Yadav Rashmi, SanuKhan Rafique, Kalita Nripankar, Mendiratta Sana, Sivaramakrishnan Shreya, Murugan Shreekanth, Samanta Animesh
Molecular Sensors and Therapeutics Research Laboratory, Department of Chemistry, School of Natural Sciences, Shiv Nadar Institution of Eminence (SNIoE), Deemed to be University, Delhi NCR, Greater Noida, Uttar Pradesh, 201314, India.
Chem Asian J. 2025 Feb 17;20(4):e202401237. doi: 10.1002/asia.202401237. Epub 2024 Dec 12.
Nitric oxide is an important signalling molecule responsible for maintaining body's homeostasis. Any dysregulation in NO can lead to many pathological conditions like atherosclerosis, cancers, neurodegenerative disorders, hypertension and inflammation. Several, sensing technologies are used for sensing NO. Among these, fluorescent imaging is considered to be one of the most efficient. Till date, approximately 123 fluorescent probes are reported related to nitric oxide (NO) sensing fluorescent probes for the sensitive, selective, and real-time detection of NO at both the cellular and subcellular levels. In the past five years, around 41 fluorescent probes and four review articles have been published, specifically focusing on the detection of nitric oxide. Despite considerable advancements in this area, no systematic review has summarized various organelle-targeting NO-sensing fluorescent probes. Herein, we summarized last five years from 2019 to 2024 along with the key pioneering research in this field covering divergent roles of NO across various cellular organelles. We have included 41 probes by classifying into different organelle targeting sections. We strongly believe this review will provide an advanced summary of NO specific fluorescent probes and their applications for monitoring the progression of diseases in in vitro to in vivo models such as drosophila, zebrafish, mouse models.
一氧化氮是一种重要的信号分子,负责维持人体的内环境稳定。一氧化氮的任何失调都可能导致许多病理状况,如动脉粥样硬化、癌症、神经退行性疾病、高血压和炎症。有几种传感技术用于检测一氧化氮。其中,荧光成像被认为是最有效的技术之一。迄今为止,已报道了约123种与一氧化氮(NO)传感荧光探针相关的荧光探针,用于在细胞和亚细胞水平上灵敏、选择性和实时地检测NO。在过去五年中,已发表了约41种荧光探针和四篇综述文章,特别关注一氧化氮的检测。尽管该领域取得了相当大的进展,但尚未有系统综述总结各种细胞器靶向的NO传感荧光探针。在此,我们总结了2019年至2024年的过去五年,以及该领域的关键开创性研究,涵盖了NO在各种细胞器中的不同作用。我们通过分类到不同的细胞器靶向部分纳入了41种探针。我们坚信,这篇综述将提供一份关于NO特异性荧光探针及其在监测从体外到体内模型(如果蝇、斑马鱼、小鼠模型)疾病进展中的应用的高级总结。