Tsuboi Setsuko, Jin Takashi
RIKEN Center for Biosystems Dynamics Research (BDR) RIKEN Furuedai 6-2-3, Suita Osaka 565-0874 Japan
Graduate School of Frontier Biosciences, Osaka University Yamada-oka 1-3, Suita Osaka 565-0871 Japan.
RSC Adv. 2019 Oct 29;9(60):34964-34971. doi: 10.1039/c9ra07011g. eCollection 2019 Oct 28.
Owing to its high sensitivity, bioluminescence imaging is an important tool for biosensing and bioimaging in life sciences. Compared to fluorescence imaging, bioluminescence imaging has a superior advantage that the background signals resulting from autofluorescence are almost zero. In addition, bioluminescence imaging can permit long-term observation of living cells because external excitation is not needed, leading to no photobleaching and photocytotoxicity. Although bioluminescence imaging has such superior properties over fluorescence imaging, observation wavelengths in bioluminescence imaging are mostly limited to the visible region. Here we present bioluminescence resonance energy transfer (BRET) based dual-colour (visible/near-infrared) molecular imaging using a quantum dot (QD) and luciferase protein conjugate. This bioluminescent probe is designed to emit green and near-infrared luminescence from enhanced green fluorescent protein (EGFP) and CdSeTe/CdS (core/shell) QDs, where EGFP- (RLuc) fused proteins are conjugated to the QDs. Since the EGFP-RLuc fused protein contains an immunoglobulin binding domain (GB1) of protein G, it is possible to prepare a variety of molecular imaging probes functionalized with antibodies (IgG). We show that the BRET-based QD probe can be used for highly sensitive dual-colour (visible/near-infrared) bioluminescence molecular imaging of membrane receptors in cancer cells.
由于其高灵敏度,生物发光成像在生命科学中是一种用于生物传感和生物成像的重要工具。与荧光成像相比,生物发光成像具有一个显著优势,即自发荧光产生的背景信号几乎为零。此外,生物发光成像可以对活细胞进行长期观察,因为不需要外部激发,从而不会出现光漂白和光细胞毒性。尽管生物发光成像相对于荧光成像具有这些优越特性,但生物发光成像的观察波长大多局限于可见光区域。在此,我们展示了基于生物发光共振能量转移(BRET)的双色(可见光/近红外)分子成像,该成像使用量子点(QD)和荧光素酶蛋白共轭物。这种生物发光探针被设计用于从增强型绿色荧光蛋白(EGFP)和CdSeTe/CdS(核/壳)量子点发射绿色和近红外发光,其中EGFP-(RLuc)融合蛋白与量子点共轭。由于EGFP-RLuc融合蛋白包含蛋白G的免疫球蛋白结合结构域(GB1),因此有可能制备多种用抗体(IgG)功能化的分子成像探针。我们表明,基于BRET的量子点探针可用于癌细胞中膜受体的高灵敏度双色(可见光/近红外)生物发光分子成像。