DOI: 10.3390/foods15162891 ISSN: 2304-8158

Is Higher α-Linolenic Acid Content Preferable? Assessing Digestive Fate of Flaxseed Oil in In Vitro Digestion Models of Infants, Adults and the Elderly

Lei Mu, Baijun Chu, Jiangxu Zhang, Ju Hui, Xiangyu Wang

α-Linolenic acid (ALA) is an essential omega-3 polyunsaturated fatty acid, yet how dietary ALA enrichment interacts with population-specific gastrointestinal physiology to dictate bioaccessibility and lipid peroxidation remains insufficiently understood. This study systematically evaluated the in vitro digestive behaviors and oxidation risks of flaxseed oils containing 52% and 68% ALA using simulated models representative of distinct population groups (infants, adults, and the elderly). Digestive efficiency peaked in the adult model, achieving ALA bioaccessibility of 49.2% (52% ALA oil) and 46.5% (68% ALA oil), significantly outperforming those observed in infants (23.1% and 19.5%) and the elderly (39.4% and 37.3%). Crucially, malondialdehyde (MDA) accumulation directly correlated with digestive lipolysis efficiency across population groups, reaching its maximum in adults (5.00 nmol/mL for 52% ALA oil; 7.54 nmol/mL for 68% ALA oil), followed by the elderly (3.06 nmol/mL and 4.02 nmol/mL), and remaining lowest in infants (0.92 nmol/mL and 1.49 nmol/mL). Within each population cohort, although the 68% ALA oil yielded a higher absolute ALA release amount, its relative bioaccessibility was slightly lower while generating elevated MDA levels. These findings demonstrate that increasing ALA concentration imposes a critical trade-off between lipolytic efficiency and oxidative safety across different population groups, providing a solid scientific rationale for designing population-tailored flaxseed oil products optimized for both nutrient delivery and safety.

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