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Updated: Aug 1, 2026

Mouse Mammary Epithelial Cells form Mammospheres During Lactogenic Differentiation
Published on: October 6, 2009
Origin and secretion of milk lipids
1Department of Animal and Avian Sciences, University of Maryland, College Park 20742, USA. im2@umail.umd.edu
Insights
Milk fat globules originate as triacylglycerol droplets within mammary cells. These droplets are secreted enveloped by cellular membranes, a unique process distinct from other cell types.
Area of Science:
- Cell Biology
- Lactation Biology
- Lipid Metabolism
Background:
- Milk fat globules consist of triacylglycerol droplets encased in cellular membranes.
- Mammary epithelial cells possess a unique secretory pathway for lipid droplet expulsion.
Purpose of the Study:
- To review the formation and secretion mechanisms of milk lipid droplets from mammary epithelial cells.
- To compare milk lipid secretion with lipid secretion in other cell types like hepatocytes and enterocytes.
Main Methods:
- Review of existing literature on milk fat globule formation and secretion.
- Analysis of proposed mechanisms for lipid droplet transport and exocytosis in mammary cells.
Main Results:
- Milk lipids initiate as triacylglycerol droplets on rough endoplasmic reticulum membranes, forming microlipid droplets (MLDs).
- MLDs can coalesce into larger cytoplasmic lipid droplets (CLDs) and are transported to the apical cytoplasm.
- Two primary secretion mechanisms are proposed: direct apical plasma membrane envelopment or secretory vesicle exocytosis.
Conclusions:
- Mammary epithelial cells secrete lipid droplets via a distinct mechanism involving cellular membrane envelopment.
- Further research is needed to elucidate the exact transport mechanisms of droplets to the apical cytoplasm.
- The secretion process may involve a combination of apical and secretory vesicle mechanisms, with potential membrane shedding post-secretion.
Abstract:
The cream fraction of milk comprises droplets of triacylglycerol coated with cellular membranes. In this review, we discuss how these droplets are formed and secreted from mammary epithelial cells during lactation. This secretory system is especially interesting because the assembled lipid droplets are secreted from the cytoplasm enveloped by cellular membranes. In other cells, such as hepatocytes and enterocytes, lipid is secreted by exocytosis from membrane-bounded compartments of the secretory pathway. Milk lipids originate as small droplets of triacylglycerol, synthesized in or on the surfaces of rough endoplasmic reticulum (ER)4 membranes. These droplets are released into the cytoplasm as microlipid droplets (MLDs) with a surface coat of protein and polar lipid. MLDs may fuse with each other to form larger cytoplasmic lipid droplets (CLDs). Droplets of varying size, are transported to the apical cytoplasm by unknown mechanisms and are secreted from the cell coated with an outer bilayer membrane. CLDs may increase in size in all regions of the cell, especially at the plasma membrane during secretion. Two possible mechanisms for lipid secretion have been proposed: an apical mechanism, in which lipid droplets are enveloped with apical plasma membrane, and a secretory-vesicle mechanism, in which fat droplets are surrounded by secretory vesicles in the cytoplasm and are released from the surface by exocytosis from intracytoplasmic vacuoles. A combination of both mechanisms may be possible. Following secretion, a fraction of the membrane surrounding the globules may be shed from the droplets and give rise to membrane fragments in the skim milk phase.
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