Literature DB >> 19603474

Hair protein and amino acid 13C and 15N abundances take more than 4 weeks to clearly prove influences of animal protein intake in young women with a habitual daily protein consumption of more than 1 g per kg body weight.

Klaus J Petzke1, Susen Lemke.   

Abstract

A high protein or meat intake might be a risk factor for metabolic disorders. Stable isotopic abundances (SIA) of hair can be used as biomarkers for animal protein intake due to characteristic isotopic patterns of food proteins. We investigated if an additional meat intake (M, 200 g pork fillet/day) or an omission of meat and meat products (NOM) can influence the natural (15)N and (13)C SIA within 4 weeks in hair and plasma of young women. The daily protein intake (means +/- SD) was 1.40 +/- 0.29, 2.25 +/- 0.35, and 1.15 +/- 0.26 g/kg at baseline, during M, and during NOM, respectively. At baseline the animal protein intake correlated with bulk SIA of hair ((15)N: R(2) = 0.416; (13)C: R(2) = 0.664; n = 14). However, isotope ratio mass spectrometry (IRMS) analyses have not shown that hair and plasma SIA were changed significantly after M or NOM. Possible reasons were discussed. Urinary SIA were significantly lower after M than after NOM ((15)N: p = 0.039; (13)C: p = 0.006) and close to those of pork fillet. Characteristic patterns of SIA were measured in individual amino acids (AA) by gas chromatography/combustion isotope ratio mass spectrometry (GC/C/IRMS). The results confirmed considerable differences in SIA between AA (delta(15)N, up to 22 per thousand; delta(13)C, up to 31 per thousand). Plots of (15)N versus (13)C abundances in hair revealed characteristic differences between indispensable and dispensable AA. The intervention-dependent changes of AA-specific SIA were not as clear as expected. Although the AA-specific SIA may reveal more detailed characteristics of physiological conditions, further methodological research is required. We suggest that the SIA of leucine can be potential markers of protein intake. The reliability of SIA as biomarkers of protein intake still have to be tested in longer lasting intervention studies in humans. The results may have implications in the assessment for possible benefits and risks of protein consumption. 2009 John Wiley & Sons, Ltd.

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Year:  2009        PMID: 19603474     DOI: 10.1002/rcm.4025

Source DB:  PubMed          Journal:  Rapid Commun Mass Spectrom        ISSN: 0951-4198            Impact factor:   2.419


  10 in total

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2.  Association of δ¹³C in fingerstick blood with added-sugar and sugar-sweetened beverage intake.

Authors:  Brenda M Davy; A Hope Jahren; Valisa E Hedrick; Dana L Comber
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4.  Revealing details of stays abroad by sequential stable isotope analyses along human hair strands.

Authors:  Christine Lehn; Eva Maria Kalbhenn; Andreas Rossmann; Matthias Graw
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5.  Associations of plasma, RBCs, and hair carbon and nitrogen isotope ratios with fish, meat, and sugar-sweetened beverage intake in a 12-wk inpatient feeding study.

Authors:  Susanne B Votruba; Pamela A Shaw; Eric J Oh; Colleen A Venti; Susan Bonfiglio; Jonathan Krakoff; Diane M O'Brien
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6.  Amino Acid Nitrogen Isotope Ratios Respond to Fish and Meat Intake in a 12-Week Inpatient Feeding Study of Men.

Authors:  Jessica J Johnson; Pamela A Shaw; Matthew J Wooller; Colleen A Venti; Jonathan Krakoff; Susanne B Votruba; Diane M O'Brien
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Review 7.  Dietary biomarkers: advances, limitations and future directions.

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Review 8.  Biomarkers for nutrient intake with focus on alternative sampling techniques.

Authors:  T Holen; F Norheim; T E Gundersen; P Mitry; J Linseisen; P O Iversen; C A Drevon
Journal:  Genes Nutr       Date:  2016-04-16       Impact factor: 5.523

9.  The carbon isotope ratios of nonessential amino acids identify sugar-sweetened beverage (SSB) consumers in a 12-wk inpatient feeding study of 32 men with varying SSB and meat exposures.

Authors:  Jessica J Johnson; Pamela A Shaw; Eric J Oh; Matthew J Wooller; Sean Merriman; Hee Young Yun; Thomas Larsen; Jonathan Krakoff; Susanne B Votruba; Diane M O'Brien
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10.  The diet-body offset in human nitrogen isotopic values: a controlled dietary study.

Authors:  T C O'Connell; C J Kneale; N Tasevska; G G C Kuhnle
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  10 in total

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