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Published on: June 17, 2015
Expression of amyloid precursor protein (beta-APP) in the neonatal brain following hypoxic ischaemic injury
K Baiden-Amissah1, U Joashi, R Blumberg
1Division of Investigative Science, Imperial College School of Medicine, Hammersmith Hospital, London, UK.
Insights
Beta-amyloid precursor protein (beta-APP) is upregulated in the infant brain following hypoxic ischaemic injury (HII). This finding suggests beta-APP plays a role in the neonatal brain's acute adaptive response to HII.
Area of Science:
- Neonatal neurology
- Neuroscience
- Biochemistry
Background:
- Perinatal hypoxic ischaemic injury (HII) is a significant cause of neonatal mortality and long-term neurological deficits.
- Understanding the molecular mechanisms of HII is crucial for developing effective treatments for affected infants.
- Beta-amyloid precursor protein (beta-APP) is involved in neuronal functions and its expression increases in the adult brain after HII.
Purpose of the Study:
- To investigate whether beta-amyloid precursor protein (beta-APP) expression is also elevated in the infant brain as an acute adaptive response to perinatal hypoxic ischaemic injury (HII).
Main Methods:
- Utilized immunohistochemistry and Western blotting to analyze cerebral beta-APP expression.
- Examined 14-day-old rat pups subjected to unilateral HII.
- Assessed beta-APP levels in 10 term human infants who died between 12 hours and 16 months post-severe perinatal HII.
Main Results:
- In rat pups, beta-APP expression increased within 2 hours, peaked at 24 hours (fourfold above controls), and gradually decreased over 4 days post-HII.
- Beta-APP induction was observed bilaterally, with higher expression on the injured side in rats.
- In human infants, increased beta-APP, primarily in neurons, was detected within 24 hours of HII, peaking in those deceased within 3 days.
Conclusions:
- Beta-amyloid precursor protein (beta-APP) induction is confirmed as part of the acute adaptive response in the neonatal brain following hypoxic ischaemic injury (HII).
- Beta-APP expression is elevated in both injured and apparently undamaged brain areas in neonates after HII.
Abstract:
Perinatal hypoxic ischaemic brain injury (HII) is a major cause of neonatal mortality and long-term neurological morbidity. An understanding of the molecular events which follow HII may lead to novel treatments to improve the final outcome for affected infants. The beta-amyloid precursor protein (beta-APP) is a widely expressed transmembrane protein whose proposed functions include stabilization of neuronal calcium fluxes, inhibition of the clotting cascade and cell-cell or cell-matrix adhesion. Normally present at low levels in neurons its expression is induced as part of the acute response of the adult brain to HII. This study aimed to determine whether beta-APP is also part of the acute adaptive response of the infant brain to HII. Immunohistochemistry and Western blotting were used to assess cerebral beta-APP expression in 14-day-old rat pups subjected to unilateral HII, and in 10 term human infants, who died between 12 h and 16 months after severe perinatal HII. In the rat pups beta-APP expression was increased by 2 h post-injury, peaked, fourfold above control levels, at 24 h and gradually declined over the following 4 days. Expression was induced bilaterally, but was greater on the side of injury. In the human infants, increased, predominantly neuronal expression of beta-APP, was detectable immunohistochemically within 24 h of injury and was greatest in those infants dying within 3 days. Expression was particularly strong in the areas showing histological evidence of injury, but was also seen in apparently undamaged areas. We conclude that beta-APP induction is part of the the acute adaptive response of the neonatal brain to HII.
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