The present invention relates to a novel coumarin derivative, to a method for preparing the same, and a multi-fluorescent substance that includes a plurality of the coumarin derivatives and is able to emit light using an LED light source. A novel coumarin derivative multi-fluorescent substance according to the present invention has an optimal emission wavelength band of 512 nm to 590 nm and thereby is effective in improving a signal intensity and stability since light emission using an LED light source is possible.
In addition, higher fluorescence reactivity is exhibited compared to coumarin fluorescent substances known in the related arts since one molecule has a plurality of fluorescent substances, and the problem of the coumarin fluorescent substance possibly binding to a binding site of the antigen of the antibody is solved since fluorescence detection is possible even when a minimum number of fluorescent substance molecules bind to an antibody.
Moreover, the novel coumarin derivative multi-fluorescent substance according to the present invention is suitably used in a fluorescent-linked immunosorbent assay (FLISA) and a rapid fluorescent immunochromatographic test (FICT) as an LED-based microfluorescent quantitative biosensor for diagnosis, therefore, diseases such as malaria may be rapidly and quantitatively analyzed.
本发明涉及一种新型
香豆素衍
生物、其制备方法以及包含多种
香豆素衍
生物的多荧光物质,该多荧光物质能够使用LED光源发光。本发明的新型
香豆素衍
生物多荧光物质具有512nm至590nm的最佳发射波长带,因此能够通过使用LED光源发光来有效提高信号强度和稳定性。此外,与相关技术中已知的
香豆素荧光物质相比,由于一种分子具有多种荧光物质,因此表现出更高的荧光反应性,并且即使最少量的荧光物质分子与
抗体结合,也可以进行荧光检测,从而解决了
香豆素荧光物质可能与
抗体的抗原结合位点结合的问题。此外,本发明的新型
香豆素衍
生物多荧光物质可作为基于LED的微荧光定量
生物传感器,在荧光联合免疫吸附测定(FLI
SA)和快速荧光免疫层析试验(FICT)中得到适当使用,因此,可以快速和定量地分析疟疾等疾病。