Docosahexaenoic acid (DHA) is an omega-3 long-chain polyunsaturated fatty acid (LCPUFA), playing roles structurally and functionally from growth to health and the pathogenesis of diseases. Being a common nutrient supplement, the bioavailability of DHA is practically important. This study assessed the bioavailability of DHA after oral administration of emulsified DHA Gel Tablet, which was developed and manufactured by SIRIO and non-emulsified DHA algal oil in healthy individuals. The protocol was designed as a randomized, open, parallel clinical study. 19 healthy adults between 23 and 40 years old were randomly assigned into two groups receiving equal doses (300 mg) but different forms of DHA (DHA Gel Tablet, n = 10; DHA algal oil, n=9) in a fasting state. The blood was sampled at 0, 1, 2, 2.5, 3, 3.5, 4, 5, and 6 hours after ingestion. Free DHA in plasma was measured by liquid chromatography with LC-MS/MS. The maximum plasma concentration (Cmax), the time to maximum concentration (Tmax), and the area under the curve (AUC0-6) were calculated from the measurements of free DHA. Compared with the DHA algal oil, the DHA Gel Tablet exhibited a higher Cmax (0.772 ± 0.556 vs 0.308 ± 0.186 μg/ml, P= 0.0293) and greater AUC0-6 (1.611 ± 1.366 vs 0.550 ± 0.311 μg/ml*h, P =0.0491). The pharmacokinetic results showed that the Cmax and AUC of the DHA Gel Tablet were 2.506 times higher and 2.929 times larger, indicating higher bioavailability of DHA treated with the emulsion technology. No side effects were observed in either group.
| [1] | F. Zapata-Gonzalez et al., "Human dendritic cell activities are modulated by the omega-3 fatty acid, docosahexaenoic acid, mainly through PPARγ: RXR heterodimers: comparison with other polyunsaturated fatty acids," Journal of Leucocyte Biology, vol. 84, no. 4, pp. 1172-1182, 2008.View Article PubMed |
| [2] | G. Y. Sun et al., "Docosahexaenoic acid (DHA): An essential nutrient and a nutraceutical for brain health and diseases," Prostaglandins, Leukotrienes and Essential Fatty Acids, vol. 136, pp. 3-13, 2018.View Article PubMed |
| [3] | G. C. Burdge and P. C. Calder, "Conversion of $\alpha $-linolenic acid to longer-chain polyunsaturated fatty acids in human adults," Reproduction Nutrition Development, vol. 45, no. 5, pp. 581-597, 2005.View Article PubMed |
| [4] | G. C. Burdge, A. E. Jones, and S. A. Wootton, "Eicosapentaenoic and docosapentaenoic acids are the principal products of α-linolenic acid metabolism in young men," British Journal of Nutrition, vol. 88, no. 4, pp. 355-363, 2002.View Article PubMed |
| [5] | A. H. Mariamenatu and E. M. Abdu, "Overconsumption of omega-6 polyunsaturated fatty acids (PUFAs) versus deficiency of omega-3 PUFAs in modern-day diets: the disturbing factor for their “balanced antagonistic metabolic functions” in the human body," Journal of lipids, vol. 2021, pp. 1-15, 2021.View Article PubMed |
| [6] | I. S. f. t. S. o. F. A. a. L. ISSFAL. Global Recommendations for EPA and DHA Intake (Rev 19 November 2014) [Online] Available: https://www.issfal.org/. |
| [7] | C. N. S. CNS, in Chinese DRIs Handbook. Chinese Nutrition Society CNS: Chinese Nutrition Society CNS, 2013. |
| [8] | S. Forsyth, S. Gautier, and N. Salem Jr, "Dietary intakes of arachidonic acid and docosahexaenoic acid in early life-with a special focus on complementary feeding in developing countries," Annals of Nutrition and Metabolism, vol. 70, no. 3, pp. 217-227, 2017.View Article PubMed |
| [9] | Y.-B. Zhou et al., "A correlation study of DHA intake estimated by a FFQ and concentrations in plasma and erythrocytes in mid-and late pregnancy," Nutrients, vol. 9, no. 11, p. 1256, 2017.View Article PubMed |
| [10] | W. Lv and D. Xu, "Docosahexaenoic acid delivery systems, bioavailability, functionality, and applications: A review," Foods, vol. 11, no. 17, p. 2685, 2022.View Article PubMed |
| [11] | I. J. Haug, L. B. Sagmo, D. Zeiss, I. C. Olsen, K. I. Draget, and T. Seternes, "Bioavailability of EPA and DHA delivered by gelled emulsions and soft gel capsules," European journal of lipid science and technology, vol. 113, no. 2, pp. 137-145, 2011.View Article |
| [12] | Z. He, W. Zeng, X. Zhu, H. Zhao, Y. Lu, and Z. Lu, "Influence of surfactin on physical and oxidative stability of microemulsions with docosahexaenoic acid," Colloids and surfaces B: Biointerfaces, vol. 151, pp. 232-239, 2017.View Article PubMed |
| [13] | C.-C. Yang, C.-F. Hung, and B.-H. Chen, "Preparation of coffee oil-algae oil-based nanoemulsions and the study of their inhibition effect on UVA-induced skin damage in mice and melanoma cell growth," International Journal of Nanomedicine, pp. 6559-6580, 2017.View Article PubMed |
| [14] | E. Jiménez-Martín, A. Gharsallaoui, T. Pérez-Palacios, J. R. Carrascal, and T. A. Rojas, "Suitability of using monolayered and multilayered emulsions for microencapsulation of ω-3 fatty acids by spray drying: effect of storage at different temperatures," Food and bioprocess technology, vol. 8, pp. 100-111, 2015.View Article |
| [15] | M. Ding, T. Zhang, H. Zhang, N. Tao, X. Wang, and J. Zhong, "Effect of preparation factors and storage temperature on fish oil-loaded crosslinked gelatin nanoparticle pickering emulsions in liquid forms," Food Hydrocolloids, vol. 95, pp. 326-335, 2019.View Article |
| [16] | E. Liu, S. Zhao, X. Li, X. Meng, and B. Liu, "Preparation, characterization of PLGA/chitosan nanoparticles as a delivery system for controlled release of DHA," International Journal of Biological Macromolecules, vol. 185, pp. 782-791, 2021.View Article PubMed |
| [17] | Q. Xiao, G. Chen, Y. Zhang, H. Weng, M. Cai, and A. Xiao, "Evaluation of a novel self-emulsifiable dodecenyl succinylated agarose in microencapsulation of docosahexaenoic acid (DHA) through spray-chilling process," International Journal of Biological Macromolecules, vol. 163, pp. 2314-2324, 2020.View Article PubMed |
| [18] | C. Qiong et al., "Digestive properties and bioaccessibility of two different algal oil dosage forms based on gastrointestinal dynamic digestion system," Modern Food Science & Technology, vol. 37, no. 8, 2021. |
| [19] | C. T. Chen et al., "Plasma non-esterified docosahexaenoic acid is the major pool supplying the brain," Scientific reports, vol. 5, no. 1, p. 15791, 2015.View Article PubMed |
| [20] | M. Armand et al., "Characterization of emulsions and lipolysis of dietary lipids in the human stomach," American Journal of Physiology-Gastrointestinal and Liver Physiology, vol. 266, no. 3, pp. G372-G381, 1994.View Article PubMed |
| [21] | M. Armand et al., "Physicochemical characteristics of emulsions during fat digestion in human stomach and duodenum," American Journal of Physiology-Gastrointestinal and Liver Physiology, vol. 271, no. 1, pp. G172-G183, 1996.View Article PubMed |
| [22] | I. Garaiova, I. A. Guschina, S. F. Plummer, J. Tang, D. Wang, and N. T. Plummer, "A randomised cross-over trial in healthy adults indicating improved absorption of omega-3 fatty acids by pre-emulsification," Nutrition Journal, vol. 6, pp. 1-9, 2007.View Article PubMed |
| [23] | I. Ikeda, "Digestion and absorption of structured lipids," 2000. |
| [24] | P. Borel et al., "Digestion and absorption of tube‐feeding emulsions with different droplet sizes and compositions in the rat," Journal of parenteral and enteral nutrition, vol. 18, no. 6, pp. 534-543, 1994.View Article PubMed |
| [25] | M. Armand et al., "Digestion and absorption of 2 fat emulsions with different droplet sizes in the human digestive tract," The American journal of clinical nutrition, vol. 70, no. 6, pp. 1096-1106, 1999.View Article PubMed |
| [26] | S. K. Raatz, J. B. Redmon, N. Wimmergren, J. V. Donadio, and D. M. Bibus, "Enhanced absorption of n-3 fatty acids from emulsified compared with encapsulated fish oil," Journal of the American Dietetic Association, vol. 109, no. 6, pp. 1076-1081, 2009.View Article PubMed |
| [27] | A. Acevedo-Fani and H. Singh, "Biophysical insights into modulating lipid digestion in food emulsions," Progress in lipid research, vol. 85, p. 101129, 2022.View Article PubMed |