Mathew Samatha, Sivasubbu Sridhar
CSIR Institute of Genomics and Integrative Biology (CSIR-IGIB), New Delhi, India.
Academy of Scientific and Innovative Research (AcSIR), Ghaziabad, India.
Front Genet. 2022 Apr 13;13:834367. doi: 10.3389/fgene.2022.834367. eCollection 2022.
The rapid and high throughput discovery of long non coding RNAs (lncRNAs) has far outstripped the functional annotation of these novel transcripts in their respective cellular contexts. The cells of the blood brain barrier (BBB), especially the cerebrovascular endothelial cells (CVECs), are strictly regulated to maintain a controlled state of homeostasis for undisrupted brain function. Several key pathways are understood in CVEC function that lead to the development and maintenance of their barrier properties, the dysregulation of which leads to BBB breakdown and neuronal injury. Endothelial lncRNAs have been discovered and functionally validated in the past decade, spanning a wide variety of regulatory mechanisms in health and disease. We summarize here the lncRNA-mediated regulation of established pathways that maintain or disrupt the barrier property of CVECs, including in conditions such as ischemic stroke and glioma. These lncRNAs namely regulate the tight junction assembly/disassembly, angiogenesis, autophagy, apoptosis, and so on. The identification of these lncRNAs suggests a less understood mechanistic layer, calling for further studies in appropriate models of the blood brain barrier to shed light on the lncRNA-mediated regulation of CVEC function. Finally, we gather various approaches for validating lncRNAs in BBB function in human organoids and animal models and discuss the therapeutic potential of CVEC lncRNAs along with the current limitations.
长链非编码RNA(lncRNA)的快速高通量发现,已远远超过了在各自细胞环境中对这些新型转录本的功能注释。血脑屏障(BBB)的细胞,尤其是脑血管内皮细胞(CVEC),受到严格调控以维持内稳态的可控状态,从而保证大脑功能不受干扰。目前已知几种关键途径参与CVEC功能,这些途径导致其屏障特性的形成和维持,而这些途径的失调会导致血脑屏障破坏和神经元损伤。在过去十年中,内皮lncRNA已被发现并在功能上得到验证,其涉及健康和疾病中的多种调控机制。我们在此总结lncRNA介导的对维持或破坏CVEC屏障特性的既定途径的调控,包括在缺血性中风和胶质瘤等病症中。这些lncRNA分别调控紧密连接的组装/拆卸、血管生成、自噬、凋亡等。这些lncRNA的鉴定提示了一个尚未完全了解的机制层面,需要在合适的血脑屏障模型中进行进一步研究,以阐明lncRNA介导的对CVEC功能的调控。最后,我们收集了在人类类器官和动物模型中验证lncRNA在血脑屏障功能方面的各种方法,并讨论了CVEC lncRNA的治疗潜力以及当前的局限性。