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Modeling Encephalopathy of Prematurity Using Prenatal Hypoxia-ischemia with Intra-amniotic Lipopolysaccharide in Rats
Published on: November 20, 2015
Proteolipid protein gene mutation induces altered ventilatory response to hypoxia in the myelin-deficient rat
Martha J Miller1, Musa A Haxhiu, Paraskevi Georgiadis
1Department of Pediatrics, Case Western Reserve University and Rainbow Babies and Children's Hospital, Cleveland, Ohio 44106, USA. mjm8@po.cwru.edu
Abstract:
Pelizaeus Merzbacher disease is an X-linked dysmyelinating disorder of the CNS, resulting from mutations in the proteolipid protein (PLP) gene. An animal model for this disorder, the myelin-deficient (MD) rat, carries a point mutation in the PLP gene and exhibits a phenotype similar to the fatal, connatal disease, including extensive dysmyelination, tremors, ataxia, and death at approximately postnatal day 21 (P21). We postulated that early death might result from disruption of myelinated neural pathways in the caudal brainstem and altered ventilatory response to oxygen deprivation or hypercapnic stimulus. Using barometric plethysmography to measure respiratory function, we found that the MD rat develops lethal hypoxic depression of breathing at P21, but hypercapnic ventilatory response is normal. Histologic examination of the caudal brainstem in the MD rat at this age showed extensive dysmyelination and downregulation of NMDA and to a lesser extent GABA(A) receptors on neurons in the nucleus tractus solitarius, hypoglossal nucleus, and dorsal motor nucleus of the vagus. Unexpectedly, immunoreactive PLP/DM20 was detected in neurons in the caudal brainstem. Not all biosynthetic functions and structural elements were altered in these neurons, because phosphorylated and nonphosphorylated neurofilament and choline acetyltransferase expression were comparable between MD and wild-type rats. These findings suggest that PLP is expressed in neurons in the developing brainstem and that PLP gene mutation can selectively disrupt central processing of afferent neural input from peripheral chemoreceptors, leaving the central chemosensory system for hypercapnia intact.
Insights
Pelizaeus Merzbacher disease, a CNS disorder, causes early death in myelin-deficient rats due to respiratory failure. Proteolipid protein (PLP) gene mutations disrupt brainstem pathways, affecting breathing responses.
Area of Science:
- Neuroscience
- Genetics
- Respiratory Physiology
Background:
- Pelizaeus Merzbacher disease is an X-linked CNS disorder caused by mutations in the proteolipid protein (PLP) gene.
- The myelin-deficient (MD) rat model mimics this disease, showing dysmyelination and early death around postnatal day 21 (P21).
Purpose of the Study:
- To investigate if early death in MD rats results from disrupted caudal brainstem pathways and altered ventilatory responses.
- To explore the role of PLP expression in neurons and its impact on respiratory control.
Main Methods:
- Barometric plethysmography was used to measure respiratory function in MD and wild-type rats.
- Histological examination of the caudal brainstem assessed myelination and receptor expression (NMDA, GABA(A)).
Main Results:
- MD rats exhibited lethal hypoxic respiratory depression at P21, with normal hypercapnic response.
- Caudal brainstem showed dysmyelination and reduced NMDA/GABA(A) receptors in MD rats.
- Unexpectedly, PLP/DM20 was detected in caudal brainstem neurons, with normal neurofilament and choline acetyltransferase expression.
Conclusions:
- PLP is expressed in developing brainstem neurons.
- PLP gene mutations selectively disrupt central processing of peripheral chemoreceptor input, leading to respiratory failure.
- The central chemosensory system for hypercapnia remains intact in this model.

