Pulse Brain · Growing Health Evidence Index
Tier 3 — Observational / field trialPeer-reviewed

Higher PUFA and<i>n</i>-3 PUFA, conjugated linoleic acid,<i>α</i>-tocopherol and iron, but lower iodine and selenium concentrations in organic milk: a systematic literature review and meta- and redundancy analyses

Dominika Średnicka-Tober; Marcin Barański; Chris J. Seal; Roy Sanderson; Charles Benbrook; Håvard Steinshamn; Joanna Gromadzka-Ostrowska; Ewa Rembiałkowska; Krystyna Skwarło-Sońta; Mick Eyre; Giulio Cozzi; Mette Krogh Larsen; Teresa Jordon; Urs Niggli; Tomasz Sakowski; Philip C. Calder; Graham C. Burdge; Smaragda Sotiraki; Alexandros Stefanakis; Sokratis Stergiadis; Halil Yolcu; Eleni Chatzidimitriou; Gillian Butler; Gavin Stewart; Carlo Leifert

Cambridge University Press (CUP) · 2016

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Summary

Demand for organic milk is partially driven by consumer perceptions that it is more nutritious. However, there is still considerable uncertainty over whether the use of organic production standards affects milk quality. Here we report results of meta-analyses based on 170 published studies comparing the nutrient content of organic and conventional bovine milk. There were no significant differences in total SFA and MUFA concentrations between organic and conventional milk. However, concentrations of total PUFA and n-3 PUFA were significantly higher in organic milk, by an estimated 7 (95 % CI -1, 15) % and 56 (95 % CI 38, 74) %, respectively. Concentrations of α-linolenic acid (ALA), very long-chain n-3 fatty acids (EPA+DPA+DHA) and conjugated linoleic acid were also significantly higher in organic milk, by an 69 (95 % CI 53, 84) %, 57 (95 % CI 27, 87) % and 41 (95 % CI 14, 68) %, respectively. As there were no significant differences in total n-6 PUFA and linoleic acid (LA) concentrations, the n-6:n-3 and LA:ALA ratios were lower in organic milk, by an estimated 71 (95 % CI -122, -20) % and 93 (95 % CI -116, -70) %. It is concluded that organic bovine milk has a more desirable fatty acid composition than conventional milk. Meta-analyses also showed that organic milk has significantly higher α-tocopherol and Fe, but lower I and Se concentrations. Redundancy analysis of data from a large cross-European milk quality survey indicates that the higher grazing/conserved forage intakes in organic systems were the main reason for milk composition differences.

Outcomes reported

Source report: Diets & Regenerative Agriculture: Can Regenerative Agriculture support food security and diet goals? (2025); Diets & Regenerative Agriculture (2025); Can regenerative agriculture deliver nutritious food and a just food system? (TABLE/Agile, 2025) File: Diets and Regenerative Agriculture.pdf; Reckoning with Regeneration full report December 2025.pdf Ref#: Diets and Regenerative Agriculture.pdf #42 Original: Średnicka-Tober, D., Barański, M., Seal, C. J., Sanderson, R., Benbrook, C., Steinshamn, H., Gromadzka-Ostrowska, J., Rembiałkowska, E., Skwarło-Sońta, K., Eyre, M., Cozzi, G., Larsen, M. K., Jordon, T., Niggli, U., Sakowski, T., Calder, P. C., Burdge, G. C., Sotiraki, S., Stefanakis, A., … Leifert, C. (2016a). Higher PUFA and n-3 PUFA, conjugated linoleic acid, α-tocopherol and iron, but lower iodine and selenium concentrations in organic milk: a systematic literature review and meta- and redundancy analyses. British Journal of Nutrition, 115(6), 1043-1060. https://doi.org/10.1017/S0007114516000349; Średnicka-Tober, D., et al. "Higher PUFA and n-3 PUFA, conjugated linoleic acid, α-tocopherol and iron, but lower iodine and selenium concentrations in organic milk: a systematic literature review and meta- and redundancy analyses." British Journal of Nutrition, vol. 115, no. 6, pp. 1043-1060, https://doi.org/10.1017/S0007114516000349

Theme
Farming systems, soils & land use
Subject
Peer-reviewed research
Study type
Research
Source type
Peer-reviewed research
Status
Published
Geography
UK
DOI
10.1017/S0007114516000349
Catalogue ID
IRmohfq8ok-0236f5
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