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新型光稳定苝衍生物的光物理性质:在单分子研究和膜标记中的应用。

Photophysics of new photostable rylene derivatives: applications in single-molecule studies and membrane labelling.

机构信息

Department of Chemistry and Center for Nanoscience (CeNS), Ludwig-Maximilians-Universität München, Butenandtstrasse 11, 81377 München, Germany.

出版信息

Chemphyschem. 2011 Jun 6;12(8):1588-95. doi: 10.1002/cphc.201000666. Epub 2010 Dec 13.

DOI:10.1002/cphc.201000666
PMID:21154947
Abstract

Three new photostable rylene dyes for applications in single molecule studies and membrane labelling have been synthesized and their photophysical properties were characterized. These dyes differ in the number of polyethylene glycol (PEG) chains attached to the core structure which is either a perylene derivate or a terrylene derivate. One perylene and one terrylene dye is modified with two PEG chains, and another terrylene derivate has four PEG chains. The results show that the terrylene dye with four PEG chains (4-PEG-TDI) forms soluble nonfluorescing H-aggregates in water, so that the absorption bands are blue-shifted with respect to those of the fluorescing monomeric form. The presence of a surfactant such as Pluronic P123 leads to the disruption of the aggregates due to the formation of monomers in micelles and a strong increase in fluorescence. Application for labelling cell membranes can be considered for this dye since it adsorbs in a similar way as monomer to a lipid bilayer. Furthermore a single-molecule study of all three rylene dyes in polymeric films of PMMA showed excellent photostability with respect to photobleaching, far above the photostability of other common water-soluble dyes, such as Oxazine-1, Atto647N, Cy5, Alexa647 and Rhodamin6G. Especially 4-PEG-TDI seems to be a promising dye for membrane labelling with its high photostability.

摘要

三种新的光稳定苝染料已被合成,可用于单分子研究和膜标记,并对其光物理性质进行了表征。这些染料在连接到核心结构的聚乙二醇(PEG)链的数量上有所不同,核心结构要么是苝衍生物,要么是三亚苯衍生物。一个苝染料和一个三亚苯染料用两个 PEG 链修饰,另一个三亚苯衍生物有四个 PEG 链。结果表明,带有四个 PEG 链的三亚苯染料(4-PEG-TDI)在水中形成可溶性非荧光 H-聚集体,因此吸收带相对于荧光单体形式发生蓝移。表面活性剂如 Pluronic P123 的存在会由于胶束中单体的形成和荧光的强烈增加而破坏聚集体。由于该染料以类似于单体的方式吸附到脂质双层上,因此可以考虑将其用于标记细胞膜。此外,在 PMMA 的聚合物薄膜中对所有三种苝染料进行的单分子研究表明,与其他常见的水溶性染料(如 Oxazine-1、Atto647N、Cy5、Alexa647 和 Rhodamin6G)相比,其光漂白稳定性非常好。特别是 4-PEG-TDI 似乎是一种很有前途的用于膜标记的染料,因为它具有很高的光稳定性。

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