期刊文献+

Regeneration of neurotransmission transcriptome in a model of epileptic encephalopathy after antiinflammatory treatment 被引量:2

Regeneration of neurotransmission transcriptome in a model of epileptic encephalopathy after antiinflammatory treatment
下载PDF
导出
摘要 Inflammation is an established etiopathogenesis factor of infantile spasms(IS), a therapy-resistant epileptic syndrome of infancy. We investigated the IS-associated transcriptomic alterations of neurotransmission in rat hypothalamic arcuate nucleus, how they are corrected by antiinflamatory treatments and whether there are sex differences. IS was triggered by repeated intraperitoneal administration of N-methyl-D-aspartic acid following anti-inflammatory treatment(adreno-cortico-tropic-hormone(ACTH) or PMX53)or normal saline vehicle to prenatally exposed to betamethasone young rats. We found that treatments with both ACTH and PMX53 resulted in substantial recovery of the genomic fabrics of all types of synaptic transmission altered by IS. While ACTH represents the first line of treatment for IS, the even higher efficiency of PMX53(an antagonist of the complement C5 a receptor) in restoring the normal transcriptome was not expected. In addition to the childhood epilepsy, the recovery of the neurotransmission genomic fabrics by PMX53 also gives hope for the autism spectrum disorders that share a high comorbidity with IS. Our results revealed significant sex dichotomy in both IS-associated transcriptomic alterations(males more affected) and in the efficiency of PMX53 anti-inflammatory treatment(better for males). Our data further suggest that anti-inflammatory treatments correcting alterations in the inflammatory transcriptome may become successful therapies for refractory epilepsies. Inflammation is an established etiopathogenesis factor of infantile spasms(IS), a therapy-resistant epileptic syndrome of infancy. We investigated the IS-associated transcriptomic alterations of neurotransmission in rat hypothalamic arcuate nucleus, how they are corrected by antiinflamatory treatments and whether there are sex differences. IS was triggered by repeated intraperitoneal administration of N-methyl-D-aspartic acid following anti-inflammatory treatment(adreno-cortico-tropic-hormone(ACTH) or PMX53)or normal saline vehicle to prenatally exposed to betamethasone young rats. We found that treatments with both ACTH and PMX53 resulted in substantial recovery of the genomic fabrics of all types of synaptic transmission altered by IS. While ACTH represents the first line of treatment for IS, the even higher efficiency of PMX53(an antagonist of the complement C5 a receptor) in restoring the normal transcriptome was not expected. In addition to the childhood epilepsy, the recovery of the neurotransmission genomic fabrics by PMX53 also gives hope for the autism spectrum disorders that share a high comorbidity with IS. Our results revealed significant sex dichotomy in both IS-associated transcriptomic alterations(males more affected) and in the efficiency of PMX53 anti-inflammatory treatment(better for males). Our data further suggest that anti-inflammatory treatments correcting alterations in the inflammatory transcriptome may become successful therapies for refractory epilepsies.
出处 《Neural Regeneration Research》 SCIE CAS CSCD 2018年第10期1715-1718,共4页 中国神经再生研究(英文版)
基金 supported by Citizens United for Research in Epilepsy (CURE) Infantile Spasms Research Initiative(to LV and DAI) NIH grant NS-072966(to LV)
关键词 adreno-cortico-tropic-hormone autism cholinergic transmission HYPOTHALAMUS infantile spasms microarrays PMX53 sex differences adreno-cortico-tropic-hormone autism cholinergic transmission hypothalamus infantile spasms microarrays PMX53 sex differences
  • 相关文献

同被引文献14

引证文献2

二级引证文献5

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部