Cellular Damage and Prevention in Childhood Hydrocephalus
- 1 July 2004
- journal article
- review article
- Published by Wiley in Brain Pathology
- Vol. 14 (3) , 317-324
- https://doi.org/10.1111/j.1750-3639.2004.tb00071.x
Abstract
The literature concerning brain damage due to hydrocephalus, especially in children and animal models, is reviewed. The following conclusions are reached: 1. Hydrocephalus has a deleterious effect on brain that is dependent on magnitude and duration of ventriculomegaly and modified by the age of onset. 2. Animal models have many histopathological similarities to humans and can be used to understand the pathogenesis of brain damage. 3. Periventricular axons and myelin are the primary targets of injury. The pathogenesis has similarities to traumatic and ischemic white matter injury. Secondary changes in neurons reflect compensation to the stress or ultimately the disconnection. 4. Altered efflux of extracellular fluid could result in accumulation of waste products that might interfere with neuron function. Further research is needed in this as well as the blood-brain barrier in hydrocephalus. 5. Some, but not all, of the changes are preventable by shunting CSF. However, axon loss cannot be reversed, therefore shunting in a given case must be considered carefully. 6. Experimental work has so far failed to show any benefit in reducing CSF production. Pharmacologic protection of the brain, at least as a temporary measure, holds some promise but more pre-clinical research is required.Keywords
This publication has 132 references indexed in Scilit:
- Cerebral Hypoperfusion and Delayed Hippocampal Response After Induction of Adult Kaolin HydrocephalusStroke, 2003
- Recommendations for Standards Regarding Preclinical Neuroprotective and Restorative Drug DevelopmentStroke, 1999
- Angiotensin II Receptor Content Within the Circumventricular Organs Increases After Experimental Hydrocephalus in RatsActa Neurochirurgica, 1999
- Clinical, Gross Morphological and Neurochemical Follow-Up in Normal, Hydrocephalic and Hydrocephalic-Shunted RatsEuropean Journal of Pediatric Surgery, 1998
- Ependymal development, proliferation, and functions: A reviewMicroscopy Research and Technique, 1998
- Effects of Hydrocephalus on Nitric Oxide Neurones in the Brain of the HTx RatEuropean Journal of Pediatric Surgery, 1997
- The ependyma: A protective barrier between brain and cerebrospinal fluidGlia, 1995
- Hydrocephalus-Induced Changes in the Composition of Cerebrospinal FluidNeurosurgery, 1989
- Catheter Shunts for Fetal Hydronephrosis and HydrocephalusNew England Journal of Medicine, 1986
- Management of hydrocephalus in infancy: Use of acetazolamide and furosemide to avoid cerebrospinal fluid shuntsThe Journal of Pediatrics, 1985