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Neuroinflammation and ALS: Transcriptomic Insights into Molecular Disease Mechanisms and Therapeutic Targets

机译:神经炎炎症和ALS:转录组洞察分子疾病机制和治疗靶标

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摘要

Amyotrophic lateral sclerosis (ALS) is a neurodegenerative disease affecting the motor nervous system. Despite the mechanism underlying motor neuron death is not yet clarified, multiple pathogenic processes have been proposed to account for ALS. Among these, inflammatory/immune responses have recently gained particular interest, although there are conflicting reports on the role of these processes in ALS pathogenesis and treatment. This apparent discrepancy may be due to the absence of an effective stratification of ALS patients into subgroups with markedly different clinical, biological, and molecular features. Our research group recently described genome-wide characterization of motor cortex samples from sporadic ALS (SALS) patients, revealing the existence of molecular and functional heterogeneity in SALS. Here, we reexamine data coming from our previous work, focusing on transcriptomic changes of inflammatory-related genes, in order to investigate their potential contribution in ALS. A total of 1573 inflammatory genes were identified as differentially expressed between SALS patients and controls, characterizing distinct topological pathways and networks, suggestive of specific inflammatory molecular signatures for different patient subgroups. Besides providing promising insights into the intricate relationship between inflammation and ALS, this paper represents a starting point for the rationale design and development of novel and more effective diagnostic and therapeutic applications.
机译:肌萎缩侧面硬化症(ALS)是一种影响电动机神经系统的神经变性疾病。尽管尚未澄清的机制潜在的运动神经元死亡,已经提出了多种致病过程来解释ALS。其中,炎症/免疫反应最近获得了特别感兴趣的兴趣,尽管有关这些过程在ALS发病机制和治疗中的作用的矛盾的报道。这种明显的差异可能是由于在具有明显不同的临床,生物学和分子特征的亚组中没有有效分层。我们的研究组最近描述了来自孢子族(SAL)患者的运动皮质样品的基因组鉴定,揭示了Sals中的分子和功能异质性的存在。在这里,我们重新征求来自我们以前的工作的数据,重点关注炎症相关基因的转录组变化,以便调查其在ALS中的潜在贡献。在Sals患者和对照组织之间鉴定了总共1573个炎症基因,表征了不同患者亚组的特异性炎症分子鉴定的表现出不同的态态途径和网络。除了提供有希望进入炎症和ALS之间的复杂关系的有希望的见解,这篇论文代表了基本基础设计和开发的新颖和更有效的诊断和治疗应用的起点。

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