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A comparison of composition and emulsifying properties of MFGM materials prepared from different dairy sources by
Jelena Miocinovic1, Thien Le Trung2, Eveline Fredrick3
1Faculty of Agriculture, Institute of Food Technology and Biochemistry, University of Belgrade, Belgrade, Serbia jmiocin@agrif.bg.ac.rs.
Abstract:
Milk fat globule membrane (MFGM), due to its specific nature and composition, is known as material possessing advantageous nutritional as well as technological properties. In this study MFGM materials were produced from several dairy sources such as buttermilk (BM), butter serum (BS) and buttermilk whey (BMW) by microfiltration (MF). The obtained materials, depending on the sources, were called BM-MFGM, BS-MFGM and BMW-MFGM, respectively. The compositions of starting materials and the isolated MFGM materials as well as their emulsifying properties were analyzed and compared. As expected, the MF resulted in enrichment of polar lipids (PLs), major components of MFGM. On dry matter basis, BM-MFGM and BS-MFGM were about 2.5 times higher in PLs compared to their beginning materials while BMW-MFGM was about 8.3 times compared to buttermilk powder (BMP). Sodium dodecyl sulfate polyacrylamide gel electrophoresis showed that the microfiltered products still contained a high amount of non-MFGM proteins such as caseins, β-lactoglobulin, and α-lactalbumin. Emulsions of 35% soya oil in water were prepared with the mentioned materials using a homogenizer at various pressures. Generally, emulsions prepared with BMP and butter serum powder had significantly higher particle sizes than those prepared with the MFGM materials. This result along with microscopy observation and viscosity measurement indicated the presence of aggregated particles in the former emulsions, probably as a result of lack of surface-active components. The differences in composition, especially in content of PLs and proteins of the materials were the main reasons for the differences in their emulsifying behaviors.
Insights
Milk fat globule membrane (MFGM) was isolated from dairy sources using microfiltration, yielding materials rich in polar lipids. These MFGM materials demonstrated superior emulsifying properties compared to traditional dairy powders.
Area of Science:
- Dairy Science
- Food Technology
- Biochemistry
Background:
- Milk fat globule membrane (MFGM) possesses unique nutritional and technological properties.
- MFGM components are valuable for food applications, particularly in emulsions.
Purpose of the Study:
- To isolate MFGM materials from various dairy sources via microfiltration (MF).
- To analyze the composition and emulsifying properties of the isolated MFGM materials.
- To compare the performance of MFGM materials with conventional dairy powders.
Main Methods:
- Microfiltration (MF) of buttermilk (BM), butter serum (BS), and buttermilk whey (BMW).
- Compositional analysis, including polar lipid (PL) content determination.
- Sodium dodecyl sulfate polyacrylamide gel electrophoresis (SDS-PAGE) for protein analysis.
- Emulsion preparation (35% soya oil in water) and characterization (particle size, microscopy, viscosity).
Main Results:
- Microfiltration enriched polar lipids (PLs) in MFGM materials, with BMW-MFGM showing an 8.3-fold increase.
- Microfiltered products contained residual non-MFGM proteins.
- Emulsions made with MFGM materials exhibited smaller particle sizes and better stability than those made with buttermilk powder (BMP) and butter serum powder.
- Differences in emulsifying behavior were attributed to variations in PL and protein content.
Conclusions:
- Microfiltration is an effective method for isolating MFGM-rich materials with enhanced polar lipid content.
- MFGM materials demonstrate superior emulsifying capabilities compared to conventional dairy powders.
- The composition, particularly polar lipid and protein content, significantly influences the emulsifying performance of dairy-derived materials.

