A Rapid Method for the Extraction and Determination of Vitamin E Metabolites in Human Urine
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A method for the direct extraction and routine analysis of the vitamin E metabolites gamma- and alpha-carboxyethyl hydroxychroman (gamma- and alpha-CEHC) from human urine has been developed. A relatively small sample volume (5 ml) can be used and, after enzymatic hydrolysis of the conjugated forms and acidification, the metabolites are extracted with diethyl ether. Recovery of alpha- and gamma-CEHC was compared to that of trolox, used as an internal standard, added to 24-h urine collections from vitamin E-unsupplemented volunteers. Various solvent conditions were initially tested; acidification and ether extraction gave the highest recovery. It was found that after addition and extraction from urine, trolox, alpha- and gamma-CEHC are recovered to a similar extent, hence trolox is viable as an internal standard. The samples were analyzed by both GC and HPLC with electrochemical detection (ECD). HPLC-ECD was found to give higher selectivity and higher sensitivity compared to GC or HPLC with UV detection at 290 nm. The HPLC-ECD detection limit was 10 fmol, linearity (r(2) > 0.98) was achieved in the range of 40 to 200 fmol, which was found to be optimal for 24-h urines from unsupplemented subjects. Inter-sample variability was typically 2-5%. This greater sensitivity and selectivity means that vitamin E metabolites can be analyzed even in unsupplemented subjects. It is also possible to measure unconjugated forms of the metabolites. Typically these were found to represent approximately 10% of the total alpha- and gamma-CEHC. This method can be used routinely for the determination of vitamin E metabolites in urine. The new extraction and detection methods described are relatively quick, less laborious, and more cost-effective than previously available methods.
Traber M, Leonard S, Vasu V, Morrissey B, Lei H, Atkinson J Nutrients. 2022; 14(18).
PMID: 36145092 PMC: 9505313. DOI: 10.3390/nu14183717.
Habib H, Finno C, Gennity I, Favro G, Hales E, Puschner B J Vet Diagn Invest. 2021; 33(3):506-515.
PMID: 33847203 PMC: 8120066. DOI: 10.1177/10406387211005433.
Choi P, Tscharke B, Samanipour S, Hall W, Gartner C, Mueller J Proc Natl Acad Sci U S A. 2019; 116(43):21864-21873.
PMID: 31591193 PMC: 6815118. DOI: 10.1073/pnas.1910242116.
Complexity of vitamin E metabolism.
Schmolz L, Birringer M, Lorkowski S, Wallert M World J Biol Chem. 2016; 7(1):14-43.
PMID: 26981194 PMC: 4768118. DOI: 10.4331/wjbc.v7.i1.14.
Sharma G, Muller D, ORiordan S, Bryan S, Dattani M, Hindmarsh P Free Radic Biol Med. 2012; 55:54-62.
PMID: 23108104 PMC: 3573235. DOI: 10.1016/j.freeradbiomed.2012.09.012.