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Anti-apoptotic role of omega-3-fatty acids in developing brain: perinatal hypothyroid rat cerebellum as apoptotic model.
- Source :
-
International journal of developmental neuroscience : the official journal of the International Society for Developmental Neuroscience [Int J Dev Neurosci] 2009 Jun; Vol. 27 (4), pp. 377-83. Date of Electronic Publication: 2009 Mar 05. - Publication Year :
- 2009
-
Abstract
- Inadequate maternal intake of omega-3-fatty acids (omega3 FAs) causes adverse neurodevelopmental outcome in the progeny; however, their molecular mechanism of action is obscure. Since omega3 FAs are known to inhibit neuronal apoptosis during neuro-degeneration, we investigated their possible contribution in regulating neuronal apoptosis during brain development. Using rat model of hypothyroidism-induced neuronal apoptosis, we provide evidence for anti-apoptotic role of omega3 FAs during cerebellar development. omega3 FAs were supplemented as a mixture of docosahexaenoic acid (DHA) and eicosapentaenoic acid (EPA) to pregnant and lactating rats, and primary hypothyroidism was induced by administering methimazole. The cerebella from postnatal day 16 (d16) pups were isolated, and studies on apoptosis were conducted. We observed that omega3 FA-supplementation significantly reduced DNA fragmentation and caspase-3 activation in developing cerebellum of hypothyroid pups. The protection provided by omega3 FAs was associated with their ability to prevent increases in the level of pro-apoptotic basal cell lymphoma protein-2 (Bcl-2)-associated X protein (Bax) in the cerebellum during thyroid hormone (TH) deficiency. omega3 FAs increased the levels of anti-apoptotic proteins like Bcl-2 and Bcl-extra large (Bcl-x(L)), known to be repressed in hypothyroidism. omega3 FAs also restored levels of cerebellar phospho (p)-AKT, phospho-extracellular regulated kinase (p-ERK) and phospho-c-Jun N-terminal kinase (p-JNK), which were altered by hypothyroid insults, without interfering with the expression of TH responsive gene, myelin basic protein (mbp). Taken together, these results supplement an insight into the molecular mechanism of action of omega3 FAs in developing brain that involves regulation of apoptotic signaling pathways under stress.
- Subjects :
- Animals
Animals, Newborn
Dietary Fats
Dietary Supplements
Extracellular Signal-Regulated MAP Kinases metabolism
Fatty Acids, Omega-3 administration & dosage
Female
Humans
Hypothyroidism chemically induced
Hypothyroidism physiopathology
In Situ Nick-End Labeling
JNK Mitogen-Activated Protein Kinases metabolism
Male
Pregnancy
Proto-Oncogene Proteins c-akt metabolism
Proto-Oncogene Proteins c-bcl-2 metabolism
Rats
Rats, Wistar
Thyroid Hormones metabolism
bcl-2-Associated X Protein metabolism
p38 Mitogen-Activated Protein Kinases metabolism
Apoptosis drug effects
Brain drug effects
Brain embryology
Brain growth & development
Cerebellum drug effects
Cerebellum pathology
Cerebellum physiology
Fatty Acids, Omega-3 pharmacology
Hypothyroidism pathology
Subjects
Details
- Language :
- English
- ISSN :
- 1873-474X
- Volume :
- 27
- Issue :
- 4
- Database :
- MEDLINE
- Journal :
- International journal of developmental neuroscience : the official journal of the International Society for Developmental Neuroscience
- Publication Type :
- Academic Journal
- Accession number :
- 19460632
- Full Text :
- https://doi.org/10.1016/j.ijdevneu.2009.02.003