter 729 as follows: the percentage of fat residing in globules larger than 5 μm (PFAT5) for a given lipid injectable emulsion [is] not to exceed 0.05%. The unstable aggregates are trapped in lungs, liver, and the reticuloendothelial system. Large particles will accumulate in pulmonary capillaries, which are between 4 and 9 μm in diameter. Over the years, there has been an evolution of methods to characterize and define intravenous fat emulsion (IVFE) stability when combined as a total nutrient admixture (TNA). Many studies have claimed IVFE stability measuring mean particle size, zeta potential, and visual checks. Interestingly, none of the studies that claimed the TNA as stable identified an unstable one through testing. This report reviews those parameters and shows they were not a valid measure of lipid stability. The PFAT5 parameter has emerged as the only validated measure of lipid stability. There are clinical consequences of using lipids that exceed the PFAT5 limit. This parameter is applicable to both manufactured and compounded lipid preparations. The clinician should be aware of the limitations of much of the literature concerning the lipid stability assessment. More stability studies are needed using PFAT5 to identify the actual limits of TNA compounding. © The American Society for Parenteral and Enteral Nutrition.
Keywords: fatty acids; parenteral nutrition; nutrition; drug-nutrient interactions; immunonutrition; parenteral formulas/compounding; research and diseases
Journal Title: Journal of Parenteral and Enteral Nutrition
Volume: 39
Issue: 1 Suppl.
ISSN: 0148-6071
Publisher: Sage Publications  
Date Published: 2015-09-01
Start Page: 67S
End Page: 71S
Language: English
DOI: 10.1177/0148607115595976
PROVIDER: scopus
PUBMED: 26177666
DOI/URL:
Notes: Export Date: 2 September 2015 -- Source: Scopus
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  1. Mark G Klang
    28 Klang