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荧光 BSA 保护的 Au 纳米团簇与有机荧光团之间的共振能量转移。

Resonance energy transfer between fluorescent BSA protected Au nanoclusters and organic fluorophores.

机构信息

Center for Commercialization of Fluorescence Technologies, Department of Molecular Biology and Immunology, University of North Texas Health Science Center, 3500 Camp Bowie Blvd., Fort Worth, Texas 76107, USA.

出版信息

Nanoscale. 2014 Jan 7;6(1):385-91. doi: 10.1039/c3nr03886f. Epub 2013 Nov 8.

Abstract

Bovine serum albumin (BSA) protected nanoclusters (Au and Ag) represent a group of nanomaterials that holds great promise in biophysical applications due to their unique fluorescence properties and lack of toxicity. These metal nanoclusters have utility in a variety of disciplines including catalysis, biosensing, photonics, imaging and molecular electronics. However, they suffer from several disadvantages such as low fluorescence quantum efficiency (typically near 6%) and broad emission spectrum (540 nm to 800 nm). We describe an approach to enhance the apparent brightness of BSA Au clusters by linking them with a high extinction donor organic dye pacific blue (PB). In this conjugate PB acts as a donor to BSA Au clusters and enhances its brightness by resonance energy transfer (RET). We found that the emission of BSA Au clusters can be enhanced by a magnitude of two-fold by resonance energy transfer (RET) from the high extinction donor PB, and BSA Au clusters can act as an acceptor to nanosecond lifetime organic dyes. By pumping the BSA Au clusters using a high extinction donor, one can increase the effective brightness of less bright fluorophores like BSA Au clusters. Moreover, we prepared another conjugate of BSA Au clusters with the near infrared (NIR) dye Dylight 750 (Dy750), where BSA Au clusters act as a donor to Dy750. We observed that BSA Au clusters can function as a donor, showing 46% transfer efficiency to the NIR dye Dy750 with a long lifetime component in the acceptor decay through RET. Such RET-based probes can be used to prevent the problems of a broad emission spectrum associated with the BSA Au clusters. Moreover, transferring energy from BSA Au clusters to Dy750 will result in a RET probe with a narrow emission spectrum and long lifetime component which can be utilized in imaging applications.

摘要

牛血清白蛋白(BSA)保护的纳米团簇(金和银)代表了一类纳米材料,由于其独特的荧光性质和无毒特性,在生物物理应用中具有很大的应用前景。这些金属纳米团簇在催化、生物传感、光子学、成像和分子电子学等多个学科中都有应用。然而,它们存在一些缺点,例如荧光量子效率低(通常接近 6%)和发射光谱宽(540nm 至 800nm)。我们描述了一种通过与高消光供体有机染料太平洋蓝(PB)连接来增强 BSA Au 团簇表观亮度的方法。在这种共轭物中,PB 作为 BSA Au 团簇的供体,并通过共振能量转移(RET)增强其亮度。我们发现,通过高消光供体的共振能量转移(RET),BSA Au 团簇的发射可以增强两倍,并且 BSA Au 团簇可以作为纳秒寿命有机染料的受体。通过用高消光供体泵浦 BSA Au 团簇,可以增加 BSA Au 团簇等较暗荧光团的有效亮度。此外,我们还制备了 BSA Au 团簇与近红外(NIR)染料 Dylight 750(Dy750)的另一种共轭物,其中 BSA Au 团簇作为 Dy750 的供体。我们观察到,BSA Au 团簇可以作为供体,通过 RET 将 46%的能量转移到 NIR 染料 Dy750 上,并在受体衰减中显示出长寿命成分。这种基于 RET 的探针可用于解决与 BSA Au 团簇相关的宽发射光谱问题。此外,将能量从 BSA Au 团簇转移到 Dy750 将产生具有窄发射光谱和长寿命成分的 RET 探针,可用于成像应用。

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