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Updated: Oct 29, 2025

Characterization of Immune Cell-derived Extracellular Vesicles and Studying Functional Impact on Cell Environment
Published on: June 2, 2020
Biological Properties of Milk-Derived Extracellular Vesicles and Their Physiological Functions in Infant
Xue Jiang1,2, Lianghui You1, Zhenxing Zhang3
1Women's Hospital of Nanjing Medical University, Nanjing Maternity and Child Health Care Hospital, Nanjing, China.
Abstract:
Extracellular vesicles (EVs) are released by all cells under pathological and physiological conditions. EVs harbor various biomolecules, including protein, lipid, non-coding RNA, messenger RNA, and DNA. In 2007, mRNA and microRNA (miRNA) carried by EVs were found to have regulatory functions in recipient cells. The biological function of EVs has since then increasingly drawn interest. Breast milk, as the most important nutritional source for infants, contains EVs in large quantities. An increasing number of studies have provided the basis for the hypothesis associated with information transmission between mothers and infants via breast milk-derived EVs. Most studies on milk-derived EVs currently focus on miRNAs. Milk-derived EVs contain diverse miRNAs, which remain stable both in vivo and in vitro; as such, they can be absorbed across different species. Further studies have confirmed that miRNAs derived from milk-derived EVs can resist the acidic environment and enzymatic hydrolysis of the digestive tract; moreover, they can be absorbed by intestinal cells in infants to perform physiological functions. miRNAs derived from milk EVs have been reported in the maturation of immune cells, regulation of immune response, formation of neuronal synapses, and development of metabolic diseases such as obesity and diabetes. This article reviews current status and advances in milk-derived EVs, including their history, biogenesis, molecular contents, and biological functions. The effects of milk-derived EVs on growth and development in both infants and adults were emphasized. Finally, the potential application and future challenges of milk-derived EVs were discussed, providing comprehensive understanding and new insight into milk-derived EVs.
Insights
Breast milk contains extracellular vesicles (EVs) that transmit vital information, including microRNAs (miRNAs), from mother to infant. These milk-derived EVs play crucial roles in infant development and health.
Area of Science:
- Cell Biology
- Developmental Biology
- Immunology
Background:
- Extracellular vesicles (EVs) are cell-released particles containing biomolecules like RNA and DNA.
- Breast milk is rich in EVs, facilitating mother-to-infant communication.
- Milk-derived EVs, particularly those carrying microRNAs (miRNAs), are stable and functional in infants.
Purpose of the Study:
- To review the current understanding of milk-derived EVs.
- To highlight their biogenesis, molecular contents, and biological functions.
- To discuss their impact on infant and adult growth and development.
Main Methods:
- Literature review of studies on milk-derived EVs.
- Analysis of EV biogenesis and molecular cargo.
- Examination of biological functions and developmental impacts.
Main Results:
- Milk-derived EVs contain diverse, stable miRNAs that survive digestion.
- These miRNAs influence immune cell maturation, immune response, and neural development.
- EVs are implicated in metabolic disease development, such as obesity and diabetes.
Conclusions:
- Milk-derived EVs are key mediators of intergenerational information transfer.
- They significantly impact infant growth, development, and health.
- Further research into their applications and challenges is warranted.
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