Development of bi-oligo (ethylene glycol)-functionalized fluorescent probe for two-photon and noninvasive imaging in Arabidopsis thaliana

Jingzhi Du , Keming Chen , Zhenyang Yu , Yuhao Qiao , Jiaxin Liu , Qianqian Zhai , Zhe Hu , Sheng-Gang Yang , Jun Li , Huailong Teng
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引用次数: 4

Abstract

Fluorescent probe is an important tool for investigation of biological events in plant tissues. However, the research on small-molecule based fluorescent probe for plant imaging still stays at the initial stage. In order to noninvasively achieve the subcellular information of Arabidopsis thaliana, a two-photon and fluorene based fluorophore with a bi-oligo (ethylene glycol) functional group was synthesized. Under the laser's irradiation at 750 nm, the subcellular structures of Arabidopsis thaliana including stomata and root tips were clearly observed without slicing, which displayed significant superiorities over traditional single-photon excitation microscopy. Subsequently, the above functionalized fluorophore was further modified with a recognition group (dipicolylamine) to form a smart fluorescent probe (LJTP1). As results, LJTP1 not only can sensitively detect Cu2+/S2− with fluorescence “on-off-on” response in vitro and in vivo, but also can achieve noninvasive imaging in Arabidopsis thaliana tissues under two-photon microscopy. We believe this study will open up a new mind for noninvasive imaging in plant tissues.

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拟南芥双光子无创成像双低聚乙二醇功能化荧光探针的研制
荧光探针是研究植物组织生物事件的重要工具。然而,基于小分子荧光探针的植物成像研究还停留在初级阶段。为了无创获取拟南芥的亚细胞信息,合成了一种双光子芴基的双低聚乙二醇基团荧光团。在750 nm激光照射下,无需切片即可清晰观察拟南芥的气孔和根尖等亚细胞结构,具有传统单光子激发显微镜无法比拟的优势。随后,将上述功能化的荧光团进一步用识别基团(二聚胺)修饰,形成智能荧光探针(LJTP1)。结果表明,LJTP1不仅能在体外和体内以“开-关-开”的荧光反应灵敏地检测Cu2+/S2−,而且能在双光子显微镜下对拟南芥组织进行无创成像。我们相信这项研究将为植物组织的无创成像开辟新的思路。
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