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Published on: July 13, 2014
Vascular Contributions to the Neurobiological Effects of Prenatal Alcohol Exposure
Sarah Z Momin1, Jacqueline T Le1, Rajesh C Miranda1
1Texas A&M University School of Medicine, Bryan, TX.
Insights
Prenatal alcohol exposure (PAE) causes significant vascular deficits, impacting brain and overall health in Fetal Alcohol Spectrum Disorders (FASD). Research highlights ocular vasculature as a potential biomarker for neurovascular health in FASD.
Area of Science:
- Neuroscience
- Cardiovascular Science
- Developmental Biology
Background:
- Fetal alcohol spectrum disorders (FASD) are primarily recognized for brain-based disabilities.
- Cardiovascular effects of prenatal alcohol exposure (PAE) are documented but less understood.
- Vascular deficits from PAE may significantly worsen neurobehavioral outcomes and health in individuals with FASD.
Purpose of the Study:
- To systematically review and assess the research strength on vascular effects of PAE.
- To understand the contribution of vascular deficits to FASD severity and health outcomes.
Main Methods:
- Systematic review of research articles from PubMed.
- Selection of 40 pertinent papers, including human and animal model studies.
Main Results:
- Human studies identified cardiac defects and vascular abnormalities (e.g., tortuosity, basement membrane defects, cerebral vasculature changes).
- Animal studies revealed PAE-induced alterations in cerebral artery vasodilation/vasoconstriction, affecting blood flow into middle age.
- Ocular vascular parameters, molecular mechanisms (autophagy, inflammation, mitochondria), and signaling pathways were identified as significant.
Conclusions:
- The cardiovascular system is significantly affected by PAE, alongside the brain.
- Vascular pathology is a potential contributor to lifelong neurobehavioral and health issues in FASD.
- Ocular vasculature may serve as a diagnostic biomarker for neurovascular health in FASD.
Abstract:
Fetal alcohol spectrum disorders (FASD) are often characterized as a cluster of brain-based disabilities. Though cardiovascular effects of prenatal alcohol exposure (PAE) have been documented, the vascular deficits due to PAE are less understood, but may contribute substantially to the severity of neurobehavioral presentation and health outcomes in persons with FASD.
Methods:
We conducted a systematic review of research articles curated in PubMed to assess the strength of the research on vascular effects of PAE. 40 pertinent papers were selected, covering studies in both human populations and animal models.
Results:
Studies in human populations identified cardiac defects, and defects in vasculature, including increased tortuosity, defects in basement membranes, capillary basal hyperplasia, endarteritis, and disorganized and diminished cerebral vasculature due to PAE. Preclinical studies showed that PAE rapidly and persistently results in vasodilation of large afferent cerebral arteries, but to vasoconstriction of smaller cerebral arteries and microvasculature. Moreover, PAE continues to affect cerebral blood flow into middle-age. Human and animal studies also indicate that ocular vascular parameters may have diagnostic and predictive value. A number of intervening mechanisms were identified, including increased autophagy, inflammation and deficits in mitochondria. Studies in animals identified persistent changes in blood flow and vascular density associated with endocannabinoid, prostacyclin and nitric oxide signaling, as well as calcium mobilization.
Conclusion:
Although the brain has been a particular focus of studies on PAE, the cardiovascular system is equally affected. Studies in human populations, though constrained by small sample sizes, did link pathology in major blood vessels and tissue vasculature, including brain vasculature, to PAE. Animal studies highlighted molecular mechanisms that may be useful therapeutic targets. Collectively, these studies suggest that vascular pathology is a possible contributing factor to neurobehavioral and health problems across a lifespan in persons with a diagnosis of FASD. Furthermore, ocular vasculature may serve as a biomarker for neurovascular health in FASD.
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