State Key Laboratory of Bioreactor Engineering, Shanghai Key Laboratory of Chemical Biology, School of Pharmacy, Shanghai Key Laboratory of New Drug Design, School of Pharmacy, East China University of Science and Technology, Shanghai 200237, China.
School of Environment and Biological Engineering, Nanjing University of Science and Technology, Nanjing, Jiangsu 210094, China.
Free Radic Biol Med. 2018 Aug 1;123:1-7. doi: 10.1016/j.freeradbiomed.2018.04.563. Epub 2018 Apr 27.
Nitric oxide (NO) donors are valuable tools to probe the profound implications of NO in health and disease. The elusive nature of NO bio-relevance has largely limited the use of spontaneous NO donors and promoted the development of next generation NO donors, whose NO release is not only stimulated by a trigger, but also readily monitored via a judiciously built-in self-calibration mechanism. Light is without a doubt the most sensitive, versatile and biocompatible method of choice for both triggering and monitoring, for applications in complex biological matrices. Herein, we designed and synthesized an N-nitroso rhodamine derivative (NOD560) as a photo-triggered and photo-calibrated NO donor to address this need. NOD560 is essentially non-fluorescent. Upon irradiation by green light (532 nm), it efficiently release NO and a rhodamine dye, the dramatic fluorescence turn-on from which could be harnessed to conveniently monitor the localization, flux, and dose of NO release. The potentials of NOD560 for in vitro biological applications were also exemplified in in vitro biological models, i.e. mesenchymal stem cell (MSC) migration suppression. NOD560 is expected to complement the existing NO donors and find widespread applications in chemical biological studies.
一氧化氮(NO)供体是探究 NO 在健康和疾病中的深远影响的有价值的工具。由于 NO 生物相关性的难以捉摸性质,在很大程度上限制了自发 NO 供体的使用,并促进了新一代 NO 供体的发展,其 NO 释放不仅受到触发因素的刺激,还可以通过精心构建的内置自我校准机制进行方便的监测。对于在复杂生物基质中的应用,光无疑是触发和监测的最敏感、最通用和最具生物相容性的方法。在此,我们设计并合成了一种 N-亚硝基罗丹明衍生物(NOD560)作为光触发和光校准的 NO 供体来满足这一需求。NOD560 基本上没有荧光。在绿光(532nm)照射下,它能有效地释放 NO 和罗丹明染料,其荧光的急剧开启可用于方便地监测 NO 释放的定位、通量和剂量。NOD560 在体外生物学模型中的应用潜力,例如间充质干细胞(MSC)迁移抑制,也在体外生物学模型中得到了例证。NOD560 有望补充现有的 NO 供体,并在化学生物学研究中得到广泛应用。