Milk fat globule membrane plus milk fat increase docosahexaenoic acid availability in infant formulas. 2023

Antonio Gázquez, and María Sabater-Molina, and Inés Domínguez-López, and María Sánchez-Campillo, and Neus Torrento, and Joan Tibau, and José A Moreno-Muñoz, and María Rodríguez-Palmero, and María C López-Sabater, and Elvira Larqué
Department of Physiology, University of Murcia, Campus Mare Nostrum, Murcia, Spain.

OBJECTIVE Milk fat globule membrane (MFGM) has components with emulsifier properties that could affect the provision of substrates to the brain. We evaluated the effects of MFGM plus milk fat addition to infant formulas on docosahexaenoic acid (DHA) availability and gut development. METHODS In Experiment 1, suckling piglets were divided into 3 groups: Group L1 (n = 8): fed with a vegetal fat formula with palm oil; L2 (n = 8): canola oil formula and L3 (n = 8): milk fat + canola oil + 1% Lacprodan (3% MFGM of total protein content). In Experiment 2, Group L4 (n = 7): fed with canola oil + 1% Lacprodan (3% MFGM) and Group L5 (n = 5): milk fat + canola oil + 2% Lacprodan (6% MFGM). All formulas contained 0.2% DHA and 0.2% arachidonic acid. RESULTS In Experiment 1, DHA was similar among the groups in both total fatty acids and plasma phospholipids (PL). However, 3% MFGM (L3) increased significantly the proportion of DHA and LC-PUFA n-3 in liver total fatty acids, jejunum, and also in jejunum PL respect to the other formulas. There were no changes in gut histology, cell proliferation, apoptosis, or brain DHA content. In Experiment 2, higher MFGM dose was used. Then, higher DHA was not only found in peripheral tissues of 6% MFGM (L5) piglets but also in plasma PL, while a similar trend was observed in cortex PL (p = 0.123). CONCLUSIONS In conclusion, MFGM plus milk fat may increase DHA availability of infant formulas which could contribute to their beneficial health effects.

UI MeSH Term Description Entries
D010743 Phospholipids Lipids containing one or more phosphate groups, particularly those derived from either glycerol (phosphoglycerides see GLYCEROPHOSPHOLIPIDS) or sphingosine (SPHINGOLIPIDS). They are polar lipids that are of great importance for the structure and function of cell membranes and are the most abundant of membrane lipids, although not stored in large amounts in the system. Phosphatides,Phospholipid
D004281 Docosahexaenoic Acids C22-unsaturated fatty acids found predominantly in FISH OILS. Docosahexaenoate,Docosahexaenoic Acid,Docosahexenoic Acids,Docosahexaenoic Acid (All-Z Isomer),Docosahexaenoic Acid Dimer (All-Z Isomer),Docosahexaenoic Acid, 3,6,9,12,15,18-Isomer,Docosahexaenoic Acid, 4,7,10,13,16,19-(All-Z-Isomer),Docosahexaenoic Acid, 4,7,10,13,16,19-(All-Z-Isomer), Cerium Salt,Docosahexaenoic Acid, 4,7,10,13,16,19-(All-Z-Isomer), Cesium Salt,Docosahexaenoic Acid, 4,7,10,13,16,19-(All-Z-Isomer), Potassium Salt,Docosahexaenoic Acid, 4,7,10,13,16,19-(Z,Z,Z,Z,Z,E-Isomer),Docosahexaenoic Acid, 4,7,10,13,16,19-Isomer,Docosahexaenoic Acid, 4,7,10,13,16,19-Isomer, Sodium Salt,Docosahexaenoic Acid, Sodium Salt,Acid, Docosahexaenoic,Acids, Docosahexaenoic,Acids, Docosahexenoic
D005227 Fatty Acids Organic, monobasic acids derived from hydrocarbons by the equivalent of oxidation of a methyl group to an alcohol, aldehyde, and then acid. Fatty acids are saturated and unsaturated (FATTY ACIDS, UNSATURATED). (Grant & Hackh's Chemical Dictionary, 5th ed) Aliphatic Acid,Esterified Fatty Acid,Fatty Acid,Fatty Acids, Esterified,Fatty Acids, Saturated,Saturated Fatty Acid,Aliphatic Acids,Acid, Aliphatic,Acid, Esterified Fatty,Acid, Saturated Fatty,Esterified Fatty Acids,Fatty Acid, Esterified,Fatty Acid, Saturated,Saturated Fatty Acids
D000074262 Rapeseed Oil PLANT OILS derived from RAPESEED species known as BRASSICA NAPUS. Canadian Oil,Canola Oil,LEAR Oil,Low Erucic Acid Rapeseed Oil,Oil, Canadian,Oil, Canola,Oil, LEAR,Oil, Rapeseed
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D013552 Swine Any of various animals that constitute the family Suidae and comprise stout-bodied, short-legged omnivorous mammals with thick skin, usually covered with coarse bristles, a rather long mobile snout, and small tail. Included are the genera Babyrousa, Phacochoerus (wart hogs), and Sus, the latter containing the domestic pig (see SUS SCROFA). Phacochoerus,Pigs,Suidae,Warthogs,Wart Hogs,Hog, Wart,Hogs, Wart,Wart Hog
D041943 Infant Formula Formulations for the nutrition of infants that are substituted for BREAST MILK. Baby Formula,Baby Formulas,Formula, Baby,Formula, Infant,Formulas, Baby,Formulas, Infant,Infant Formulas

Related Publications

Antonio Gázquez, and María Sabater-Molina, and Inés Domínguez-López, and María Sánchez-Campillo, and Neus Torrento, and Joan Tibau, and José A Moreno-Muñoz, and María Rodríguez-Palmero, and María C López-Sabater, and Elvira Larqué
May 2024, Nutrition (Burbank, Los Angeles County, Calif.),
Antonio Gázquez, and María Sabater-Molina, and Inés Domínguez-López, and María Sánchez-Campillo, and Neus Torrento, and Joan Tibau, and José A Moreno-Muñoz, and María Rodríguez-Palmero, and María C López-Sabater, and Elvira Larqué
May 2022, Food science of animal resources,
Antonio Gázquez, and María Sabater-Molina, and Inés Domínguez-López, and María Sánchez-Campillo, and Neus Torrento, and Joan Tibau, and José A Moreno-Muñoz, and María Rodríguez-Palmero, and María C López-Sabater, and Elvira Larqué
October 1975, Biochimica et biophysica acta,
Antonio Gázquez, and María Sabater-Molina, and Inés Domínguez-López, and María Sánchez-Campillo, and Neus Torrento, and Joan Tibau, and José A Moreno-Muñoz, and María Rodríguez-Palmero, and María C López-Sabater, and Elvira Larqué
February 2021, The Journal of dairy research,
Antonio Gázquez, and María Sabater-Molina, and Inés Domínguez-López, and María Sánchez-Campillo, and Neus Torrento, and Joan Tibau, and José A Moreno-Muñoz, and María Rodríguez-Palmero, and María C López-Sabater, and Elvira Larqué
November 2020, Nutrients,
Antonio Gázquez, and María Sabater-Molina, and Inés Domínguez-López, and María Sánchez-Campillo, and Neus Torrento, and Joan Tibau, and José A Moreno-Muñoz, and María Rodríguez-Palmero, and María C López-Sabater, and Elvira Larqué
November 2006, The Journal of dairy research,
Antonio Gázquez, and María Sabater-Molina, and Inés Domínguez-López, and María Sánchez-Campillo, and Neus Torrento, and Joan Tibau, and José A Moreno-Muñoz, and María Rodríguez-Palmero, and María C López-Sabater, and Elvira Larqué
March 1971, Journal of dairy science,
Antonio Gázquez, and María Sabater-Molina, and Inés Domínguez-López, and María Sánchez-Campillo, and Neus Torrento, and Joan Tibau, and José A Moreno-Muñoz, and María Rodríguez-Palmero, and María C López-Sabater, and Elvira Larqué
May 1975, Biochimica et biophysica acta,
Antonio Gázquez, and María Sabater-Molina, and Inés Domínguez-López, and María Sánchez-Campillo, and Neus Torrento, and Joan Tibau, and José A Moreno-Muñoz, and María Rodríguez-Palmero, and María C López-Sabater, and Elvira Larqué
March 2011, Journal of proteomics,
Antonio Gázquez, and María Sabater-Molina, and Inés Domínguez-López, and María Sánchez-Campillo, and Neus Torrento, and Joan Tibau, and José A Moreno-Muñoz, and María Rodríguez-Palmero, and María C López-Sabater, and Elvira Larqué
November 2023, The Journal of dairy research,
Copied contents to your clipboard!