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Published on: July 11, 2008
Milk osteopontin promotes brain development by up-regulating osteopontin in the brain in early life
Rulan Jiang1, Christine Prell2, Bo Lönnerdal1
1Department of Nutrition, University of California Davis, Davis, California, USA.
Insights
Milk osteopontin (OPN) significantly impacts infant brain development. Supplementing with OPN promotes myelination, enhances learning and memory, and supports overall brain maturation in early life.
Area of Science:
- Neuroscience
- Developmental Biology
- Biochemistry
Background:
- Osteopontin (OPN) is a multifunctional protein found in milk, known for immune modulation and cellular processes.
- OPN is highly expressed in the brain, suggesting a role in neural development.
Purpose of the Study:
- To investigate the effects of milk-derived OPN on the brain development of mouse pups.
- To determine if ingested OPN from milk can reach the brain and influence neural maturation.
Main Methods:
- Utilized OPN knockout (KO) and wild-type (WT) dams to produce OPN- and OPN+ milk, respectively, for nursing WT pups.
- Traced orally gavaged [125I]-labeled milk OPN to confirm its presence in pup brains.
- Assessed brain OPN protein levels, myelination markers, glial cell differentiation, and behavioral outcomes (memory and learning).
Main Results:
- Ingested milk OPN was detected in the brains of pups.
- Pups nursed with OPN+ milk showed higher brain OPN protein levels compared to those nursed with OPN- milk.
- OPN+ milk consumption led to increased myelination, enhanced NG-2 glia differentiation into oligodendrocytes, and improved memory and learning abilities.
Conclusions:
- Milk-derived OPN plays a crucial role in early-life brain development.
- OPN promotes myelination and cognitive functions by influencing glial cell development and signaling pathways (ERK-1/2, PI3K/Akt).
Abstract:
Osteopontin (OPN) is a pleiotropic protein and is abundantly present in milk. Its functions include immune modulation and cellular proliferation and differentiation. OPN is highly expressed in the brain. We investigated the effects of milk-derived OPN on brain development of mouse pups. Wild-type (WT) dams producing OPN+ milk and OPN knockout (KO) dams producing OPN- milk nursed WT pups (OPN+/+), yielding 2 pup treatment groups, OPN+ OPN+/+ and OPN- OPN+/+, for comparison. Preliminary studies supported use of this model by showing high concentrations of OPN in milk of WT dams and no OPN in milk of OPN KO dams, and production of similar amounts of milk by WT and KO dams. The ability of ingested milk OPN to enter the brain was revealed by appearance of orally gavaged [125I]-labeled and antibody-probed milk OPN in brains of pups. Brain OPN mRNA levels were similar in both nursed groups, but the brain OPN protein level was significantly lower in the OPN- OPN+/+ group at postnatal days 6 and 8. Behavior tests showed impaired memory and learning ability in OPN- OPN+/+ pups. In addition, our study revealed increased expression of myelination-related proteins and elevated proliferation and differentiation of NG-2 glia into oligodendrocytes in the brain of OPN+ OPN+/+ pups, accompanied by increased activation of ERK-1/2 and PI3K/Akt signaling. We concluded that milk OPN can play an important role in brain development and behavior in infancy by promoting myelination.-Jiang, R., Prell, C., Lönnerdal, B. Milk osteopontin promotes brain development by up-regulating osteopontin in the brain in early life.
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