Wang Wei, Ke Shi, Kwon Sunkuk, Yallampalli Sasidhar, Cameron Arlin G, Adams Kristen E, Mawad Michel E, Sevick-Muraca Eva M
Department of Radiology, Division of Molecular Imaging, Baylor College of Medicine, Houston, Texas 77030, USA.
Bioconjug Chem. 2007 Mar-Apr;18(2):397-402. doi: 10.1021/bc0602679. Epub 2007 Feb 22.
Optical imaging has great potential for studying molecular recognitions both in vivo and in vitro, yet nuclear imaging is the most effective clinical molecular imaging modality. The combination of optical and nuclear imaging modalities may provide complementary information for improving diagnosis and management of diseases. In this study we developed an optical and nuclear dual-labeled imaging agent, 111In-DTPA-Bz-NH-SA-K(IR-783-S-Ph-CO)-c(CGRRAGGSC)NH2, called DLIA-IL11Ralpha. 111In-DTPA-Bz-NH-SA is the radiotracer moiety; a near-infrared dye IR-783-S-Ph-COOH serves as the fluorescent emitter; and the cyclic peptide c(CGRRAGGSC), which is known to target interleukin 11 receptor alpha-chain (IL-11Ralpha), delivers the desired imaging agent to its target. Experiments revealed that the cyclic peptide c(CGRRAGGSC) continued to possess the targeting capability to IL-11Ralpha after the conjugation of the optical and nuclear tracers. Furthermore, the presence of the metal isotope chelator did not cause quenching of fluorescence emission. The cross validation and direct comparison of optical and nuclear imaging of a tumor was achieved using a single injection, and the preliminary results show the conjugate has tumor targeting capabilities in vivo.
光学成像在体内和体外研究分子识别方面具有巨大潜力,但核成像是最有效的临床分子成像方式。光学和核成像方式的结合可为改善疾病的诊断和管理提供互补信息。在本研究中,我们开发了一种光学和核双标记成像剂,111In-DTPA-Bz-NH-SA-K(IR-783-S-Ph-CO)-c(CGRRAGGSC)NH2,称为DLIA-IL11Ralpha。111In-DTPA-Bz-NH-SA是放射性示踪剂部分;近红外染料IR-783-S-Ph-COOH用作荧光发射体;已知靶向白细胞介素11受体α链(IL-11Ralpha)的环肽c(CGRRAGGSC)将所需的成像剂递送至其靶点。实验表明,在结合光学和核示踪剂后,环肽c(CGRRAGGSC)仍具有对IL-11Ralpha的靶向能力。此外,金属同位素螯合剂的存在并未导致荧光发射淬灭。通过单次注射实现了肿瘤光学和核成像的交叉验证和直接比较,初步结果表明该缀合物在体内具有肿瘤靶向能力。