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Phosphorescent light-emitting iridium complexes serve as a hypoxia-sensing probe for tumor imaging in living animals

机译:磷光发光铱配合物可作为低氧传感探针用于活体动物的肿瘤成像

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Iridium complex, a promising organic light-emitting diode material for next generation television and computer displays, emits phosphorescence. Phosphorescence is quenched by oxygen. We used this oxygen-quenching feature for imaging tumor hypoxia. Red light-emitting iridium complex Ir(btp)_2(acac) (BTP) presented hypoxia-dependent light emission in culture cell lines, whose intensity was in parallel with hypoxia-inducible factor (HIF)-la expression. BTP was further applied to imaging five nude mouse-transplanted tumors. All tumors presented a bright BTP-emitting image as early as 5 min after the injection. The BTP-dependent tumor image peaked at 1 to 2 h after the injection, and was then removed from tumors within 24 h. The minimal BTP image recognition size was at least 2 mm in diameter. By morphological examination and phosphorescence lifetime measurement, BTP is presumed to localize to the tumor cells, not to stay in the tumor microvessels by binding to albumin. The primary problem on suse of luminescent probe for tumor imaging is its weak penetrance to deep tissues from the skin surface. Since BTP is easily modifiable, we made BTP analogues with a longer excitation/emission wavelength to improve the tissue penetrance. One of them, BTPHSA, displayed 560/720 wavelength, and depicted its clear imaging from tumors transplanted over 6-7 mm deep from the skin surface. We suggest that BTP analogues have a vast potential for imaging hypoxic lesions such as tumor tissues.
机译:铱配合物是一种有前途的有机发光二极管材料,可用于下一代电视和计算机显示器,它发出磷光。磷光被氧气淬灭。我们使用这种氧猝灭功能来成像肿瘤缺氧。发出红色光的铱络合物Ir(btp)_2(acac)(BTP)在培养细胞系中呈现低氧依赖性发光,其强度与低氧诱导因子(HIF)-1a表达平行。 BTP被进一步用于对五个裸鼠移植的肿瘤进行成像。早在注射后5分钟,所有肿瘤均呈现出明亮的BTP发射图像。依赖BTP的肿瘤图像在注射后1至2 h达到峰值,然后在24 h内从肿瘤中去除。最小的BTP图像识别尺寸为直径至少2 mm。通过形态学检查和磷光寿命测量,推测BTP定位于肿瘤细胞,而不是通过结合白蛋白而停留在肿瘤微血管中。使用发光探针进行肿瘤成像的主要问题是其对皮肤表面深层组织的弱渗透性。由于BTP易于修改,我们制作了具有更长激发/发射波长的BTP类似物,以改善组织的渗透性。其中之一,BTPHSA,显示560/720波长,并描绘了从距皮肤表面6-7毫米深处移植的肿瘤的清晰影像。我们建议BTP类似物具有成像缺氧病变,如肿瘤组织的巨大潜力。

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