斑马雀脑外伤后硫酸软骨素蛋白多糖 mRNA 的表达和降解

IF 2.7 4区 医学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY Journal of chemical neuroanatomy Pub Date : 2024-04-15 DOI:10.1016/j.jchemneu.2024.102418
Adam Talwalkar , Gage Haden , Kelli A. Duncan
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引用次数: 0

摘要

创伤性脑损伤(TBI)是导致全球死亡和残疾的主要原因之一。从损伤后数分钟到数月不等,损伤可导致复杂的病理生理学,从而导致暂时性或永久性的功能障碍,包括一系列神经退行性症状。这些变化可能包括行为失调、记忆功能障碍和包括抑郁症在内的情绪变化。由于损伤类型、位置和涉及脑组织的范围不同,创伤性脑损伤导致的损伤的性质和严重程度也大相径庭。为了应对损伤,大脑会诱发结构和功能变化,以促进修复并尽量缩小损伤范围。尽管创伤性脑损伤发病率很高,但有效的治疗策略却很有限。PNNs 是神经元细胞外基质(ECM)的一部分,在成人大脑中介导突触稳定,进而促进神经可塑性。它们主要与抑制性 GABA 能中间神经元相关,被认为负责维持大脑的兴奋/抑制平衡。PNNs的主要结构成分包括多种硫酸软骨素蛋白多糖(CSPGs)以及其他结构蛋白。在此,我们研究了损伤对 CSPG 表达的影响,特别是围绕侧变分子的变化。为了研究损伤后 CSPG 的表达,成年雄性斑马雀和雌性斑马雀分别接受了双侧穿透性损伤或无损伤,并在损伤后 1 天或 7 天对 CSPG 的成分进行了 qPCR 分析和免疫组化检查。接下来,为了确定 CSPGs 以及 PNNs 是否应成为治疗干预的目标,在损伤时用软骨素酶 ABC(ChABC)降解了 CSPGs 侧链,并对 CSPGs 分子进行了检测。此外,还对 CSPG 降解后 GABA 受体 mRNA 和芳香化酶 mRNA 的表达进行了量化,因为它们与神经元存活和神经发生有关。我们的数据表明,CSPG分子在损伤后会发生变化,可能会有一个短暂的突触重组期,针对CSPG侧链的治疗可通过降低GABA mRNA受体的表达,同时也降低芳香化酶的表达,成功地进一步针对这一短暂的关键期进行治疗。
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Chondroitin sulfate proteoglycans mRNA expression and degradation in the zebra finch following traumatic brain injury

Traumatic brain injury (TBI) is one of the leading causes of fatality and disability worldwide. From minutes to months following damage, injury can result in a complex pathophysiology that can lead to temporary or permanent deficits including an array of neurodegenerative symptoms. These changes can include behavioral dysregulation, memory dysfunctions, and mood changes including depression. The nature and severity of impairments resulting from TBIs vary widely given the range of injury type, location, and extent of brain tissue involved. In response to the injury, the brain induces structural and functional changes to promote repair and minimize injury size. Despite its high prevalence, effective treatment strategies for TBI are limited. PNNs are part of the neuronal extracellular matrix (ECM) that mediate synaptic stabilization in the adult brain and thus neuroplasticity. They are associated mostly with inhibitory GABAergic interneurons and are thought to be responsible for maintaining the excitatory/inhibitory balance of the brain. The major structural components of PNNs include multiple chondroitin sulfate proteoglycans (CSPGs) as well as other structural proteins. Here we examine the effects of injury on CSPG expression, specifically around the changes in the side change moieties. To investigate CSPG expression following injury, adult male and female zebra finches received either a bilateral penetrating, or no injury and qPCR analysis and immunohistochemistry for components of the CSPGs were examined at 1- or 7-days post-injury. Next, to determine if CSPGs and thus PNNs should be a target for therapeutic intervention, CSPG side chains were degraded at the time of injury with chondroitinase ABC (ChABC) CSPGs moieties were examined. Additionally, GABA receptor mRNA and aromatase mRNA expression was quantified following CSPG degradation as they have been implicated in neuronal survival and neurogenesis. Our data indicate the CSPG moieties change following injury, potentially allowing for a brief period of synaptic reorganization, and that treatments that target CSPG side chains are successful in further targeting this brief critical period by decreasing GABA mRNA receptor expression, but also decreasing aromatase expression.

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来源期刊
Journal of chemical neuroanatomy
Journal of chemical neuroanatomy 医学-神经科学
CiteScore
4.50
自引率
3.60%
发文量
87
审稿时长
62 days
期刊介绍: The Journal of Chemical Neuroanatomy publishes scientific reports relating the functional and biochemical aspects of the nervous system with its microanatomical organization. The scope of the journal concentrates on reports which combine microanatomical, biochemical, pharmacological and behavioural approaches. Papers should offer original data correlating the morphology of the nervous system (the brain and spinal cord in particular) with its biochemistry. The Journal of Chemical Neuroanatomy is particularly interested in publishing important studies performed with up-to-date methodology utilizing sensitive chemical microassays, hybridoma technology, immunocytochemistry, in situ hybridization and receptor radioautography, to name a few examples. The Journal of Chemical Neuroanatomy is the natural vehicle for integrated studies utilizing these approaches. The articles will be selected by the editorial board and invited reviewers on the basis of their excellence and potential contribution to this field of neurosciences. Both in vivo and in vitro integrated studies in chemical neuroanatomy are appropriate subjects of interest to the journal. These studies should relate only to vertebrate species with particular emphasis on the mammalian and primate nervous systems.
期刊最新文献
Editorial Board Retraction notice to “Astrocyte response to melatonin treatment in rats under high-carbohydrate high-fat diet” [J. Chem. Neuroanat. 136 (2024) 102389] Retraction notice to “Coenzyme Q10 attenuates neurodegeneration in the cerebellum induced by chronic exposure to tramadol” [J. Chem. Neuroanat. 135 (2024) 102367] Retraction notice to “Maternal diabetes-induced alterations in the expression of brain-derived neurotrophic factor in the developing rat hippocampus” [J. Chem. Neuroanat. 114(2021) 101946] Retraction notice to “Aqueous leaf extract of Phyllanthus amarus protects against oxidative stress and misfiring of dopaminergic neurons in Paraquat-induced Parkinson's disease-like model of adult Wistar rats” [J. Chem. Neuroanat. 135 (2024) 102365]
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