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聚二乙炔脂质体中的荧光共振能量转移

Fluorescence resonance energy transfer in polydiacetylene liposomes.

作者信息

Li Xuelian, Matthews Shelton, Kohli Punit

机构信息

Department of Chemistry and Biochemistry, Southern Illinois University, Carbondale, Illinois 62901, USA.

出版信息

J Phys Chem B. 2008 Oct 23;112(42):13263-72. doi: 10.1021/jp804640p. Epub 2008 Sep 25.

Abstract

Conjugated polydiacetylene (PDA) possessing stimuli-responsive properties has been intensively investigated for developing efficient sensors. We report here fluorescence resonance energy transfer (FRET) in liposomes synthesized using different molar ratios of dansyl-tagged diacetylene and diacetylene-carboxylic acid monomers. Photopolymerization of diacetylene resulted in cross-linked PDA liposomes. We used steady-state electronic absorption, emission, and fluorescence anisotropy (FA) analysis to characterize the thermal-induced FRET between dansyl fluorophores (donor) and PDA (acceptor). We found that the monomer ratio of acceptor to donor ( R ad) and length of linkers (functional part that connects dansyl fluorophores to the diacetylene group in the monomer) strongly affected FRET. For R ad = 10 000, the acceptor emission intensity was amplified by more than 18 times when the liposome solution was heated from 298 to 338 K. A decrease in R ad resulted in diminished acceptor emission amplification. This was primarily attributed to lower FRET efficiency between donors and acceptors and a higher background signal. We also found that the FRET amplification of PDA emissions after heating the solution was much higher when dansyl was linked to diacetylene through longer and flexible linkers than through shorter linkers. We attributed this to insertion of dansyl in the bilayer of the liposomes, which led to an increased dansyl quantum yield and a higher interaction of multiple acceptors with limited available donors. This was not the case for shorter and more rigid linkers where PDA amplification was much smaller. The present studies aim at enhancing our understanding of FRET between fluorophores and PDA-based conjugated liposomes. Furthermore, receptor tagged onto PDA liposomes can interact with ligands present on proteins, enzymes, and cells, which will produce emission sensing signal. Therefore, using the present approach, there exist opportunities for designing FRET-based highly sensitive and selective chemical and biochemical sensors.

摘要

具有刺激响应特性的共轭聚二乙炔(PDA)已被广泛研究用于开发高效传感器。我们在此报告了使用不同摩尔比的丹磺酰标记的二乙炔和二乙炔羧酸单体合成的脂质体中的荧光共振能量转移(FRET)。二乙炔的光聚合导致形成交联的PDA脂质体。我们使用稳态电子吸收、发射和荧光各向异性(FA)分析来表征丹磺酰荧光团(供体)和PDA(受体)之间的热诱导FRET。我们发现受体与供体的单体比例(Rad)和连接子长度(将丹磺酰荧光团连接到单体中二乙炔基团的功能部分)强烈影响FRET。当Rad = 10000时,脂质体溶液从298 K加热到338 K时,受体发射强度放大了18倍以上。Rad的降低导致受体发射放大减弱。这主要归因于供体和受体之间较低的FRET效率以及较高的背景信号。我们还发现,当丹磺酰通过比短连接子更长且更灵活的连接子与二乙炔连接时,溶液加热后PDA发射的FRET放大要高得多。我们将此归因于丹磺酰插入脂质体双层中,这导致丹磺酰量子产率增加以及多个受体与有限的可用供体之间的相互作用增强。对于短且更刚性的连接子,情况并非如此,此时PDA放大要小得多。本研究旨在加深我们对荧光团与基于PDA的共轭脂质体之间FRET的理解。此外,标记在PDA脂质体上的受体可以与蛋白质、酶和细胞上存在的配体相互作用,这将产生发射传感信号。因此,使用本方法,存在设计基于FRET的高灵敏度和选择性化学及生化传感器的机会。

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Fluorescence resonance energy transfer in polydiacetylene liposomes.聚二乙炔脂质体中的荧光共振能量转移
J Phys Chem B. 2008 Oct 23;112(42):13263-72. doi: 10.1021/jp804640p. Epub 2008 Sep 25.

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