School of Pharmacy, Fudan University, 826 Zhangheng Road, Shanghai, 201203, China.
School of Pharmacy, Fudan University, 826 Zhangheng Road, Shanghai, 201203, China.
Talanta. 2022 Jun 1;243:123370. doi: 10.1016/j.talanta.2022.123370. Epub 2022 Mar 12.
Oxidative stress plays significant roles in the development of various diseases. HO acts as a signaling molecule physiologically or harmful substance pathologically and the mitochondria are one of the most active places for the generation of HO. Thus, a new mitochondria-targeted probe 1 for HO detection was synthesized herein, based on D-π-A structure with a large Stokes shift (150 nm) due to its ICT process. To improve its water solubility and sensitivity, probe 2 with PEG chain and probe 3 with two responsive boronated groups were then designed based on the structure of probe 1. As a result, the fluorescence intensity of probe 2 was far higher than that of probe 1 and probe 3 not only in vitro experiment but in cell imaging study with a larger linear range and signal-to-noise ratio, rendering it the best probe for further exogenous and endogenous HO detection in Hela cells.
氧化应激在各种疾病的发展中起着重要作用。HO 作为一种信号分子在生理上发挥作用,或作为病理上的有害物质,而线粒体是 HO 产生的最活跃的地方之一。因此,本文基于 D-π-A 结构合成了一种新的线粒体靶向 HO 检测探针 1,由于其 ICT 过程,具有较大的斯托克斯位移(150nm)。为了提高其水溶性和灵敏度,然后根据探针 1 的结构设计了带有 PEG 链的探针 2 和带有两个响应硼基团的探针 3。结果,探针 2 的荧光强度不仅在体外实验中,而且在细胞成像研究中都远远高于探针 1 和探针 3,具有更大的线性范围和信噪比,使其成为进一步在外源性和内源性 HO 检测中在 Hela 细胞中使用的最佳探针。