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1.
Mol Nutr Food Res ; 68(10): e2300657, 2024 May.
Article in English | MEDLINE | ID: mdl-38698718

ABSTRACT

SCOPE: Tocomonoenols (T1) are little-known vitamin E derivatives naturally occurring in foods. Limited knowledge exists regarding the cellular uptake and metabolism of α-tocomonoenol (αT1) and none about that of γ-tocomonoenol (γT1). METHODS AND RESULTS: The study investigates the cytotoxicity, uptake, and metabolism of αT1 and γT1 in HepG2 cells compared to the α- and γ-tocopherols (T) and -tocotrienols (T3). None of the studied tocochromanols are cytotoxic up to 100 µmol L-1. The uptake of the γ-congeners is significantly higher than that of the corresponding α-forms, whereas no significant differences are observed based on the degree of saturation of the sidechain. Carboxymethylbutyl-hydroxychromans (CMBHC) are the predominant short-chain metabolites of all tocochromanols and conversion is higher for γT1 than αT1 as well as for the γ-congeners of T and T3. The rate of metabolism increases with the number of double bonds in the sidechain. The rate of metabolic conversion of the T1 is more similar to tocopherols than to that of the tocotrienols. CONCLUSION: This is the first evidence that both αT1 and γT1 follow the same sidechain degradation pathway and exert similar rates of metabolism than tocopherols. Therefore, investigation into the biological activities of tocomonoenols is warranted.


Subject(s)
Chromans , Vitamin E , Humans , Hep G2 Cells , Chromans/pharmacology , Vitamin E/pharmacology , Vitamin E/analogs & derivatives , Vitamin E/metabolism , Vitamin E/pharmacokinetics , gamma-Tocopherol/metabolism , gamma-Tocopherol/pharmacology , Tocotrienols/pharmacology , Tocotrienols/metabolism , Tocotrienols/pharmacokinetics , Cell Survival/drug effects , alpha-Tocopherol/pharmacology , alpha-Tocopherol/metabolism , alpha-Tocopherol/analogs & derivatives
2.
Free Radic Biol Med ; 177: 24-30, 2021 12.
Article in English | MEDLINE | ID: mdl-34666150

ABSTRACT

Contrary to the major vitamin E congener α-tocopherol, which carries a saturated sidechain, and α-tocotrienol, with a threefold unsaturated sidechain, little is known about the intracellular fate of α-tocomonoenol, a minor vitamin E derivative with a single double bond in C11'-position of the sidechain. We hypothesized that, due to structural similarities, the uptake and metabolism of α-tocomonoenol will resemble that of α-tocopherol. Cytotoxicity, cellular uptake of α-tocomonoenol, α-tocopherol and α-tocotrienol and conversion into the short-chain metabolites αCEHC and αCMBHC were studied in HepG2 cells. α-Tocomonoenol did not show significant effects on cell viability and its uptake was similar to that observed for α-tocopherol and significantly lower than for α-tocotrienol. α-Tocomonoenol was mainly metabolized to αCMBHC in liver cells, but to a lower extent than α-tocotrienol, while α-tocopherol was not metabolized in quantifiable amounts at all. In summary, the similarities in the cytotoxicity, uptake and metabolism of α-tocomonoenol and α-tocopherol suggest that this minor vitamin E congener deserves more attention in future research with regard to its potential vitamin E activity.


Subject(s)
Vitamin E , alpha-Tocopherol , Biological Transport , Hep G2 Cells , Humans , Vitamin E/analogs & derivatives
3.
Vet Med Sci ; 6(4): 980-984, 2020 11.
Article in English | MEDLINE | ID: mdl-32421260

ABSTRACT

A 5-year-old male neutered domestic shorthair cat suffered from recurrent solitary nodules in different subcutaneous body regions. Nodules were surgically removed and each time histopathological diagnosis was fat necrosis and fibrosing to pyogranulomatous panniculitis. After the second surgery the alpha (α)-tocopherol concentration in serum of the cat was examined and the result (21 mg/L) exceeded the upper limit of the reference interval (3-11 mg/L). Vitamin E amount in diet fed solely in the past was checked as studies have shown that vitamin E amounts in food significantly influence vitamin E concentrations in serum. For comparative purposes, α-tocopherol concentrations were determined in sera of healthy control cats. Additionally, vitamin E amount in wet food from different manufacturers was analysed using gas chromatography coupled to mass spectrometry (GC-MS). The results showed that the diet did not have higher vitamin E amounts compared to other diets. All control cats had similar high serum α-tocopherol concentrations. We conclude that panniculitis can occur despite high serum α-tocopherol concentrations in cats. Further studies are needed to redefine reference values of α-tocopherol in serum of cats.


Subject(s)
Cat Diseases/diagnosis , Panniculitis/veterinary , alpha-Tocopherol/blood , Animals , Cat Diseases/etiology , Cats , Male , Panniculitis/diagnosis , Panniculitis/etiology , Serum/chemistry
4.
Anal Bioanal Chem ; 412(3): 795-802, 2020 Jan.
Article in English | MEDLINE | ID: mdl-31858167

ABSTRACT

Countercurrent chromatography (CCC) was used for the enrichment of α-tocodienol (α-T2), a rare vitamin E-related minor compound previously tentatively detected in palm oil. Hitherto, only one isomer has been mentioned to occur at traces in palm oil. However, CCC fractionation followed by GC/MS measurements of all fractions resulted in the detection of two α-T2 isomers in five different palm oil vitamin E dietary supplement capsules. Five repetitive CCC separations of ~ 1 g sample and additional purification steps by column chromatography provided ~ 2 mg of two equally abundant α-T2 isomers with a purity of ~ 85%. The positions of the double bonds in the alkyl side chain could be assigned by means of two characteristic chemical shifts in the 1H NMR spectrum. Accordingly, the structures of the α-T2 isomers were 2,5,7,8-tetramethyl-2-(4,8,12-trimethyltridec-3,11-dienyl)chroman-6-ol (double bonds in 3',11'-position) and 2,5,7,8-tetramethyl-2-(4,8,12-trimethyltridec-7,11-dienyl)chroman-6-ol (double bonds in 7',11'-position). Natural occurrence of both isomers was proven by GC/MS screening of crude palm oil after saponification and CCC separation. Moreover, GC/MS analysis allowed the tentative assignment of γ-tocomonoenol (γ-T1) and ß-tocomonoenol (ß-T1) as trace compounds in palm oil.


Subject(s)
Countercurrent Distribution/methods , Palm Oil/chemistry , Vitamin E/analogs & derivatives , Gas Chromatography-Mass Spectrometry , Isomerism , Molecular Structure , Proton Magnetic Resonance Spectroscopy , Vitamin E/chemistry
5.
Environ Int ; 128: 438-445, 2019 07.
Article in English | MEDLINE | ID: mdl-31082722

ABSTRACT

Chlorinated paraffins (CPs) are a group of man-made pollutants of growing environmental concern. Short-chain chlorinated paraffins (SCCPs) were recently classified as persistent organic pollutants (POPs), while medium-chain chlorinated paraffins (MCCPs) are still unregulated. Foodstuff is a major pathway for the human CP intake, and the regular diet has been analyzed in several studies recently. However, dietary supplements (DS) had not been analyzed on CPs. Our goal was to investigate the occurrence of CPs in DS and to evaluate the possible threat for the consumers. DS (n = 25) made from plant or fish oils were selected on the German market with main emphasis on vitamin E products. The lipid components were removed by sulphuric acid treatment and silica gel column chromatography. CP quantification was performed via gas chromatography coupled to electron capture negative ion mass spectrometry. Six vitamin E preparations containing palm oil showed alarmingly high CP concentrations of >35 µg/g fat. Six other DS contained much lower CP amounts (<4 µg/g fat). If consumed as recommended, the mean daily intake of CPs (5.5 µg SCCPs + 38 µg MCCPs) via palm oil based DS surpassed that of the regular diet by a factor of 4 for SCCPs and 13 for MCCPs, exceeding the PCB intake via food by up to two orders of magnitude. Samples reached up to 26% of the TDI of MCCPs for an average European adult. Consequently, the P95 intake of those samples would amount to ~43 mg CPs per year. The CP contamination probably originated from raw material, as CPs were also found in palm oils and vitamin E concentrates made from palm oil. Our findings suggest that DS can contain high amounts of contaminants that compromise the purpose of the product and should be considered for regular CP monitoring.


Subject(s)
Dietary Supplements/analysis , Environmental Monitoring , Hydrocarbons, Chlorinated/analysis , Paraffin/analysis , Germany , Palm Oil/chemistry , Vitamin E/chemistry
6.
J Chromatogr A ; 1476: 77-87, 2016 Dec 09.
Article in English | MEDLINE | ID: mdl-27887701

ABSTRACT

Tocopherols and tocotrienols (usually summed up as vitamin E) are a class of structurally related natural antioxidants. Commonly, only some of the eight classic representatives (four tocopherols and four tocotrienols) are found with varied composition in food. In this study we fractionated 230mg oil from commercial vitamin E supplement capsules by countercurrent chromatography (CCC) and subsequent analysis by gas chromatography with mass spectrometry (GC/MS) of silylated CCC fractions showed that these eight isomers represented only about 70% of total tocopherol compounds. Detailed analysis enabled the detection of 161T3 isomers (α-, γ- and δ-T3) along with 18 tetra- and several penta-unsaturated isomers (tocools), two tocomonoenol isomers, and several degradation products with shorter isoprenoid side chain (apo-tocools). Altogether, over 170 tocool compounds, most likely artefacts which originated from an inappropriate oil refining process were described in this study. Silver ion high performance liquid chromatography (Ag+-HPLC) was used to separate one fraction rich in γ-T3 into four peaks each consisting of at least five peaks according to GC/MS. About ten γ-T3 isomers were also detected in rice bran oils from one producer bought retail in Germany.


Subject(s)
Antioxidants/analysis , Artifacts , Countercurrent Distribution , Dietary Supplements/analysis , Gas Chromatography-Mass Spectrometry , Tocopherols/analysis , Tocotrienols/analysis , Antioxidants/chemistry , Antioxidants/isolation & purification , Capsules , Chromatography, High Pressure Liquid , Tocopherols/chemistry , Tocopherols/isolation & purification , Tocotrienols/chemistry , Tocotrienols/isolation & purification , Vitamin E/administration & dosage
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