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一种同时表达荧光素酶和绿色荧光蛋白的新型高转移性肿瘤细胞系5a-D-Luc-ZsGreen的建立与评价

Establishment and evaluation of a new highly metastatic tumor cell line 5a-D-Luc-ZsGreen expressing both luciferase and green fluorescent protein.

作者信息

Sudo Hitomi, Tsuji Atsushi B, Sugyo Aya, Takuwa Hiroyuki, Masamoto Kazuto, Tomita Yutaka, Suzuki Norihiro, Imamura Takeshi, Koizumi Mitsuru, Saga Tsuneo

机构信息

Diagnostic Imaging Program, Molecular Imaging Center, National Institute of Radiological Sciences, Inage-ku, Chiba 263-8555, Japan.

Biophysics Program, Molecular Imaging Center, National Institute of Radiological Sciences, Inage-ku, Chiba 263-8555, Japan.

出版信息

Int J Oncol. 2016 Feb;48(2):525-32. doi: 10.3892/ijo.2015.3300. Epub 2015 Dec 18.

Abstract

Breast cancer is the most common cancer in women. Although advances in diagnostic imaging for early detection, surgical techniques and chemotherapy have improved overall survival, the prognosis of patients with metastatic breast cancer remains poor. Understanding cancer cell dynamics in the metastatic process is important to develop new therapeutic strategies. Experimental animal models and imaging would be powerful tools for understanding of the molecular events of multistep process of metastasis. In the present study, to develop a new cancer cell line that is applicable to bioluminescence and fluorescence imaging, we transfected the expression vector of a green fluorescent protein ZsGreen1 into a metastatic cell line 5a-D-Luc, which is a subclone of the MDA-MB-231 breast cancer cell line expressing luciferase, and established a new tumor cell line 5a-D-Luc-ZsGreen expressing both luciferase and ZsGreen1. The 5a-D-Luc-ZsGreen cells proliferate more rapidly and have a more invasive phenotype compared with 5a-D-Luc cells following intracardiac injection. Metastasis sites were easily detected in the whole body by bioluminescence imaging and in excised tissues by ex vivo fluorescence imaging. The fluorescence of 5a-D-Luc-ZsGreen cells was not lost after formalin fixation and decalcification. It enabled us to easily evaluate tumor spread and localization at the cellular level in microscopic analysis. The strong fluorescence of 5a-D-Luc-ZsGreen cells allowed for real-time imaging of circulating tumor cells in cerebral blood vessels of live animals immediately after intracardiac injection of cells using two-photon laser-scanning microscopy. These findings suggest that the 5a-D-Luc-ZsGreen cells would be a useful tool for research on mechanisms of metastatic process in animal models.

摘要

乳腺癌是女性中最常见的癌症。尽管早期检测的诊断成像、手术技术和化疗取得了进展,提高了总体生存率,但转移性乳腺癌患者的预后仍然很差。了解癌细胞在转移过程中的动态变化对于开发新的治疗策略很重要。实验动物模型和成像技术将是理解转移多步骤过程分子事件的有力工具。在本研究中,为了开发一种适用于生物发光和荧光成像的新型癌细胞系,我们将绿色荧光蛋白ZsGreen1的表达载体转染到转移性细胞系5a-D-Luc中,该细胞系是表达荧光素酶的MDA-MB-231乳腺癌细胞系的一个亚克隆,并建立了一个同时表达荧光素酶和ZsGreen1的新型肿瘤细胞系5a-D-Luc-ZsGreen。与心内注射后的5a-D-Luc细胞相比,5a-D-Luc-ZsGreen细胞增殖更快,具有更强的侵袭表型。通过生物发光成像可在全身轻松检测转移部位,通过离体荧光成像可在切除组织中检测转移部位。5a-D-Luc-ZsGreen细胞的荧光在福尔马林固定和脱钙后不会消失。这使我们能够在显微镜分析中轻松地在细胞水平评估肿瘤的扩散和定位。5a-D-Luc-ZsGreen细胞的强荧光使得在向活体动物心内注射细胞后,立即使用双光子激光扫描显微镜对脑血循环中的循环肿瘤细胞进行实时成像成为可能。这些发现表明,5a-D-Luc-ZsGreen细胞将是研究动物模型中转移过程机制的有用工具。

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